spacer gif spacer gif spacer gif spacer gif spacer gif
 QUICK SEARCH:   [advanced]


spacer gif
     Home     Help     Feedback     Subscriptions     Archive     Search     Table of Contents    


This Article
Right arrow Summary Freely available
Right arrow Full Text (PDF)
Right arrow Alert me when this article is cited
Right arrow Alert me if a correction is posted
Services
Right arrow Email this article to a friend
Right arrow Similar articles in this journal
Right arrow Similar articles in PubMed
Right arrow Alert me to new issues of the journal
Right arrow Download to citation manager
Right arrow reprints & permissions
Citing Articles
Right arrow Citing Articles via HighWire
Right arrow Citing Articles via Google Scholar
Google Scholar
Right arrow Articles by Khayat, Z. A.
Right arrow Articles by Klip, A.
Right arrow Search for Related Content
PubMed
Right arrow PubMed Citation
Right arrow Articles by Khayat, Z. A.
Right arrow Articles by Klip, A.
Social Bookmarking
 Add to CiteULike   Add to Complore   Add to Connotea   Add to Del.icio.us   Add to Digg   Add to Reddit   Add to Technorati   Add to Twitter  
What's this?
Adams, R. J. P. and Pollard, T. D (1986). Propulsion of organelles isolated from Acanthamoeba along actin filaments by myosin-I. Nature 322, 754-756.[Medline]

Castellino, F., Heuser, J., Marchetti, S., Bruno, B. and Luini, A (1992). Glucocorticoid stabilization of actin filaments: a possible mechanism forinhibition of corticotropin release. Proc. Natl. Acad. Sci. USA 89, 3775-3779.[Abstract/Free Full Text]

Cheatham, B., Vlahos, C. J., Cheatham, L., Wang, L., Blenis, J. and Kahn, C. R (1994). Phosphatidylinositol 3-kinase activation is required for insulin stimulation of pp70 S6 kinase, DNA synthesis, and glucose transporter translocation. Mol. Cell. Biol 14, 4902-4911.[Abstract/Free Full Text]

Clark, S. F., Martin, S., Carozzi, A. J., Hill, M. M. and James, D. E (1998). Intracellular localization of phosphatidylinositide 3-kinase and insulin receptor substrate-1 in adipocytes: potential involvement of a membrane skeleton. J. Cell Biol 140, 1211-1225.[Abstract/Free Full Text]

Clodi, M., Vollenweider, P., Klarlund, J., Nakashima, N., Martin, S., Czech, M. P. and Olefsky, J. M (1998). Effects of general receptor for phosphoinositides 1 on insulin and insulin-like growth factor I-induced cytoskeletal rearrangement, glucose transporter-4 translocation, and deoxyribonucleic acid synthesis. Endocrinology 139, 4984-4990.[Abstract/Free Full Text]

Cooper, J. A (1987). Effects of cytochalasins and phalloidin on actin. J. Cell Biol 105, 1473-1478.[Free Full Text]

Corcoran, S. L., Hayes, N. V., Nicol, S., Baines, A. J. and Thomas, H. M (1998). Intracellular localisation of beta I sigma 2 spectrin with GLUT4 vesicles. Biochem. Soc. Trans 26, 107-.

Corcoran, S. L., Wylie, P. G., Hayes, N. V., Baines, A. J. and Thomas, H. M (1997). Characterisation of spectrin isoforms associated with GLUT4. Biochem. Soc. Trans 25, 483-.

Dancker, P., Low, I., Hasselbach, W. and Wieland, T (1975). Interaction of actin with phalloidin: polymerization and stabilization of F-actin. Biochim. Biophys. Acta 400, 407-414.[Medline]

Fath, K. R. and Burgess, D. R (1993). Golgi-derived vesicles from developing epithelial cells bind actin filaments and possess myosin-I as a cytoplasmically oriented peripheral membrane protein. J. Cell Biol 120, 117-127.[Abstract/Free Full Text]

Goshima, K., Masuda, A. and Qwaribe, K (1984). Insulin-induced formation of ruffling membranes of KB cells and its correlation with enhancement of amino acid transport. J. Cell Biol 98, 801-809.[Abstract/Free Full Text]

Gottlieb, T. A., Ivanov, I. E., Adensik, M. and Sabatini, D (1993). Actin microfilaments play a critical role in endocytosis at the apical but not the basolateral surface of polarized epithelial cells. J. Cell Biol 120, 695-710.[Abstract/Free Full Text]

