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 Straube-West, K.
Right arrow Articles by Goldman, R. D.
Right arrow Search for Related Content
PubMed
Right arrow PubMed Citation
Right arrow Articles by Straube-West, K.
Right arrow Articles by Goldman, R. D.
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?
Aebi, U., Haner, M., Troncoso, J., Eichner, R. and Engel, A (1988). Unifying principles in intermediate filament (IF) structure and assembly. Protoplasma 145, 73-81.

Angelides, K. J., Smith, K. E. and Takeda, M (1989). Assembly and exchange of intermediate filament proteins of neurons: neurofilaments are dynamic structures. J. Cell Biol 108, 1495-1506.[Abstract/Free Full Text]

Arakawa, O.-M. and Narahashi, T (1992). Chloride current induced by alcohols in rat dorsal root ganglion neurons. Brain Res 578, 275-281.[Medline]

Balin, B. J. and Lee, V. M.-Y (1991). Individual neurofilament subunits reassembled in vitro exhibit unique biochemical, morphological and immunological properties. Brain Res 556, 196-208.[Medline]

Bennett, G. S., Tapscott, S. J., Kleinbart, F. A., Antin, P. B. and Holtzer, H (1981). Different proteins associated with 10-nanometer filaments in cultured chick neurons and non-neuronal cells. Science 212, 567-569.[Abstract/Free Full Text]

Bennett, G. S., Tapscott, S. J., DiLullo, C. and Holtzer, H (1984). Differential binding of antibodies against the neurofilament triplet proteins in different avian neurons. Brain Res 304, 291-302.[Medline]

Bizzi, A., Crane, R. C., Autilio-Gambetti, L. and Gambetti, P (1984). Aluminum effect on slow axonal transport: a novel impairment of neurofilament transport. J. Neurosci 4, 722-731.[Abstract]

Bowling, A. C., Schulz, J. S., Brown, R. H. and Beal, M. F (1993). Superoxide dismutase activity, oxidative damage, and mitochondrial energy metabolism in familial and sporatic amyotrophic lateral sclerosis. J. Neurochem 61, 2322-2325.[Medline]

Bradford, M. M (1976). A rapid and sensitive method for the quantitation of microgram quantities of protein utilizing the principle of protein-dye binding. Anal. Biochem 72, 248-254.[Medline]

Breuer, A. C., Lynn, M. P., Atkinson, M. B., Chou, S. M., Wilbourn, A. J., Marks, K. E., Culver, J. E. and Fleegler, E. J (1987). Fast axonal transport in amyotrophic lateral sclerosis: an intra-axonal organelle traffic analysis. Neurology 37, 738-748.[Abstract/Free Full Text]

Carden, M. J., Schlaepfer, W. W. and Lee, V. M.-Y (1985). The structure, biochemical properties, and immunogenicity of neurofilament peripheral regions are determined by phosphorylation state. J. Biol. Chem 260, 9805-9817.[Abstract/Free Full Text]

Carpenter, S (1968). Proximal axonal enlargement in motor neuron disease. Neurology 18, 841-851.[Free Full Text]

Ching, G. Y. and Liem, R. K. H (1993). Assembly of Type IV neuronal intermediate filaments in non-neuronal cells in the absence of pre-existing cytoplasmic intermediate filaments. J. Cell Biol 122, 1323-1335.[Abstract/Free Full Text]

Chiu, F.-C., Korey, B. and Norton, W. T (1980). Intermediate filaments frombovine, rat and human CNS: mapping analysis of major proteins. J. Neurochem 34, 1149-1159.[Medline]

Collard, J.-F., C\231te, F. and Julien, J.-P (1995). Defective axonal transport in a transgenic mouse model of amyotrophic lateral sclerosis. Nature 375, 61-64.[Medline]

Cork, L. C., Sternberger, N. H., Sternberger, L. A., Casanova, M. F., Strubl, R. G. and Price, D. L (1986). Phosphorylated neurofilament antigens in neurofibrillary tangles in Alzheimer's disease. J. Neuropath. Exp. Neurol 45, 56-64.[Medline]

C\231te, F., Collard, J.-F. and Julien, J.-P (1993). Progressive neuronopathy in transgenic mice expressing the neurofilament heavy gene: a mouse model of amyotrophic lateral sclerosis. Cell 73, 35-46.[Medline]

deWaegh, S. M., Lee, V. M.-Y. and Brady, S. T (1992). Local modulation of neurofilament phosphorylation, axonal caliber, and slow axonal transport by myelinating Schwann cells. Cell 68, 451-463.[Medline]

