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 Wubbolts, R.
Right arrow Articles by Neefjes, J.
Right arrow Search for Related Content
PubMed
Right arrow PubMed Citation
Right arrow Articles by Wubbolts, R.
Right arrow Articles by Neefjes, J.
Anderson, H. A. and Roche, P. A (1998). Phosphorylation regulates the delivery of MHC class II invariant chain complexes to antigen processing compartments. J. Immunol 160, 4850-4858.[Abstract/Free Full Text]

Aniento, F., Emans, N., Griffiths, G. and Gruenberg, J (1993). Cytoplasmic dynein-dependent vesicular transport from early to late endosomes. J. Cell Biol 123, 1373-1387.[Abstract/Free Full Text]

Avva, R. R. and Cresswell, P (1994). In vivo and in vitro formation and dissociation of HLA-DR complexes with invariant chain-derived peptides. Immunity 1, 763-774.[Medline]

Blocker, A., Severin, F. F., Burkhardt, J. K., Bingham, J. B., Yu, H., Olivo, J. C., Schroer, T. A., Hyman, A. A. and Griffiths, G (1997). Molecular requirements for bi-directional movement of phagosomes along microtubules. J. Cell Biol 137, 113-129.[Abstract/Free Full Text]

Blum, J. S. and Cresswell, P (1988). Role for intracellular proteases in the processing and transport of class II HLA antigens. Proc. Natl. Acad. Sci. USA 85, 3975-3979.[Abstract/Free Full Text]

Burkhardt, J. K., Echeverri, C. J., Nilsson, T. and Vallee, R. B (1997). Overexpression of the dynamitin (p50) subunit of the dynactin complex disrupts dynein-dependent maintenance of membrane organelle distribution. J. Cell Biol 139, 469-484.[Abstract/Free Full Text]

Cella, M., Engering, A., Pinet, V., Pieters, J. and Lanzavecchia, A (1997). Inflammatory stimuli induce accumulation of MHC class II complexes on dendritic cells. Nature 388, 782-787.[Medline]

Cresswell, P (1994). Assembly, transport, and function of MHC class II molecules. Annu. Rev. Immunol 12, 259-293.[Medline]

Cresswell, P (1996). Invariant chain structure and MHC class II function. Cell 84, 505-507.[Medline]

Deussing, J., Roth, W., Saftig, P., Peters, C., Ploegh, H. L. and Villadangos, J. A (1998). Cathepsins B and D are dispensable for major histocompatibility complex class II-mediated antigen presentation. Proc. Natl. Acad. Sci. USA 95, 4516-4521.[Abstract/Free Full Text]

Echeverri, C. J., Paschal, B. M., Vaughan, K. T. and Vallee, R. B (1998). Molecular characterization of the 50-kD subunit of dynactin reveals function for the complex in chromosome alignment and spindle organization during mitosis. J. Cell Biol 132, 617-633.[Abstract/Free Full Text]

Farshori, P. and Holzbaur, E. L (1997). Dynactin phosphorylation is modulated in response to cellular effectors. Biochem. Biophys. Res. Commun 232, 810-816.[Medline]

Fernandez-Borja, M., Verwoerd, D., Sanderson, F., Aerts, H., Trowsdale, J., Tulp, A. and Neefjes, J (1996). HLA-DM and MHC class II molecules co-distribute with peptidase-containing lysosomal subcompartments. Int. Immunol 8, 625-640.[Abstract/Free Full Text]

Futterer, A., Kruppa, G., Kramer, B., Lemke, H. and Kronke, M (1995). Molecular cloning and characterization of human kinectin. Mol. Biol. Cell 6, 161-170.[Abstract]

Gee, M. A., Heuser, J. E. and Vallee, R. B (1998). An extending microtubule-binding structure within the dynein binding domain. Nature 390, 636-639.