Heller-Harrison, R. A., Morin, M., Guilherme, A. and Czech, M. P (1996). Insulin-mediated targeting of phosphatidylinositol 3-kinase to GLUT4-containing vesicles. J. Biol. Chem 271, 10200-10204.[Abstract/Free Full Text]

Hirowaka, N., Sobue, K., Kanda, K., Harada, A. and Yorifuji, H (1989). The cytoskeletal architecture of the presynaptic terminal and molecular structure of synapsin 1. J. Cell Biol 108, 111-126.[Abstract/Free Full Text]

Kanai, F., Nishioka, Y., Hayashi, H., Kamohara, S., Todaka, M. and Ebina, Y (1993). Direct demonstration of insulin-induced GLUT4 translocation to the surface of intact cells by insertion of a c-myc epitope into an exofacial GLUT4 domain. J. Biol. Chem 268, 14523-14526.[Abstract/Free Full Text]

Kandror, K. V. and Pilch, P. F (1994). Identification and isolation of glycoproteins that translocate to the cell surface from GLUT4-enriched vesicles in an insulin-dependent fashion. J. Biol. Chem 269, 8017-8021.

Kao, A. W., Noda, Y., Johnson, J. H., Pessin, J. E. and Saltiel, A. R (1999). Aldolase mediates the association of F-actin with the insulin-responsive glucose transporter GLUT4. J. Biol. Chem 18, 17742-17747.

Keller, S. R., Scott, H. M., Mastick, C. C., Aebersold, R. and Lienhard, G. E (1995). Cloning and characterization of a novel insulin-regulated membrane aminopeptidase from Glut4 vesicles. J. Biol. Chem 270, 23612-23618.[Abstract/Free Full Text]

Kelly, K. L. and Ruderman, N. B (1993). Insulin-stimulated phosphatidylinositol 3-kinase. Association with a 185-kDa tyrosine-phosphorylated protein (IRS-1) and localization in a low density membrane vesicle. J. Biol. Chem 268, 4391-4398.[Abstract/Free Full Text]

Kelly, K. L., Ruderman, N. B. and Chen, K. S (1992). Phosphatidylinositol 3-kinase in isolated rat adipocytes. Activation by insulin and subcellular distribution. J. Biol. Chem 267, 3423-3428.[Abstract/Free Full Text]

Knight, J. B., Yamauchi, K. and Pessin, J. E (1995). Divergent insulin and platelet-derived growth factor regulation of focal adhesion kinase (pp125FAK) tyrosine phosphorylation, and rearrangement of actin stress fibers. J. Biol. Chem 270, 10199-10203.[Abstract/Free Full Text]

Kotani, K., Carozzi, A. J., Sakaue, H., Hara, K., Robinson, L. J., Clark, S. F., Yonezawa, K., James, D. E. and Kasuga, M (1995). Requirement for phosphoinositide 3-kinase in insulin-stimulated GLUT4 translocation in 3T3-L1 adipocytes. Biochem. Biophys. Res. Commun 209, 343-348.[Medline]

Kuznetsov, S., Langford, G. M. and Weiss, D. G (1992). Actin-dependent organelle movement in squid axoplasm. Nature 356, 722-725.[Medline]

Laemmli, U. K (1970). Cleavage of structural proteins during the assembly of the head of bacteriophage T4. Nature 227, 680-685.[Medline]

Lee, W., Samuel, J., Zhang, W., Rampal, A. L., Lachaal, M. and Jung, C. Y (1997). A myosin-derived peptide C109 binds to GLUT4-vesicles and inhibits the insulin-induced glucose transport stimulation and GLUT4 recruitment in rat adipocytes. Biochem. Biophys. Res. Commun 240, 409-414.[Medline]

Mastick, C. C., Aebersold, R. and Lienhard, G. E (1994). Characterization of a major protein in GLUT4 vesicles. Concentration in the vesicles and insulin-stimulated translocation to the plasma membrane. J. Biol. Chem 269, 6089-6092.[Abstract/Free Full Text]

Mitsumoto, Y., Burdett, E., Grant, A. and Klip, A (1991). Differential expression of the GLUT1 and GLUT4 glucose transporters during differentiation of L6 muscle cells. Biochem. Biophys. Res. Commun 175, 652-659.[Medline]

Mitsumoto, Y. and Klip, A (1992). Developmental regulation of the subcellular distribution and glycosylation of GLUT1 and GLUT4 glucose transporters during myogenesis of L6 muscle cells. J. Biol. Chem 267, 4957-4962.[Abstract/Free Full Text]

Nave, B. T., Haigh, R. J., Hayward, A. C., Siddle, K. and Shepherd, P. R (1996). Compartment-specific regulation of phosphoinositide 3-kinase by platelet-derived growth factor and insulin in 3T3-L1 adipocytes. Biochem. J 318, 55-60.