Friede, R. L. and Samorajski, T (1970). Axonal caliber related to neurofilaments and microtubules in sciatic nerve fibres of rats and mice. Anat. Rec 167, 379-388.[Medline]

Gardner, E. E., Dahl, D. and Bignami, A (1984). Formation of 10nm filaments from the 150K-Dalton neurofilament protein in vitro. J. Neurosci. Res 11, 145-155.[Medline]

Gasser, H. S. and Grundfest, H (1939). Axon diameters in relation to spike dimensions and the conduction velocity in mammalian A fibers. Am. J. Physiol 127, 393-414.

Geisler, N. and Weber, K (1981). Self-assembly in vitro of the 68,000 molecular weight component of the mammalian neurofilament triplet proteins into intermediate-sized filaments. J. Mol. Biol 151, 565-571.[Medline]

Geisler, N., Kaufmann, E., Fischer, S., Plessmann, U. and Weber, K (1983). Neurofilament architecture combines structural principles of intermediate filaments with carboxy-terminal extensions increasing in size between triplet proteins. EMBO J 2, 1295-1302.[Medline]

Gonatas, N. K., Stieber, A., Mourelatos, Z., Chen, Y., Gonatas, J. O., Appel, S. H., Hays, A. P., Hickey, W. F. and Hauw, J. J (1992). Fragmentation of the Golgi apparatus of motor neurons in amyotrophic lateral sclerosis. Am. J. Pathol 140, 731-737.[Abstract]

Griffin, J. W., Hoffman, P. N., Clark, A. W., Carroll, P. T. and Price, D. L (1978). Slow axonal transport of neurofilament proteins: impairment of beta,beta-iminodipropionitrile adminstration. Science 202, 633-635.[Abstract/Free Full Text]

Hamburger, V. and Hamilton, H. L (1951). A series of normal stages in the development of the chick embryo. J. Morphol 88, 49-92.

Henneman, E., Somjen, G. and Carpenter, D. O (1965). Excitability and inhibitability of motoneurons of different sizes. J. Neurophysiol 28, 599-619.[Free Full Text]

Hirano, A., Donnenfeld, H., Sasaki, S. and Nakano, I (1984). Fine structured observations of neurofilamentous changes in amyotrophic lateral sclerosis. J. Neuropathol. Exp. Neurol 43, 461-470.[Medline]

Hirokawa, N (1982). The crosslinker system between neurofilaments, microtubules and membranous organelles in frog axons revealed by quick-freeze, freeze-fracture, deep-etching method. J. Cell Biol 94, 129-142.[Abstract/Free Full Text]

Hirokawa, N., Glicksman, M. A. and Willard, M (1984). Organization of mammalian neurofilament polypeptides within the neuronal cytoskeleton. J. Cell Biol 98, 1523-1536.[Abstract/Free Full Text]

Hisanaga, S. and Hirokawa, N (1988). Structure of the peripheral domains of neurofilaments revealed by low angle rotary shadowing. J. Mol. Biol 202, 297-305.[Medline]

Hisanaga, S. and Hirokawa, N (1990). Dephosphorylation-induced interactions of neurofilaments with microtubules. J. Biochem 265, 21852-21858.

Hoffman, P. N. and Lasek, R. J (1975). The slow component of axonal transport: Identification of the major structural polypeptides of the axon and their generality among mammalian neurons. J. Cell Biol 66, 351-366.[Abstract/Free Full Text]

Hoffman, P. N., Griffin, J. W. and Price, D. L (1984). Control of axonal caliber by neurofilament transport. J. Cell Biol 99, 705-714.[Abstract/Free Full Text]

Hoffman, P. N., Thompson, G. W., Griffin, J. and Price, D. L (1985). Changes in neurofilament transport coincide temporally with alterations in the caliber of axons in regenerating motor fibers. J. Cell Biol 101, 1332-1340.[Abstract/Free Full Text]

Itoh, T., Sobue, G., Ken, E., Mitsuma, T., Takahashi, A. and Trojanowski. J. Q (1992). Phosphorylated high molecular weight neurofilament protein in the peripheral motor, sensory and sympathetic neuronal perikarya: system-dependent normal variations and changes in amyotrophic lateral sclerosis and multiple system atrophy. Acta Neuropathol 83, 240-245.[Medline]