Ghosh, P., Amaya, M., Mellins, E. and Wiley, D. C (1995). The structure of an intermediate in class II MHC maturation: CLIP bound to HLA-DR3. Nature 378, 457-462.[Medline]

Goodson, H. V., Valetti, C. and Kreis, T. E (1997). Motors and membrane traffic. Curr. Opin. Cell Biol 9, 18-28.[Medline]

Griffiths, G. M. and Argon, Y (1995). Structure and biogenesis of lytic granules. Curr. Top. Microbiol. Immunol 198, 39-58.[Medline]

Gruenberg, J. and Kreis, T. E (1995). Membranes and sorting. Curr. Opin. Cell Biol 7, 519-522.[Medline]

Hagiwara, H., Yorifuji, H., Sato-Yoshitake, R. and Hirokawa, N (1994). Competition between motor molecules (kinesin and cytoplasmic dynein) and fibrous microtubule-associated proteins in binding to microtubules. J. Biol. Chem 269, 3581-3589.[Abstract/Free Full Text]

Haimo, L. T. and Rozdzial, M. M (1989). Lysed chromatophores: a model system for the study of bidirectional organelle transport. Methods Cell Biol 31, 3-24.[Medline]

Hamm-Alvarez, S. F., Kim, P. Y. and Sheetz, M. P (1993). Regulation ofvesicle transport in CV-1 cells and extracts. J. Cell Sci 106, 955-966.[Abstract]

Heim, R. and Tsien, R. Y (1996). Engineering green fluorescent protein for improved brightness, longer wavelengths and fluorescence resonance energy transfer. Curr. Biol 6, 178-182.[Medline]

Hirokawa, N (1998). Kinesin and dynein superfamily proteins and the mechanism of organelle transport. Science 279, 519-526.[Abstract/Free Full Text]

Hoflack, B. and Kornfeld, S (1985). Purification and characterization of a cation-dependent mannose 6-phosphate receptor from murine P388D1 macrophages and bovine liver. J. Biol. Chem 260, 12008-12014.[Abstract/Free Full Text]

Hollenbeck, P. J. and Swanson, J. A (1990). Radial extension of macrophage tubular lysosomes supported by kinesin. Nature 346, 864-866.[Medline]

Hollenbeck, P. J (1993). Phosphorylation of neuronal kinesin heavy and light chains in vivo. J. Neurochem 60, 2265-2275.[Medline]

Holzbaur, E. L. and Vallee, R. B (1994). DYNEINS: molecular structure and cellular function. Annu. Rev. Cell Biol 10, 339-372.

Ince, C., van Dissel, J. T. and Diesselhoff, M. M (1985). A teflon culture dish for high-magnification microscopy and measurements in single cells. Pflugers Arch 403, 240-244.[Medline]

Jensen, P. E (1998). Antigen processing: HLA-DO \320 a hitchhiking inhibitor of HLA-DM. Curr. Biol 8, 128-31.

Karlsson, L., Peleraux, A., Lindstedt, R., Liljedahl, M. and Peterson, P. A (1994). Reconstitution of an operational MHC class II compartment in nonantigen-presenting cells. Science 266, 1569-1573.[Abstract/Free Full Text]

Kleijmeer, M. J., Ossevoort, M. A., van Veen, C. J., van Hellemond, J. J., Neefjes, J. J., Kast, W. M., Melief, C. J. and Geuze, H. J (1995). MHC class II compartments and the kinetics of antigen presentation in activated mouse spleen dendritic cells. J. Immunol 154, 5715-5724.[Abstract]

Koppelman, B., Neefjes, J., de Vries, J. E. and de Waal Malefyt, R (1997). Interleukin-10 down-regulates MHC class II ab peptide complexes at the plasma membrane of monocyte by affecting arrival and recycling. Immunity 7, 861-871.[Medline]

Kozielski, F., Sack, S., Marx, A., Thormahlen, M., Schonbrunn, E., Biou, V., Thompson, A., Mandelkow, E. M. and Mandelkow, E (1997). The crystal structure of dimeric kinesin and implications for microtubule-dependent motility. Cell 91, 985-994.[Medline]