Oatey, P. B., Van Weering, D. H., Dobson, S. P., Gould, G. W. and Tavare, J. M (1998). GLUT4 vesicle dynamics in living 3T3 L1 adipocytes visualized with green-fluorescent protein. Biochem. J 327, 637-642.

Ricort, J. M., Tanti, J. F., Van Obberghen, E. and Le Marchand-Brustel, Y (1996). Different effects of insulin and platelet-derived growth factor on phosphatidylinositol 3-kinase at the subcellular level in 3T3-L1 adipocytes. A possible explanation for their specific effects on glucose transport. Eur. J. Biochem 239, 17-22.[Medline]

Ridley, A. J. and Hall, A (1992). The small GTP-binding protein rho regulates assembly of focal adhesions and actin stress fibers in response to growth factors. Cell 70, 389-399.[Medline]

Ridley, A. J., Paterson, H. F., Johnston, C. L., Diekmann, D. and Hall, A (1992). The small GTP-binding protein rac regulates growth factor-induced membrane ruffling. Cell 70, 401-410.[Medline]

Sheetz, M. P. and Spudich, J. A (1983). Movement of myosin-coated fluorescent beads on actin cables in vitro. Nature 303, 31-35.[Medline]

Shepherd, P. R., Siddle, K. and Nave, B. T (1997). Is stimulation of class-I phosphatidylinositol 3-kinase activity by insulin sufficient to activate pathways involved in glucose metabolism?. Biochem. Soc. Trans 25, 978-981.[Medline]

Shepherd, P. R., Withers, D. J. and Siddle, K (1998). Phosphoinositide 3-kinase: the key switch mechanism in insulin signalling. Biochem. J 333, 471-490.

Shibasaki, F., Fukami, K., Fukui, Y. and Takanawa, T (1994). Phosphatidylinositol 3-kinase binds to-actinin through the p85 subunit. Biochem. J 302, 551-557.

Snapp, E. L. and Landfear, S. M (1997). Cytoskeletal association is important for differential targeting of glucose transporter isoforms in Leishmania. J. Cell Biol 139, 1775-1783.[Abstract/Free Full Text]

Spector, I., Shochet, N. R., Kashman, Y. and Groweiss, A (1983). Latrunculins: novel marine toxins that disrupt microfilament organization in cultured cells. Science 219, 493-495.[Abstract/Free Full Text]

Sultan, C., Plantavid, M., Bachelot, C., Grondin, P., Breton, M., Mauco,G., Levy-Toledano, S., Caen, J. P. and Chap, H (1991). Involvement of platelet glycoprotein IIb-IIIa (alpha IIb-beta 3 integrin) in thrombin-induced synthesis of phosphatidylinositol 3,4 -bisphosphate. J. Biol. Chem 266, 23554-23557.[Abstract/Free Full Text]

Sumitani, S., Ramlal, T., Somwar, R., Keller, S. R. and Klip, A (1997). Insulin regulation and selective segregation with glucose transporter-4 of the membrane aminopeptidase vp165 in rat skeletal muscle cells. Endocrinology 138, 1029-1034.[Abstract/Free Full Text]

Tolias, K. F., Cantley, L. C. and Carpenter, C. L (1995). Rho family GTPases bind to phosphoinositide kinases. J. Biol. Chem 270, 17656-17659.[Abstract/Free Full Text]

Tsakiridis, T., Vranic, M. and Klip, A (1994). Disassembly of the actin network inhibits insulin-dependent stimulation of glucose transport and prevents recruitment of glucose transporters to the plasma membrane. J. Biol. Chem 269, 29934-29942.[Abstract/Free Full Text]

Tsakiridis, T., McDowell, H., Walker, T., Downes, P., Hundal, H.S., Vranic, M. and Klip, A (1995). Multiple roles of phosphatidylinositol 3-kinase in regulation of glucose transport, amino acid transport, and glucose transporters in L6 skeletal muscle cells. Endocrinology 136, 4315-4322.[Abstract]

Vollenweider, P., Clodi, M., Martin, S. S., Imamura, T., Kavanaugh, W. M. and Olefsky, J. M (1999). An SH2 domain-containing 5inositolphosphatase inhibits insulin-induced GLUT4 translocation and growth factor-induced actin filament rearrangement. Mol. Cell. Biol 19, 1081-1091.[Abstract/Free Full Text]

