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 Hall, G. F.
Right arrow Articles by Yao, J.
Right arrow Search for Related Content
PubMed
Right arrow PubMed Citation
Right arrow Articles by Hall, G. F.
Right arrow Articles by Yao, J.
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?
Arriagada, P. A., Growdon, J. H., Hedley-White, E. T. and Hyman, B. T (1992). Neurofibrillary tangles but not senile plaques parallel duration and severity of Alzheimer's Disease. Neurology 42, 631-639.[Abstract/Free Full Text]

Baas, P. W., Deitch, J. S., Black, M. M. and Banker, G. A (1988). Polarity orientation of microtubules in hippocampal neurons, Uniformity in the axon and nonuniformity in the dendrite. Proc. Nat. Acad. Sci. USA 85, 8335-8339.[Abstract/Free Full Text]

Bancher, C., Brunner, C., Lassmann, H., Budka, H., Jellinger, K., Wiche, G., Seitelberger, F., Grundke-Iqbal I., Iqbal, K. and Wisniewski, H. M (1989). Accumulation of abnormally phosphorylated Tau precedes the formation of neurofibrillary tangles in Alzheimer's disease. Brain Res 477, 90-99.[Medline]

Baum, L., Seger, R., Woodgett, J. R., Kawabata, S., Maruyama, K., Koyama, M., Silver, J. and Saitoh, T (1995). Overexpressed tau protein in cultured cells is phosphorylated without formation of PHF, implication of phosphoprotein phosphatase involvement. Brain Res. Mol. Brain. Res 34, 1-17.[Medline]

Bobinski, M., Wegiel, J., Tarnawski, M., Bobinski, M., Reisberg, B., de Leon, M. J., Miller, D. C. and Wisniewski, H. M (1997). Relationships between regional neuronal loss and neurofibrillary changes in thehippocampal formation and duration and severity of Alzheimer disease. J. Neuropathol. Exp. Neurol 56, 414-420.[Medline]

Braak, E., Braak, H. and Mandelkow, E.-M (1994). A sequence of cytoskeleton changes related to the formation of neurofibrillary tangles and neuropil threads. Acta Neuropathol 87, 554-567.[Medline]

Braak, H. and Braak, E (1988). Neuropil threads occur in dendrites of tangle bearing nerve cells. Neuropathol. Appl. Neurobiol 14, 39-44.[Medline]

Braak H. and Braak, E (1998). Evolution of neuronal changes in the course of Alzheimer's disease. J. Neural. Trans. Suppl 53, 127-140.[Medline]

Bramblett, G. T., Trojanowski, J. Q. and Lee, V. M.-Y (1992). Regions with abundant neurofibrillary pathology in human brain exhibit a selective reduction in levels of binding-competent tau and accumulation of abnormal tau isoforms (A68) proteins. Lab. Invest 66, 212-221.[Medline]

Bramblett, G. T., Goedert, M., Jakes, R., Merrick, S. E., Trojanowski, J. Q. and Lee, V. M.-Y (1993). Abnormal tau phosphorylation at Ser396 in Alzheimer's disease recapitulates development and contributes to reduced microtubule binding. Neuron 10, 1-20.[Medline]

Brandt, R., Leger, J. and Lee, G (1995). Interaction of tau with the neural plasma membrane mediated by tau's amino-terminal projection domain,. J. Cell Biol 131, 3414-3419.

Brion, J. P., Tremp, G. and Octave, J. N (1999). Transgenic expression of the shortest human tau affects its compartmentalization and its phosphorylation as in the pretangle stage of Alzheimer's disease. Am. J. Pathol 154, 255-270.[Abstract/Free Full Text]

Caceres, A. and Kosik, K. S (1990). Inhibition of neurite polarity by tau antisense oligonucleotides in primary cerebellar neurons. Nature 343, 461-463.[Medline]

Chambers, C. B., Lee, J. M., Troncoso, J. C., Reich, S. and Muma, N. A (1999). Overexpression of four-repeat tau mRNA isoforms in progressive supranuclear palsy but not in Alzheimer's disease. Ann. Neurol 46, 325-332.[Medline]

Clark, L. N., Poorkaj, P., Wszolek, Z., Geschwind, D. H., Nasreddine, Z. S., Miller, B., Li D., Payami, H., Awert, F., Markopoulou, K., Andreadis, A., D'Souza, I., Lee, V. M., Reed, L., Trojanowski, J. Q., Zhukareva, V., Bird, T., Schellenberg, G. and Wilhelmsen, K. C (1998). Pathogenic implications of mutations in the tau gene in pallido-ponto-nigral degeneration and related neurodegenerative disorders linked to chromosome 17. Proc. Nat. Acad. Sci. USA 95, 13103-13107.[Abstract/Free Full Text]