Kumar, J., Yu, H. and Sheetz, M. P (1995). Kinectin, an essential anchor for kinesin-driven vesicle motility. Science 267, 1834-1837.[Abstract/Free Full Text]

Lee, K. D. and Hollenbeck, P. J (1995). Phosphorylation of kinesin in vivo correlates with organelle association and neurite outgrowth. J. Biol. Chem 270, 5600-5605.[Abstract/Free Full Text]

Leung, E., Print, C. G., Parry, D. A., Closey, D. N., Lockhart, P. J., Skinner, S. J., Batchelor, D. C. and Krissansen, G. W (1996). Cloning of novel kinectin splice variants with alternative C-termini: structure, distribution and evolution of mouse kinectin. Immunol. Cell Biol 74, 421-433.[Medline]

Lin, S. X., Ferro, K. L. and Collins, C. A (1994). Cytoplasmic dynein undergoes intracellular redistribution concomitant with phosphorylation of the heavy chain in response to serum starvation and okadaic acid. J. Cell Biol 127, 1009-1019.[Abstract/Free Full Text]

Lin, S. X., Pfister, K. K. and Collins, C. A (1996). Comparison of the intracellular distribution of cytoplasmic dynein and kinesin in cultured cells: motor protein location does not reliably predict function. Cell Motil. Cytoskel 34, 299-312.[Medline]

Lindesmith, L., McIlvain Jr., J. M., Argon, Y. and Sheetz, M. P (1997). Phosphotransferases associated with the regulation of kinesin motor activity. J.Biol.Chem 272, 22929-22933.[Abstract/Free Full Text]

Lippincott-Schwartz, J. and Cole, N. B (1995). Roles for microtubules and kinesin in membrane traffic between the endoplasmic reticulum and the Golgi complex. Biochem. Soc. Trans 23, 544-548.[Medline]

Lopez, L. A. and Sheetz, M. P (1993). Steric inhibition of cytoplasmic dynein and kinesin motility by MAP2. Cell Motil. Cytoskel 24, 1-16.[Medline]

Morton, P. A., Zacheis, M. L., Giacoletto, K. S., Manning, J. A. and Schwartz, B. D (1995). Delivery of nascent MHC class II-invariant chain complexes to lysosomal compartments and proteolysis of invariant chain by cysteine proteases precedes peptide binding in B-lymphoblastoid cells. J. Immunol 154, 137-150.[Abstract]

Nakata, T. and Hirokawa, N (1995). Point mutation of adenosine triphosphate-binding motif generated rigor kinesin that selectively blocks anterograde lysosome membrane transport. J. Cell Biol 131, 1039-1053.[Abstract/Free Full Text]

Navone, F., Niclas, J., Hom-Booher, N., Sparks, L., Bernstein, H. D., McCaffrey, G. and Vale, R. D (1992). Cloning and expression of a human kinesin heavy chain gene: interaction of the COOH-terminal domain with cytoplasmic microtubules in transfected CV-1 cells. J. Cell Biol 117, 1263-1275.[Abstract/Free Full Text]

Neefjes, J. J. and Ploegh, H. L (1992). Inhibition of endosomal proteolytic activity by leupeptin blocks surface expression of MHC class II molecules and their conversion to SDS resistance alpha-beta heterodimers in endosomes. EMBO J 11, 411-416.[Medline]

Nguyen, Q. V. and Humphreys, R. E (1989). Time course of intracellular associations, processing, and cleavages of Ii forms and class II major histocompatibility complex molecules. J. Biol. Chem 264, 1631-1637.[Abstract/Free Full Text]

Nijman, H. W., Kleijmeer, M. J., Ossevoort, M. A., Oorschot, V. M., Vierboom, M. P., van de Keur, M., Kenemans, P., Kast, W. M., Geuze, H. J. and Melief, C. J (1995). Antigen capture and major histocompatibility class II compartments of freshly isolated and cultured human blood dendritic cells. J. Exp. Med 182, 163-174.[Abstract/Free Full Text]