Vollenweider, P., Martin, S. S., Haruta, T., Morris, A. J., Nelson, J. G., Cormont, N., Le Marchand-Brustel, Y., Rose, D. W. and Olefsky, J. M (1997). The small guanosine triphosphate-binding protein Rab4 is involved in insulin-induced GLUT4 translocation and actin filament rearrangement in 3T3-L1 cells. Endocrinology 138, 4941-4949.[Abstract/Free Full Text]

Wang, Q. H., Bilan, P. J., Tsakiridis, T., Hinek, A. and Klip, A (1998). Actin filaments participate in the relocalization of phosphatidylinositol 3-kinase to glucose transporter-containing compartments and in the stimulation of glucose uptake in 3T3-L1 adipocytes. Biochem. J 331, 917-928.

Wang, Q. H., Khayat, Z., Kishi, K., Ebina, Y. and Klip, A (1998). GLUT4 translocation by insulin in intact muscle cells: detection by a fast and quantitative assay. FEBS Lett 427, 193-197.[Medline]

Wang, Q. H., Somwar, R., Bilan, P., Liu, Z., Jing, J., Woodgett, J. and Klip, A (1999). Protein kinase B(PKB )/Akt-1 is necessary for insulin-stimulated GLUT4 translocation in L6 muscle cells. Mol. Cell. Biol 19, 4008-4016.[Abstract/Free Full Text]

White, M. F (1998). The IRS-signalling system: A network of docking proteins that mediate insulin action. Mol. Cell. Biochem 182, 3-11.[Medline]

Yang, J., Clarke, J. F., Ester, C. J., Young, P. W., Kasuga, M. and Holman, G. D (1996). Phosphatidylinositol 3-kinase acts at an intracellular membrane site to enhance GLUT4 exocytosis in 3T3-L1 cells. Biochem. J 313, 125-131.

Zhang, S., Han, J., Sells, M. A., Chernoff, J., Knaus, U. G., Ulevitch, R. J. and Bokoch, G. M (1995). Rho family GTPases regulate p38 mitogen-activated protein kinase through the downstream mediator Pak1. J. Biol. Chem 270, 23934-23936.[Abstract/Free Full Text]


Add to CiteULike CiteULike   Add to Complore Complore   Add to Connotea Connotea   Add to Del.icio.us Del.icio.us   Add to Digg Digg   Add to Reddit Reddit   Add to Technorati Technorati   Add to Twitter Twitter    What's this?


This article has been cited by other articles:


Home page
EndocrinologyHome page
D. C. Thurmond
Insulin-Regulated Glucagon-Like Peptide-1 Release from L Cells: Actin' Out
Endocrinology, December 1, 2009; 150(12): 5202 - 5204.
[Full Text] [PDF]


Home page
J. Cell Sci.Home page
M. Coisy-Quivy, O. Touzet, A. Bourret, R. A. Hipskind, J. Mercier, P. Fort, and A. Philips
TC10 controls human myofibril organization and is activated by the sarcomeric RhoGEF obscurin
J. Cell Sci., April 1, 2009; 122(7): 947 - 956.
[Abstract] [Full Text] [PDF]


Home page
Am. J. Physiol. Cell Physiol.Home page
A. Carranza, P. L. Musolino, M. Villar, and S. Nowicki
Signaling cascade of insulin-induced stimulation of L-dopa uptake in renal proximal tubule cells
Am J Physiol Cell Physiol, December 1, 2008; 295(6): C1602 - C1609.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
V. K. Randhawa, S. Ishikura, I. Talior-Volodarsky, A. W. P. Cheng, N. Patel, J. H. Hartwig, and A. Klip
GLUT4 Vesicle Recruitment and Fusion Are Differentially Regulated by Rac, AS160, and Rab8A in Muscle Cells
J. Biol. Chem., October 3, 2008; 283(40): 27208 - 27219.
[Abstract] [Full Text] [PDF]


Home page
Am. J. Physiol. Cell Physiol.Home page
S. Ishikura and A. Klip
Muscle cells engage Rab8A and myosin Vb in insulin-dependent GLUT4 translocation
Am J Physiol Cell Physiol, October 1, 2008; 295(4): C1016 - C1025.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
I. Talior-Volodarsky, V. K. Randhawa, H. Zaid, and A. Klip
{alpha}-Actinin-4 Is Selectively Required for Insulin-induced GLUT4 Translocation
J. Biol. Chem., September 12, 2008; 283(37): 25115 - 25123.
[Abstract] [Full Text] [PDF]