Kreis, T. E (1990). Role of microtubules in the organization of the Golgi apparatus. Cell Motil. Cytoskel 15, 67-70.[Medline]

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

Lee, G. M (1989). Measurement of volume injected into individual cells by quantitative fluorescence microscopy. J. Cell Sci 94, 443-447.[Abstract/Free Full Text]

Lee, M. K., Xu, Z., Wong, P. C. and Cleveland, D. W (1993). Neurofilaments are obligate heteropolymers in vivo. J. Cell Biol 122, 1337-1350.[Abstract/Free Full Text]

Lee, M. K., Marszalek, J. R. and Cleveland, D. W (1994). A mutant neurofilament subunit causes massive, selective motor neuron death: implications for pathogenesis of human motor neuron disease. Neuron 13, 975-988.[Medline]

Lee, V. M.-Y., Carden, M. J., Schlaepfer, W. W. and Trojanowski, J. Q (1987). Monoclonal antibodies distinguish several differentially phosphorylated states of the two largest rat neurofilament subunits (NF-H and NF-M) and demonstrate their existence in the normal nervous system of adult rats. J. Neurosci 7, 3474-3488.[Abstract]

Letourneau, P. C. and Wire, J. P (1995). Three dimensional organization of stable microtubules and the Golgi apparatus in the somata of developing chick sensory neurons. J. Neurocytol 24, 207-223.[Medline]

Liem, R. K. H., Yen, S.-H., Solomon, G. D. and Shelanski, M. L (1978). Intermediate filaments in nervous tissue. J. Cell Biol 79, 637-645.[Abstract/Free Full Text]

Liem, R. K. H. and Hutchinson, C (1982). Purification of individual components of the neurofilament triplet: filament assembly from the 70,000 dalton subunit. Biochemistry 21, 3221-3226.[Medline]

Manetto, V., Sternberger, N. H., Perry, G., Sternberger, L. A. and Gambetti, P (1988). Phosphorylation of neurofilaments is altered in amyotrophic lateral sclerosis. J. Neuropath. Exp. Neurol 47, 642-653.[Medline]

Miller, R. K., Khuon, S. and Goldman, R. D (1993). Dynamics of keratin assembly: exogenous Type I keratin rapidly associates with Type II keratinin vivo. J. Cell Biol 122, 123-135.[Abstract/Free Full Text]

Minaschek, G., Beriter-Hahn, J. and Bertholdt, G (1989). Quantitation of the volume of liquid injected into cells by means of pressure. Exp. Cell Res 183, 434-432.[Medline]

Miyasaka, H., Okabe, S., Ishiguro, K., Uchida, T. and Hirokawa, N (1993). Interaction of the tail domain of high molecular weight subunits of neurofilaments with the COOH-terminal region of tubulin and its regulation by tau protein kinase II. J. Biol. Chem 268, 22695-22702.[Abstract/Free Full Text]

Monteiro, M. J., Hoffman, P. N., Gearhart, J. D. and Cleveland, D. W (1990). Expression of NF-L in both neuronal and non-neuronal cells of transgenic mice: increased neurofilament density in axons without affecting caliber. J. Cell Biol 111, 1543-1557.[Abstract/Free Full Text]

Moon, H. M., Wisniewski, T., Merz, P., DeMartin, J. and Wisniewski, H. M (1981). Partial purification of subunits from bovine brains and studies on neurofilament assembly. J. Cell Biol 89, 560-567.[Abstract/Free Full Text]

Mori, H. and Kurokawa, M (1980). Morphological and biochemical characterization of neurofilaments isolated from rat peripheral nerve. Biochem. Res 1, 24-30.

Mose-Larsen, P., Bravo, R., Fey, S. Y., Small, J. V. and Celis, J. E (1983). Putative association of mitochondria with a subpopulation of intermediate-sized filaments in cultured human skin fibroblasts. Cell 31, 681-692.