Oda, H., Stockert, R. J., Collins, C., Wang, H., Novikoff, P. M., Satir, P. and Wolkoff, A. W (1995). Interaction of the microtubule cytoskeleton with endocytic vesicles and cytoplasmic dynein in cultured rat hepatocytes. J. Biol. Chem 270, 15242-15249.[Abstract/Free Full Text]

Paschal, B. M., Shpetner, H. S. and Vallee, R. B (1987). MAP 1C is a microtubule-activated ATPase which translocates microtubules in vitro and has dynein-like properties. J. Cell Biol 105, 1273-1282.[Abstract/Free Full Text]

Perou, C. M. and Kaplan, J (1993). Chediak-Higashi syndrome is not due to a defect in microtubule-based lysosomal mobility. J. Cell Sci 106, 99-107.[Abstract]

Peters, P. J., Neefjes, J. J., Oorschot, V., Ploegh, H. L. and Geuze, H. J (1991). Segregation of MHC class II molecules from MHC class I molecules in the Golgi complex for transport to lysosomal compartments. Nature 349, 669-676.[Medline]

Pierre, P., Denzin, L. K., Hammond, C., Drake, J. R., Amigorena, S., Cresswell, P. and Mellman, I (1996). HLA-DM is localized to conventional and unconventional MHC class II-containing endocytic compartments. Immunity 4, 229-239.[Medline]

Pierre, P., Turley, S. J., Gatti, E., Hull, M., Meltzer, J., Mirza, A., Inaba, K., Steinman, R. M. and Mellman, I (1997). Developmental regulation of MHC class II transport in mouse dendritic cells. Nature 388, 787-792.[Medline]

Pierre, P. and Mellman, I (1998). Developmental regulation of invariant chain proteolysis controls MHC class II trafficking in mouse dendritic cells. Cell 93, 1135-1145.[Medline]

Pieters, J., Horstmann, H., Bakke, O., Griffiths, G. and Lipp, J (1991). Intracellular transport and localization of major histocompatibility complex class II molecules and associated invariant chain. J. Cell Biol 115, 1213-1223.[Abstract/Free Full Text]

Prescott, A. R., Lucocq, J. M., James, J., Lister, J. M. and Ponnambalam, S (1997). Distinct compartmentalization of TGN46 and beta 1,4-galactosyltransferase in HeLa cells. Eur. J. Cell Biol 72, 238-246.[Medline]

Quaranta, V., Majdic, O., Stingl, G., Liszka, K., Honigsmann, H. and Knapp, W (1984). A human Ia cytoplasmic determinant located on multiple forms of invariant chain (gamma, gamma 2, gamma 3). J. Immunol 132, 1900-1905.[Abstract]

Reise, R. J., Wolf, P. R., Bromme, D., Natkin, L. R., Villadangos, J. A., Ploegh, H. L. and Chapman, H. A (1996). Essential role for cathepsin S in MHC class II-associated invariant chain processing and peptide loading. Immunity 4, 357-366.[Medline]

Robbins, N. F., Hammond, C., Denzin, L. K., Pan, M. and Cresswell, P (1996). Trafficking of major histocompatibility complex class II molecules through intracellular compartments containing HLA-DM. Hum. Immunol 45, 13-23.[Medline]

Rodriguez, A., Samoff, E., Rioult, M. G., Chung, A. and Andrews, N. W (1996). Host cell invasion by trypanosomes requires lysosomes and microtubule/kinesin-mediated transport. J. Cell Biol 134, 349-362.[Abstract/Free Full Text]

Rogers, S. L., Tint, I. S., Fanapour, P. C. and Gelfand, V. I (1997). Regulated bidirectional motility of melanophore pigment granules along microtubules in vitro. Proc. Natl. Acad. Sci. USA 94, 3720-3725.[Abstract/Free Full Text]