Home page
DiabetesHome page
M. Fu, M. M. Sabra, C. Damcott, T. I. Pollin, L. Ma, S. Ott, J. C. Shelton, X. Shi, L. Reinhart, J. O'Connell, et al.
Evidence That Rho Guanine Nucleotide Exchange Factor 11 (ARHGEF11) on 1q21 is a Type 2 Diabetes Susceptibility Gene in the Old Order Amish
Diabetes, May 1, 2007; 56(5): 1363 - 1368.
[Abstract] [Full Text] [PDF]


Home page
Mol. Biol. CellHome page
L. Liu, M. P. Jedrychowski, S. P. Gygi, and P. F. Pilch
Role of Insulin-dependent Cortical Fodrin/Spectrin Remodeling in Glucose Transporter 4 Translocation in Rat Adipocytes
Mol. Biol. Cell, October 1, 2006; 17(10): 4249 - 4256.
[Abstract] [Full Text] [PDF]


Home page
J. Clin. Endocrinol. Metab.Home page
L. Puricelli, E. Iori, R. Millioni, G. Arrigoni, P. James, M. Vedovato, and P. Tessari
Proteome Analysis of Cultured Fibroblasts from Type 1 Diabetic Patients and Normal Subjects
J. Clin. Endocrinol. Metab., September 1, 2006; 91(9): 3507 - 3514.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
J. C. Hou, S. Shigematsu, H. C. Crawford, P. Z. Anastasiadis, and J. E. Pessin
Dual Regulation of Rho and Rac by p120 Catenin Controls Adipocyte Plasma Membrane Trafficking
J. Biol. Chem., August 18, 2006; 281(33): 23307 - 23312.
[Abstract] [Full Text] [PDF]


Home page
Mol. Biol. CellHome page
L.-Z. Liu, H.-L. Zhao, J. Zuo, S. K.S. Ho, J. C.N. Chan, Y. Meng, F.-D. Fang, and P. C.Y. Tong
Protein Kinase C{zeta} Mediates Insulin-induced Glucose Transport through Actin Remodeling in L6 Muscle Cells
Mol. Biol. Cell, May 1, 2006; 17(5): 2322 - 2330.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
J. Huang, T. Imamura, J. L. Babendure, J.-C. Lu, and J. M. Olefsky
Disruption of Microtubules Ablates the Specificity of Insulin Signaling to GLUT4 Translocation in 3T3-L1 Adipocytes
J. Biol. Chem., December 23, 2005; 280(51): 42300 - 42306.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
M. Ishiki, V. K. Randhawa, V. Poon, L. JeBailey, and A. Klip
Insulin Regulates the Membrane Arrival, Fusion, and C-terminal Unmasking of Glucose Transporter-4 via Distinct Phosphoinositides
J. Biol. Chem., August 5, 2005; 280(31): 28792 - 28802.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
C. Huang, A. C. P. Thirone, X. Huang, and A. Klip
Differential Contribution of Insulin Receptor Substrates 1 Versus 2 to Insulin Signaling and Glucose Uptake in L6 Myotubes
J. Biol. Chem., May 13, 2005; 280(19): 19426 - 19435.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
C. A. Eyster, Q. S. Duggins, and A. L. Olson
Expression of Constitutively Active Akt/Protein Kinase B Signals GLUT4 Translocation in the Absence of an Intact Actin Cytoskeleton
J. Biol. Chem., May 6, 2005; 280(18): 17978 - 17985.
[Abstract] [Full Text] [PDF]


Home page
J. Cell Sci.Home page
P. H. M. Lommerse, B. E. Snaar-Jagalska, H. P. Spaink, and T. Schmidt
Single-molecule diffusion measurements of H-Ras at the plasma membrane of live cells reveal microdomain localization upon activation
J. Cell Sci., May 1, 2005; 118(9): 1799 - 1809.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
S. Y. Park, G. H. Choi, H. I. Choi, J. Ryu, C. Y. Jung, and W. Lee
Depletion of Mitochondrial DNA Causes Impaired Glucose Utilization and Insulin Resistance in L6 GLUT4myc Myocytes
J. Biol. Chem., March 18, 2005; 280(11): 9855 - 9864.
[Abstract] [Full Text] [PDF]