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

Delacourte, A., Sergeant, N., Wattez, A., Gauvreau, D. and Robitaille, Y (1998). Vulnerable neuronal subsets in Alzheimer's and Pick's disease are distinguished by their tau isoform distribution and phosphorylation. Ann. Neurol 43, 193-204.[Medline]

Dickson, D. W., Feany, M. B., Yen, S. H., Mattiace, L. A. and Davies,P (1996). Cytoskeletal pathology in non-Alzheimer degenerative dementia, new lesions indiffuse Lewy body disease, Pick's disease, and corticobasal degeneration. J. Neural. Transm. Suppl 47, 31-46.[Medline]

Ebneth, A., Godemann, R., Stamer, K., Illenberger, S., Trinczek, B. and Mandelkow, E (1998). Overexpression of tau protein inhibits kinesin-dependent trafficking of vesicles, mitochondria, and endoplasmic reticulum, implications for Alzheimer's disease. J. Cell Biol 143, 777-794.[Abstract/Free Full Text]

Ferreira, A., Busciglio, J. and Caceres, A (1989). Microtubule formation and neurite growth in cerebellar macroneurons which develop in vitro, evidence for the involvement of the microtubule associated proteins MAP 1a, HMW-MAP2 and tau. Dev. Brain Res 49, 215-228.[Medline]

Goedert, M., Spillatini, M. G., Jakes, R., Rutherford, D. and Crowther, R. A (1989). Multiple isoforms of human microtubule associated protein tau, sequences and localization in neurofibrillary tangles of Alzheimer's Disease. Neuron 3, 519-526.[Medline]

Gomez-Isla, T., Hollister, R., West, H., Mui, S., Growdon, J. H., Petersen, R. C., Parisi, J. E. and Hyman, B. T (1997). Neuronal loss correlates with but exceeds neurofibrillary tangles in Alzheimer's disease. Ann. Neurol 41, 17-24.[Medline]

Gong, C. X., Shaikh, S., Wang, J. Z., Zaidi, T., Grundke-Iqbal, I. and Iqbal, K (1995). Phosphatase activity toward abnormally phosphorylated tau, decrease in Alzheimer disease brain. J. Neurochem 65, 732-738.[Medline]

G\232tz, J., Probst, A., Spillatini, M. G., Sch\212fer, T., Jakes, R., Burki, K. and Goedert, M (1995). Somatodendritic localization andhyperphosphorylation of tau protein in transgenic mice expressing the longest human brain tau isoform. EMBO J 14, 1304-1313.[Medline]

Grundke-Iqbal, I., Johnson, A. B., Wisniewski, H. M., Terry, R. D. and Iqbal, K (1979). Evidence that Alzheimer neurofibrillary tangles originate from neurotubules. Lancet 1, 578-580.[Medline]

Hall, G. F., Poulos, A. and Cohen, M. J (1989). Sprouts emerging from the dendrites of axotomized lamprey central neurons have axonlike ultrastructure. J. Neurosci 9, 588-599.[Abstract]

Hall, G. F., Lee, V. M-Y and Kosik, K. S (1991). Microtubule destabilization and neurofilament phosphorylation precede dendritic sprouting after close axotomy of lamprey central neurons. Proc. Nat. Acad. Sci. USA 88, 5016-5020.[Abstract/Free Full Text]

Hall, G. F. and Kosik, K. S (1993). Axotomy-induced neurofilament phosphorylation is inhibited in situ by microinjection of PKA and PKC inhibitors into identified lamprey neurons. Neuron 10, 613-625.[Medline]

Hall, G. F., J. Yao and Lee,G (1997). Tau overexpressed in identified lamprey neurons in situ is spatially segregated by phosphorylation state, forms hyperphosphorylated, dense aggregations and induces neurodegeneration. Proc. Nat. Acad. Sci. USA 94, 4733-4738.[Abstract/Free Full Text]

Hall, G. F., J. Yao, M. E. Selzer and Kosik, K. S (1997). Cytoskeletal correlates to cell polarity loss following axotomy of lamprey central neurons. J. Neurocytol 26, 733-753.[Medline]