Sallusto, F. and Lanzavecchia, A (1994). Efficient presentation of soluble antigen by cultured human dendritic cells is maintained by granulocyte/macrophage colony-stimulating factor plus interleukin 4 and downregulated by tumor necrosis factor. J. Exp. Med 179, 1109-1118.[Abstract/Free Full Text]

Sanderson, F., Kleijmeer, M. J., Kelly, A., Verwoerd, D., Tulp, A., Neefjes, J. J., Geuze, H. J. and Trowsdale, J (1994). Accumulation of HLA-DM, a regulator of antigen presentation, in MHC class II compartments. Science 266, 1566-1569.[Abstract/Free Full Text]

Sato-Harada, R., Okabe, S., Umeyama, T., Kanai, Y. and Hirokawa, N (1996). Microtubule-associated proteins regulate microtubule function as the track for intracellular membrane organelle transports. Cell Struct. Funct 21, 283-295.[Medline]

Schnitzer, M. J. and Block, S. M (1997). Kinesin hydrolyses one ATP per 8-nm step. Nature 388, 386-390.[Medline]

Schroer, T. A., Steuer, E. R. and Sheetz, M. P (1989). Cytoplasmic dynein is a minus end-directed motor for membranous organelles. Cell 56, 937-946.[Medline]

Spiro, R. C. and Quaranta, V (1989). The invariant chain is a phosphorylated subunit of class II molecules. J. Immunol 143, 2589-2594.[Abstract]

Swanson, J. A., Locke, A., Ansel, P. and Hollenbeck, P. J (1992). Radial movement of lysosomes along microtubules in permeabilized macrophages. J. Cell Sci 103, 201-209.[Abstract/Free Full Text]

Toyoshima, I., Yu, H., Steuer, E. R. and Sheetz, M. P (1992). Kinectin, a major kinesin-binding protein on ER. J. Cell Biol 118, 1121-1131.[Abstract/Free Full Text]

Tulp, A., Verwoerd, D., Fernandez-Borja, M., Neefjes, J. and Hart,A. A. M (1996). High resolution density gradient electrophoresis of cellular organelles. Electrophoresis 17, 173-178.[Medline]

Vale, R. D., Malik, F. and Brown, D (1992). Directional instability of microtubule transport in the presence of kinesin and dynein, two opposite polarity motor proteins. J. Cell Biol 119, 1589-1596.[Abstract/Free Full Text]

Vale, R. D. and Fletterick, R. J (1997). The design plan of kinesin motors. Ann. Rev. Cell Dev. Biol 13, 745-777.[Medline]

Vallee, R. B. and Sheetz, M. P (1996). Targeting of motor proteins. Science 271, 1539-1544.[Abstract]

van Ham, S. M., Tjin, E. P. M., Lillemeier, B. F., Gruneberg, U., van Meijgaarden, K. E., Pastoors, L., Verwoerd, D., Tulp, A., Canas, B., Rahman, D. et al (1997). HLA-DO is a negative modulator of HLA-DM-mediated MHC class II peptide loading. Curr. Biol 7, 950-957.[Medline]

Vaughan, K. T. and Vallee, R. B (1995). Cytoplasmic dynein binds dynactin through a direct interaction between the intermediate chains and p150Glued. J. Cell Biol 131, 1507-1516.[Abstract/Free Full Text]

Vennegoor, C., Calafat, J., Hageman, P., van Buitenen, F., Janssen, H., Kolk, A. and Rumke, P (1985). Biochemical characterization and cellular localization of a formalin-resistant melanoma-associated antigen reacting with monoclonal antibody NKI/C-3. Int. J. Cancer 35, 287-295.[Medline]

Waterman-Storer, C. M., Karki, S. and Holzbaur, E. L (1995). The p150Glued component of the dynactin complex binds to both microtubules and the actin-related protein centractin (Arp-1). Proc. Natl. Acad. Sci. USA 92, 1634-1638.[Abstract/Free Full Text]