Home page
Mol. Biol. CellHome page
V. K. Randhawa, F. S.L. Thong, D. Y. Lim, D. Li, R. R. Garg, R. Rudge, T. Galli, A. Rudich, and A. Klip
Insulin and Hypertonicity Recruit GLUT4 to the Plasma Membrane of Muscle Cells by Using N-Ethylmaleimide-sensitive Factor-dependent SNARE Mechanisms but Different v-SNAREs: Role of TI-VAMP
Mol. Biol. Cell, December 1, 2004; 15(12): 5565 - 5573.
[Abstract] [Full Text] [PDF]


Home page
J. Cell Sci.Home page
D. Torok, N. Patel, L. JeBailey, F. S. L. Thong, V. K. Randhawa, A. Klip, and A. Rudich
Insulin but not PDGF relies on actin remodeling and on VAMP2 for GLUT4 translocation in myoblasts
J. Cell Sci., October 15, 2004; 117(22): 5447 - 5455.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
J. T. Brozinick Jr., E. D. Hawkins, A. B. Strawbridge, and J. S. Elmendorf
Disruption of Cortical Actin in Skeletal Muscle Demonstrates an Essential Role of the Cytoskeleton in Glucose Transporter 4 Translocation in Insulin-sensitive Tissues
J. Biol. Chem., September 24, 2004; 279(39): 40699 - 40706.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
A. Balbis, G. Baquiran, C. Mounier, and B. I. Posner
Effect of Insulin on Caveolin-enriched Membrane Domains in Rat Liver
J. Biol. Chem., September 17, 2004; 279(38): 39348 - 39357.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
G. Sweeney, R. R. Garg, R. B. Ceddia, D. Li, M. Ishiki, R. Somwar, L. J. Foster, P. O. Neilsen, G. D. Prestwich, A. Rudich, et al.
Intracellular Delivery of Phosphatidylinositol (3,4,5)-Trisphosphate Causes Incorporation of Glucose Transporter 4 into the Plasma Membrane of Muscle and Fat Cells without Increasing Glucose Uptake
J. Biol. Chem., July 30, 2004; 279(31): 32233 - 32242.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
M. Kanzaki, M. Furukawa, W. Raab, and J. E. Pessin
Phosphatidylinositol 4,5-Bisphosphate Regulates Adipocyte Actin Dynamics and GLUT4 Vesicle Recycling
J. Biol. Chem., July 16, 2004; 279(29): 30622 - 30633.
[Abstract] [Full Text] [PDF]


Home page
Mol. Endocrinol.Home page
L. JeBailey, A. Rudich, X. Huang, C. D. Ciano-Oliveira, A. Kapus, and A. Klip
Skeletal Muscle Cells and Adipocytes Differ in Their Reliance on TC10 and Rac for Insulin-Induced Actin Remodeling
Mol. Endocrinol., February 1, 2004; 18(2): 359 - 372.
[Abstract] [Full Text] [PDF]


Home page
Am. J. Physiol. Cell Physiol.Home page
Y. Qian, L. Corum, Q. Meng, J. Blenis, J. Z. Zheng, X. Shi, D. C. Flynn, and B.-H. Jiang
PI3K induced actin filament remodeling through Akt and p70S6K1: implication of essential role in cell migration
Am J Physiol Cell Physiol, January 1, 2004; 286(1): C153 - C163.
[Abstract] [Full Text] [PDF]


Home page
EndocrinologyHome page
A. L. Olson, C. A. Eyster, Q. S. Duggins, and J. B. Knight
Insulin Promotes Formation of Polymerized Microtubules by a Phosphatidylinositol 3-Kinase-Independent, Actin-Dependent Pathway in 3T3-L1 Adipocytes
Endocrinology, November 1, 2003; 144(11): 5030 - 5039.
[Abstract] [Full Text] [PDF]


Home page
J. Cell Sci.Home page
D. M. Owens, M. R. Romero, C. Gardner, and F. M. Watt
Suprabasal {alpha}6{beta}4 integrin expression in epidermis results in enhanced tumourigenesis and disruption of TGF{beta} signalling
J. Cell Sci., September 15, 2003; 116(18): 3783 - 3791.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
H.-J. He, S. Kole, Y.-K. Kwon, M. T. Crow, and M. Bernier
Interaction of Filamin A with the Insulin Receptor Alters Insulin-dependent Activation of the Mitogen-activated Protein Kinase Pathway
J. Biol. Chem., July 11, 2003; 278(29): 27096 - 27104.
[Abstract] [Full Text] [PDF]