Mourelatos, Z., Adler, H., Hirano, A., Donnenfeld, H. D., Gonatas, J. O. and Gonatas, N. K (1990). Fragmentation of the Golgi apparatus of motor neurons in amyotrophic lateral sclerosis revealed by organelle-specific antibodies. Proc. Nat. Acad. Sci. USA 87, 4393-4395.[Abstract/Free Full Text]

Mourelatos, Z., Yachnis, A., Rorke, L., Mikol, J. and Gonatas, N. K (1993). The Golgi apparatus of motor neurons in amyotrophic lateral sclerosis. Ann. Neurol 33, 608-615.[Medline]

Mourelatos, A., Hirano, A., Rosenquist, A. C. and Gonatas, N. K (1994). Fragmentation of the Golgi apparatus of motor neurons in amyotrophic lateral sclerosis (ALS). Am. J. Pathol 144, 1288-1300.[Abstract]

Nakagawa, T., Chen, J., Zhang, Z., Kanai, Y. and Hirokawa, N (1995). Two distinct functions of the carboxyl-tail domain of NF-M upon neurofilament assembly: cross bridge formation and longitudinal elongation of filaments. J. Cell Biol 129, 411-429.[Abstract/Free Full Text]

Nixon, R. A. and Sihag, R. K (1991). Neurofilament phosphorylation: a new look at regulation and function. Trends Neurosci 14, 501-506.[Medline]

Nixon, R. A. and Shea, T. B (1992). Dynamics of neuronal intermediate filaments: a developmental perspective. Cell Motil. Cytoskel 22, 81-91.[Medline]

Nixon, R. A (1993). The regulation of protein dynamics by phosphorylation: clues to neurofibrillary pathobiology. Brain Pathol 3, 29-38.[Medline]

Ohara, O., Gahra, Y., Miyake, T., Teraoka, H. and Kitamura, T (1993). Neurofilament deficiency in quail caused by nonsense mutation in neurofilament-L gene. J. Cell Biol 121, 387-395.[Abstract/Free Full Text]

Okabe, S., Miyasaka, H. and Hirokawa, N (1993). Dynamics of the neuronal intermediate filaments. J. Cell Biol 121, 375-386.[Abstract/Free Full Text]

Pachter, J. S. and Liem, R. K. H (1984). The differential appearance of neurofilament triplet polypeptides in the developing rat optic nerve. Dev. Biol 103, 200-210.[Medline]

Pannese, E., Procacci, P., Ledda, M., Arcidiacono, G., Frattola, D. and Rigamonti, L (1986). Associations between microtubules and mitochondria in myelinated axons of Lacerta muralis . A quantitative analysis. Cell Tissue Res 245, 1-8.[Medline]

Robbins, E. and Gonatas, N. K (1964). Histochemical and ultrastructural studies on HeLa cell cultures exposed to spindle inhibitors with special reference to the interphase cell. J. Histochem. Cytochem 12, 704-711.[Abstract]

Schecket, G. and Lasek, R. J (1980). Preparation of neurofilament protein from guinea pig peripheral nerve and spinal cord. J. Neurochem 35, 1335-1344.[Medline]

Schmidt, M. L., Carden, M. J., Lee, V. M.-Y. and Trojanowski, J. Q (1987). Phosphate depedent and independent neurofilament epitopes in the axonal swellings of patients with motor neuron disease and controls. Lab. Invest 56, 282-294.[Medline]

Scott, D., Smith, K. E., O'Brien, B. and Angelides, K. J (1985). Characterization of mammalian neurofilament triplet proteins: subunit stoichiometry and morphology of nature and reconstituted filaments. J. Biol. Chem 260, 10736-10797.[Abstract/Free Full Text]

Shaw, G. and Weber, K (1982). Differential expression of neurofilament triplet proteins in brain development. Nature 298, 276-299.

Soltys, B. J. and Gupta, R. S (1992). Interrelationships of endoplasmic reticulum, mitochondria, intermediate filaments, and microtubules- a quadruple fluorescence labeling study. Biochem. Cell Biol 70, 1174-1186.[Medline]

Steinert, P. M. and Roop, D. R (1988). The molecular and cellular biology of intermediate filaments. Annu. Rev. Biochem 57, 593-625.[Medline]

Sternberger, L. A. and Sternberger, N (1983). Monoclonal antibodies distinguish phosphorylated and non-phosphorylated forms of neurofilaments in situ. Proc. Nat. Acad. Sci. USA 80, 6126-6130.[Abstract/Free Full Text]

Takeda, S., Okabe, S., Funakoshi, T. and Hirokawa, N (1994). Differential dynamics of neurofilament-H proteins and neurofilament-L protein in neurons. J. Cell Biol 127, 173-185.[Abstract/Free Full Text]

Tascos, N., Mourelatos, Z. and Gonatas, N. K (1995). On the significance and reproducibility of the fragmentation of the Golgi apparatus of motor neurons in human spinal cords. J. Neuropath. Exp. Neurol 54, 331-338.[Medline]