Watts, C (1997). Capture and processing of exogenous antigens for presentation on MHC molecules. Annu. Rev. Immunol 15, 821-850.[Medline]

Woehlke, G., Ruby, A. K., Hart, C. L., Ly, B., Hom-Booher, N. and D. Vale, R (1997). Microtubule interaction site of the kinesin motor. Cell 90, 207-216.[Medline]

Wolf, P. R. and Ploegh, H. L (1996). How MHC class II molecules acquire peptide cargo: biosynthesis and trafficking through the endocytic pathway. Ann. Rev. Cell Dev. Biol 11, 267-306.[Medline]

Wubbolts, R. W., Fernandez-Borja, M., Oomen, L., Verwoerd, D., Janssen, H., Calafat, J., Tulp, A., Dusseljee, S. and Neefjes, J. J (1996). Direct vesicular transport of MHC class II molecules from lysosomal structures to the cell surface. J. Cell Biol 135, 611-622.[Abstract/Free Full Text]

Yu, H., Nicchitta, C. V., Kumar, J., Becker, M., Toyoshima, I. and Sheetz, M. P (1995). Characterization of kinectin, a kinesin-binding protein: primary sequence and N-terminal topogenic signal analysis. Mol. Biol. Cell 6, 171-183.[Abstract]

Zachgo, S., Dobberstein, B. and Griffiths, G (1992). A block in degradation of MHC class II-associated invariant chain correlates with a reduction in transport from endosome carrier vesicles to the prelysosome compartment. J. Cell Sci 103, 811-822.[Abstract]




This article has been cited by other articles:


Home page
Proc. Natl. Acad. Sci. USAHome page
A. M. Keller, T. A. Groothuis, E. A. M. Veraar, M. Marsman, L. M. de Buy Wenniger, H. Janssen, J. Neefjes, and J. Borst
Costimulatory ligand CD70 is delivered to the immunological synapse by shared intracellular trafficking with MHC class II molecules
PNAS, April 3, 2007; 104(14): 5989 - 5994.
[Abstract] [Full Text] [PDF]


Home page
J. Cell Biol.Home page
F. Vascotto, D. Lankar, G. Faure-Andre, P. Vargas, J. Diaz, D. Le Roux, M.-I. Yuseff, J.-B. Sibarita, M. Boes, G. Raposo, et al.
The actin-based motor protein myosin II regulates MHC class II trafficking and BCR-driven antigen presentation
J. Cell Biol., March 26, 2007; 176(7): 1007 - 1019.
[Abstract] [Full Text] [PDF]


Home page
J. Cell Biol.Home page
M. Johansson, N. Rocha, W. Zwart, I. Jordens, L. Janssen, C. Kuijl, V. M. Olkkonen, and J. Neefjes
Activation of endosomal dynein motors by stepwise assembly of Rab7-RILP-p150Glued, ORP1L, and the receptor {beta}lll spectrin
J. Cell Biol., February 12, 2007; 176(4): 459 - 471.
[Abstract] [Full Text] [PDF]


Home page
J. Virol.Home page
I. J. Dorweiler, S. J. Ruone, H. Wang, R. W. Burry, and L. M. Mansky
Role of the Human T-Cell Leukemia Virus Type 1 PTAP Motif in Gag Targeting and Particle Release.
J. Virol., April 1, 2006; 80(7): 3634 - 3643.
[Abstract] [Full Text] [PDF]


Home page
Arterioscler. Thromb. Vasc. Bio.Home page
M. G. Rondaij, R. Bierings, A. Kragt, K. A. Gijzen, E. Sellink, J. A. van Mourik, M. Fernandez-Borja, and J. Voorberg
Dynein-Dynactin Complex Mediates Protein Kinase A-Dependent Clustering of Weibel-Palade Bodies in Endothelial Cells
Arterioscler. Thromb. Vasc. Biol., January 1, 2006; 26(1): 49 - 55.
[Abstract] [Full Text] [PDF]