Home page
Mol. Cell. Biol.Home page
N. Patel, A. Rudich, Z. A. Khayat, R. Garg, and A. Klip
Intracellular Segregation of Phosphatidylinositol-3,4,5-Trisphosphate by Insulin-Dependent Actin Remodeling in L6 Skeletal Muscle Cells
Mol. Cell. Biol., July 1, 2003; 23(13): 4611 - 4626.
[Abstract] [Full Text] [PDF]


Home page
Mol. Endocrinol.Home page
H. Tojo, I. Kaieda, H. Hattori, N. Katayama, K. Yoshimura, S. Kakimoto, Y. Fujisawa, E. Presman, C. C. Brooks, and P. F. Pilch
The Formin Family Protein, Formin Homolog Overexpressed in Spleen, Interacts with the Insulin-Responsive Aminopeptidase and Profilin IIa
Mol. Endocrinol., July 1, 2003; 17(7): 1216 - 1229.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
Y. Qian, J. Luo, S. S. Leonard, G. K. Harris, L. Millecchia, D. C. Flynn, and X. Shi
Hydrogen Peroxide Formation and Actin Filament Reorganization by Cdc42 Are Essential for Ethanol-induced in Vitro Angiogenesis
J. Biol. Chem., April 25, 2003; 278(18): 16189 - 16197.
[Abstract] [Full Text] [PDF]


Home page
Mol. Cell. Biol.Home page
T. Ijuin and T. Takenawa
SKIP Negatively Regulates Insulin-Induced GLUT4 Translocation and Membrane Ruffle Formation
Mol. Cell. Biol., February 15, 2003; 23(4): 1209 - 1220.
[Abstract] [Full Text] [PDF]


Home page
J. Neurosci.Home page
S. Martin, J.-P. Vincent, and J. Mazella
Involvement of the Neurotensin Receptor-3 in the Neurotensin-Induced Migration of Human Microglia
J. Neurosci., February 15, 2003; 23(4): 1198 - 1205.
[Abstract] [Full Text] [PDF]


Home page
Mol. Cell. Biol.Home page
J. Farhang-Fallah, V. K. Randhawa, A. Nimnual, A. Klip, D. Bar-Sagi, and M. Rozakis-Adcock
The Pleckstrin Homology (PH) Domain-Interacting Protein Couples the Insulin Receptor Substrate 1 PH Domain to Insulin Signaling Pathways Leading to Mitogenesis and GLUT4 Translocation
Mol. Cell. Biol., October 15, 2002; 22(20): 7325 - 7336.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
M. Kanzaki and J. E. Pessin
Caveolin-associated Filamentous Actin (Cav-actin) Defines a Novel F-actin Structure in Adipocytes
J. Biol. Chem., July 12, 2002; 277(29): 25867 - 25869.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
Z. Y. Jiang, A. Chawla, A. Bose, M. Way, and M. P. Czech
A Phosphatidylinositol 3-Kinase-independent Insulin Signaling Pathway to N-WASP/Arp2/3/F-actin Required for GLUT4 Glucose Transporter Recycling
J. Biol. Chem., January 4, 2002; 277(1): 509 - 515.
[Abstract] [Full Text]


Home page
JCBHome page
J. M. Dyson, C. J. O'Malley, J. Becanovic, A. D. Munday, M. C. Berndt, I. D. Coghill, H. H. Nandurkar, L. M. Ooms, and C. A. Mitchell
The SH2-containing inositol polyphosphate 5-phosphatase, SHIP-2, binds filamin and regulates submembraneous actin
J. Cell Biol., December 10, 2001; 155(6): 1065 - 1080.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
L. J. Foster, D. Li, V. K. Randhawa, and A. Klip
Insulin Accelerates Inter-endosomal GLUT4 Traffic via Phosphatidylinositol 3-Kinase and Protein Kinase B
J. Biol. Chem., November 16, 2001; 276(47): 44212 - 44221.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
M. Kanzaki and J. E. Pessin
Insulin-stimulated GLUT4 Translocation in Adipocytes Is Dependent upon Cortical Actin Remodeling
J. Biol. Chem., November 2, 2001; 276(45): 42436 - 42444.
[Abstract] [Full Text] [PDF]


Home page
Am. J. Physiol. Endocrinol. Metab.Home page
Y. Shimoni and J. B. Rattner
Type 1 diabetes leads to cytoskeleton changes that are reflected in insulin action on rat cardiac K+ currents
Am J Physiol Endocrinol Metab, September 1, 2001; 281(3): E575 - E585.
[Abstract] [Full Text] [PDF]