Thyberg, J. and Moskalewski, S (1992). Disorganization of the Golgi complex and the cytoplasmic microtubule system in CHO cells exposed to okadaic acid. J. Cell Sci 103, 1167-1175.[Abstract/Free Full Text]

Towbin, J., Staehelin, T. and Gordon, J (1979). Electrophoretic transfer of proteins from polyacrylamide gels to nitrocellulose sheets: procedure and some applications. Proc. Nat. Acad. Sci. USA 76, 4350-4354.[Abstract/Free Full Text]

Troncoso, J. C., Hoffman, P. N., Griffin, J. W., Hess-Kozlow, K. M. and Price, D (1985). Aluminum intoxication: a disorder of neurofilament transport in motor neurons. Brain Res 342, 172-175.[Medline]

Troncoso, J. C., Sternberger, N. H., Sternberger, L. A., Hoffman, P. N. and Price, D. L (1986). Immunocytochemical studies of neurofilament antigens in the neurofibrillary pathology induced by aluminum. Brain Res 364, 295-300.[Medline]

Turner, J. R. and Tartakoff, A. M (1990). The response of the Golgi complex to microtubule alterations: the roles of metabolic energy and membrane traffic in Golgi complex organization. J. Cell Biol 109, 2081-2088.[Abstract/Free Full Text]

Vickers, J. C., Morrison, J. H., Friedrich, V. L. Jr, Elder, G. A., Perl, D. P., Katz, R. N. and Lazzarini, R. A (1994). Age-associated and cell-type-specific neurofibrillary pathology in transgenic mice expressing the human midsized neurofilament subunit. J. Neurosci 14, 5603-5612.[Abstract]

Vikstrom, K. L., Borisy, G. G. and Goldman, R. D (1989). Dynamic aspects of intermediate filament networks in BHK-21 cells. Proc. Nat. Acad. Sci. USA 86, 549-553.[Abstract/Free Full Text]

Vikstrom, K. L., Miller, R. K. and Goldman, R. D (1990). Methods for analyzing the dynamic properties of intermediate filaments. Meth. Enzymol 196, 506-525.

Vikstrom, K. L., Lim, S.-S., Goldman, R. D. and Borisy, G. G (1992). Steady state dynamics of intermediate filament networks. J. Cell Biol 118, 121-129.[Abstract/Free Full Text]

Voyvodic, J. T (1989). Target size regulates calibre and myelination of sympathetic axons. Nature 342, 430-433.[Medline]

Wang, E. and Goldman, R. D (1978). Functions of cytoplasmic fibers inintracellular organelle movements in BHK-21 cells. J. Cell Biol 79, 708-726.[Abstract/Free Full Text]

Weiss, P. A. and Mayr, R (1971). Organelles of neuroplasmic (\324axonal') flow: neurofilaments. Proc. Nat. Acad. Sci. USA 68, 846-850.[Abstract/Free Full Text]

Weissenfels, N., Wachtmann, D. and Stockem, W (1990). The role of microtubules for the movements of mitochondria in pinacocytes of fresh-water sponges. Eur. J. Cell Biol 52, 310-314.[Medline]

Welsh, W. J. and Sukan, J. B (1985). Morphological study of the mammalian stress response: characterization of changes in cytoplasmic organelles, cytoskeleton, and nucleoli and appearance of intranuclear actin filaments in rat fibroblasts after heat shock treatment. J. Cell Biol 101, 1198-1211.[Abstract/Free Full Text]

Willard, M. and Simon, C (1983). Modulation of neurofilament transport during the development of rabbit retinal ganglion cells. Cell 35, 551-559.[Medline]

Xu, Z., Cork, L. C., Griffin, J. W. and Cleveland, D. W (1993). Increasedexpression of neurofilament subuit NF-L produces morphological alterations that resemble the pathology of human motor neuron disease. Cell 73, 23-33.[Medline]

Yamasaki, H., Bennett, G., Itakura, C. and Mizutani, M (1992). Defective expression of neurofilament protein subunits in hereditary hypotrophic axonopathy of quail. Lab. Invest 66, 734-743.[Medline]

Yang, H. Y., Lieska, N., Goldman, A. E. and Goldman, R. D (1985). A 300,000-mol-wt intermediate filament associated protein in baby hamster kidney. J. Cell Biol 100, 620-631.[Abstract/Free Full Text]