Home page
Mol. Biol. CellHome page
E. Bananis, S. Nath, K. Gordon, P. Satir, R. J. Stockert, J. W. Murray, and A. W. Wolkoff
Microtubule-Dependent Movement of Late Endocytic Vesicles In Vitro: Requirements for Dynein and Kinesin
Mol. Biol. Cell, August 1, 2004; 15(8): 3688 - 3697.
[Abstract] [Full Text] [PDF]


Home page
Mol. Biol. CellHome page
R. E. Harrison, J. H. Brumell, A. Khandani, C. Bucci, C. C. Scott, X. Jiang, B. B. Finlay, and S. Grinstein
Salmonella Impairs RILP Recruitment to Rab7 during Maturation of Invasion Vacuoles
Mol. Biol. Cell, July 1, 2004; 15(7): 3146 - 3154.
[Abstract] [Full Text] [PDF]


Home page
Mol. Biol. CellHome page
M. Marsman, I. Jordens, C. Kuijl, L. Janssen, and J. Neefjes
Dynein-mediated Vesicle Transport Controls Intracellular Salmonella Replication
Mol. Biol. Cell, June 1, 2004; 15(6): 2954 - 2964.
[Abstract] [Full Text] [PDF]


Home page
Am. J. Respir. Crit. Care Med.Home page
T. Fumeaux and J. Pugin
Role of Interleukin-10 in the Intracellular Sequestration of Human Leukocyte Antigen-DR in Monocytes during Septic Shock
Am. J. Respir. Crit. Care Med., December 1, 2002; 166(11): 1475 - 1482.
[Abstract] [Full Text] [PDF]


Home page
J. Immunol.Home page
C. M. Cebulla, D. M. Miller, Y. Zhang, B. M. Rahill, P. Zimmerman, J. M. Robinson, and D. D. Sedmak
Human Cytomegalovirus Disrupts Constitutive MHC Class II Expression
J. Immunol., July 1, 2002; 169(1): 167 - 176.
[Abstract] [Full Text] [PDF]


Home page
J. Cell Sci.Home page
S. Ma and R. L. Chisholm
Cytoplasmic dynein-associated structures move bidirectionally in vivo
J. Cell Sci., January 4, 2002; 115(7): 1453 - 1460.
[Abstract] [Full Text] [PDF]


Home page
J. Immunol.Home page
M. van Lith, M. van Ham, A. Griekspoor, E. Tjin, D. Verwoerd, J. Calafat, H. Janssen, E. Reits, L. Pastoors, and J. Neefjes
Regulation of MHC Class II Antigen Presentation by Sorting of Recycling HLA-DM/DO and Class II within the Multivesicular Body
J. Immunol., July 15, 2001; 167(2): 884 - 892.
[Abstract] [Full Text] [PDF]


Home page
Mol. Biol. CellHome page
A. M. Robertson and V. J. Allan
Brefeldin A-dependent Membrane Tubule Formation Reconstituted In Vitro Is Driven by a Cell Cycle-regulated Microtubule Motor
Mol. Biol. Cell, March 1, 2000; 11(3): 941 - 955.
[Abstract] [Full Text]


Home page
J. Cell Biol.Home page
O. Krylyshkina, I. Kaverina, W. Kranewitter, W. Steffen, M. C. Alonso, R. A. Cross, and J. V. Small
Modulation of substrate adhesion dynamics via microtubule targeting requires kinesin-1
J. Cell Biol., January 21, 2002; 156(2): 349 - 360.
[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 Wubbolts, R.
Right arrow Articles by Neefjes, J.
Right arrow Search for Related Content
PubMed
Right arrow PubMed Citation
Right arrow Articles by Wubbolts, R.
Right arrow Articles by Neefjes, J.