Home page
Mol. Cell. Biol.Home page
A. Bose, A. D. Cherniack, S. E. Langille, S. M. C. Nicoloro, J. M. Buxton, J. G. Park, A. Chawla, and M. P. Czech
G{alpha}11 Signaling through ARF6 Regulates F-Actin Mobilization and GLUT4 Glucose Transporter Translocation to the Plasma Membrane
Mol. Cell. Biol., August 1, 2001; 21(15): 5262 - 5275.
[Abstract] [Full Text] [PDF]


Home page
J. Exp. Biol.Home page
D. Evans and P. Piermarini
Contractile properties of the elasmobranch rectal gland
J. Exp. Biol., January 1, 2001; 204(1): 59 - 67.
[Abstract] [PDF]


Home page
Am. J. Physiol. Cell Physiol.Home page
L. J. Foster and A. Klip
Mechanism and regulation of GLUT-4 vesicle fusion in muscle and fat cells
Am J Physiol Cell Physiol, October 1, 2000; 279(4): C877 - C890.
[Abstract] [Full Text] [PDF]


Home page
Mol. Biol. CellHome page
V. K. Randhawa, P. J. Bilan, Z. A. Khayat, N. Daneman, Z. Liu, T. Ramlal, A. Volchuk, X.-R. Peng, T. Coppola, R. Regazzi, et al.
VAMP2, but Not VAMP3/Cellubrevin, Mediates Insulin-dependent Incorporation of GLUT4 into the Plasma Membrane of L6 Myoblasts
Mol. Biol. Cell, July 1, 2000; 11(7): 2403 - 2417.
[Abstract] [Full Text]


Home page
J. Biol. Chem.Home page
A. L. Olson, A. R. Trumbly, and G. V. Gibson
Insulin-mediated GLUT4 Translocation Is Dependent on the Microtubule Network
J. Biol. Chem., March 30, 2001; 276(14): 10706 - 10714.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
D. Li, V. K. Randhawa, N. Patel, M. Hayashi, and A. Klip
Hyperosmolarity Reduces GLUT4 Endocytosis and Increases Its Exocytosis from a VAMP2-independent Pool in L6 Muscle Cells
J. Biol. Chem., June 15, 2001; 276(25): 22883 - 22891.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
M. Emoto, S. E. Langille, and M. P. Czech
A Role for Kinesin in Insulin-stimulated GLUT4 Glucose Transporter Translocation in 3T3-L1 Adipocytes
J. Biol. Chem., March 30, 2001; 276(14): 10677 - 10682.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
J. P. Whitehead, J. C. Molero, S. Clark, S. Martin, G. Meneilly, and D. E. James
The Role of Ca2+ in Insulin-stimulated Glucose Transport in 3T3-L1 Cells
J. Biol. Chem., July 20, 2001; 276(30): 27816 - 27824.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
C. Huppertz, B. M. Fischer, Y.-B. Kim, K. Kotani, A. Vidal-Puig, L. J. Slieker, K. W. Sloop, B. B. Lowell, and B. B. Kahn
Uncoupling Protein 3 (UCP3) Stimulates Glucose Uptake in Muscle Cells through a Phosphoinositide 3-Kinase-dependent Mechanism
J. Biol. Chem., April 13, 2001; 276(16): 12520 - 12529.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
M. Kanzaki, R. T. Watson, A. H. Khan, and J. E. Pessin
Insulin Stimulates Actin Comet Tails on Intracellular GLUT4-containing Compartments in Differentiated 3T3L1 Adipocytes
J. Biol. Chem., December 21, 2001; 276(52): 49331 - 49336.
[Abstract] [Full Text] [PDF]


This Article
Right arrow Summary Freely available
Right arrow Full Text (PDF)
Right arrow Alert me when this article is cited
Right arrow Alert me if a correction is posted
Services
Right arrow Email this article to a friend
Right arrow Similar articles in this journal
Right arrow Similar articles in PubMed
Right arrow Alert me to new issues of the journal
Right arrow Download to citation manager
Right arrow reprints & permissions
Citing Articles
Right arrow Citing Articles via HighWire
Right arrow Citing Articles via Google Scholar
Google Scholar
Right arrow Articles by Khayat, Z. A.
Right arrow Articles by Klip, A.
Right arrow Search for Related Content
PubMed
Right arrow PubMed Citation
Right arrow Articles by Khayat, Z. A.
Right arrow Articles by Klip, A.
Social Bookmarking
 Add to CiteULike   Add to Complore   Add to Connotea   Add to Del.icio.us   Add to Digg   Add to Reddit   Add to Technorati   Add to Twitter  
What's this?