Zackroff, R. V., Idler, W. W., Steinert, P. M. and Goldman, R. D (1982). In vitro reconstitution of intermediate filaments from mammalian neurofilament triplet polypeptides. Proc. Nat. Acad. Sci. USA 79, 754-757.[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
FASEB J.Home page
R. Perrot and J.-P. Julien
Real-time imaging reveals defects of fast axonal transport induced by disorganization of intermediate filaments
FASEB J, September 1, 2009; 23(9): 3213 - 3225.
[Abstract] [Full Text] [PDF]


Home page
Mol. Biol. CellHome page
S. Kesavapany, V. Patel, Y.-L. Zheng, T. K. Pareek, M. Bjelogrlic, W. Albers, N. Amin, H. Jaffe, J. S. Gutkind, M. J. Strong, et al.
Inhibition of Pin1 Reduces Glutamate-induced Perikaryal Accumulation of Phosphorylated Neurofilament-H in Neurons
Mol. Biol. Cell, September 1, 2007; 18(9): 3645 - 3655.
[Abstract] [Full Text] [PDF]


Home page
J. Cell Sci.Home page
T. B. Shea, J. T. Yabe, D. Ortiz, A. Pimenta, P. Loomis, R. D. Goldman, N. Amin, and H. C. Pant
Cdk5 regulates axonal transport and phosphorylation of neurofilaments in cultured neurons
J. Cell Sci., February 22, 2004; 117(6): 933 - 941.
[Abstract] [Full Text] [PDF]


Home page
J. Neurosci.Home page
O. I. Wagner, J. Lifshitz, P. A. Janmey, M. Linden, T. K. McIntosh, and J.-F. Leterrier
Mechanisms of Mitochondria-Neurofilament Interactions
J. Neurosci., October 8, 2003; 23(27): 9046 - 9058.
[Abstract] [Full Text] [PDF]


Home page
J. Cell Sci.Home page
J. Corcoran, P. L. So, and M. Maden
Absence of retinoids can induce motoneuron disease in the adult rat and a retinoid defect is present in motoneuron disease patients
J. Cell Sci., March 14, 2003; 115(24): 4735 - 4741.
[Abstract] [Full Text] [PDF]


Home page
JCBHome page
B. T. Helfand, A. Mikami, R. B. Vallee, and R. D. Goldman
A requirement for cytoplasmic dynein and dynactin in intermediate filament network assembly and organization
J. Cell Biol., May 28, 2002; 157(5): 795 - 806.
[Abstract] [Full Text] [PDF]


Home page
J. Neurosci.Home page
J. T. Yabe, T. Chylinski, F.-S. Wang, A. Pimenta, S. D. Kattar, M.-D. Linsley, W. K-H Chan, and T. B. Shea
Neurofilaments Consist of Distinct Populations That Can Be Distinguished by C-Terminal Phosphorylation, Bundling, and Axonal Transport Rate in Growing Axonal Neurites
J. Neurosci., April 1, 2001; 21(7): 2195 - 2205.
[Abstract] [Full Text] [PDF]


Home page
J. Neurosci.Home page
G. Y. Ching, C.-L. Chien, R. Flores, and R. K. H. Liem
Overexpression of alpha -Internexin Causes Abnormal Neurofilamentous Accumulations and Motor Coordination Deficits in Transgenic Mice
J. Neurosci., April 15, 1999; 19(8): 2974 - 2986.
[Abstract] [Full Text] [PDF]


Home page
J. Cell Sci.Home page
J. Yabe, A Pimenta, and T. Shea
Kinesin-mediated transport of neurofilament protein oligomers in growing axons
J. Cell Sci., January 11, 1999; 112(21): 3799 - 3814.
[Abstract] [PDF]


Home page
JCBHome page
T. P. Spann, R. D. Moir, A. E. Goldman, R. Stick, and R. D. Goldman
Disruption of Nuclear Lamin Organization Alters the Distribution of Replication Factors and Inhibits DNA Synthesis
J. Cell Biol., March 24, 1997; 136(6): 1201 - 1212.
[Abstract] [Full Text] [PDF]


Home page
Proc. Natl. Acad. Sci. USAHome page
L. Lorand
Neurodegenerative diseases and transglutaminase
PNAS, December 10, 1996; 93(25): 14310 - 14313.
[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 Straube-West, K.
Right arrow Articles by Goldman, R. D.
Right arrow Search for Related Content
PubMed
Right arrow PubMed Citation
Right arrow Articles by Straube-West, K.
Right arrow Articles by Goldman, R. D.
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?