Harada, A., Oguchi, K., Okabe, S., Kuno, J., Terada, S., Ohshima, T., Sato-Yoshitake, R., Takel, Y., Noda, T. and Hirokawa,N (1994). Altered microtubule organization in small-calibre axons of mice lacking tau protein. Nature 369, 488-491.[Medline]

Hasegawa, M., Crowther, R. A., Jakes, R. and Goedert, M (1997). Alzheimer-like changes in microtubule-associated protein Tau induced by sulfated glycosaminoglycans. Inhibition of microtubule binding, stimulation of phosphorylation, and filament assembly depend on the degree of sulfation. J. Biol. Chem 272, 33118-33124.[Abstract/Free Full Text]

Hasegawa, M., Smith, M. J. and Goedert,M (1998). Tau proteins with FTDP-17 mutations have a reduced ability to promotemicrotubule assembly. FEBS Lett 437, 207-210.[Medline]

Hong, M., Zhukareva, V., Vogelsberg-Ragaglia, V., Wszolek, Z., Reed,L.,Miller, B. I., Geschwind, D. H., Bird, T. D., McKeel, D., Goate, A., Morris, J. C., Wilhelmsen, K. C., Schellenberg, G. D., Trojanowski, J. Q. and Lee, V. M.-Y (1998). Mutation-specific functional impairments in distinct tau isoforms of hereditary FTDP-17. Science 282, 1914-1917.[Abstract/Free Full Text]

Hutton, M., Lendon, C. L., Rizzu, P., Baker, M., Froelich, S., Houlden, H., Pickering-Brown, S., Chakraverty, S., Isaacs, A., Grover, A., Hackett, J., Adamson, J., Lincoln, S., Dickson, D., Davies, P., Petersen, R. C., Stevens, M., de Graaff, E., Wauters, E., van Baren, J., Hillebrand, M., Joosse, M., Kwon, J. M., Nowotny, P. and Heutink, P (1998). Association of missense and 5'-splice-site mutations in tau with the inherited dementia FTDP-17. Nature 393, 702-705.[Medline]

Ishihara, T., Hong, M., Zhang, B. Nakagawa, Y. Lee, M. K. Trojanowski, J. Q. and Lee, V. M.-Y (1999). Age-Dependent Emergence and Progression of a Tauopathy in Transgenic Mice Overexpressing the Shortest Human Tau Isoform. Neuron 24, 751-762.[Medline]

Jacobs, A. J., Kamholz, J. and Selzer,M (1995). The single lamprey neurofilament subunit (NF-180) lacks multiphosphorylation repeats and is expressed selectively in projection neurons. Brain. Res. Mol. Brain. Res 29, 43-52.[Medline]

Jancsik, V., Filliol, D. and Rendon, A (1996). Tau proteins bind to kinesin and modulate its activation by MTs. Neurobiology 4, 417-429.[Medline]

Kato, S. and Nakamura,H (1990). Presence of two different fibril subtypes in the Pick body, an immunoelectronmicroscopic study. Acta Neuropathol. (Berl) 81, 125-129.[Medline]

Knops, J. Kosik, K. S., Lee, G., Pardee, J. D, Cohen-Gould, L. and McConlogue, L (1991). Overexpression of tau in a nonneuronal cell induces long cellular processes. J. Cell Biol 114, 725-733.[Abstract/Free Full Text]

Kowall, N. W. and Kosik, K. S (1987). Axonal disruption and aberrant localization of tau protein characterize the neuropil pathology of Alzheimer's disease. Ann. Neurol 22, 639-643.[Medline]

Ksiezak-Reding H. and Wall, J. S (1994). Mass and physical dimensions of two distinct populations of paired helical filaments. Neurobiol. Aging 15, 11-19.[Medline]

Ksiezak-Reding, H., Morgan,. K., Mattiace, L. A., Davies. P., Liu. W. K., Yen. S. H., Weidenheim. K. and Dickson,D. W (1994). Ultrastructureand biochemical composition of paired helical filaments in corticobasal degeneration. Am. J. Pathol 145, 1496-1508.[Abstract]

Lee, G. and Rook,S. L (1992). Expression of tau protein in non-neuronal cells, microtubule binding and stabilization. J. Cell Sci 102, 227-237.[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 the pathogenesis of human motor neuron disease. Neuron 13, 975-988.[Medline]

Leger, J., Brandt, R. and Lee, G (1994). Identification of tau protein regions required for process formation in PC12 cells. J. Cell Sci 107, 3403-3412.[Abstract]

Mailliot, C., Sergeant, N., Bussiere, T., Caillet-Boudin, M. L., Delacourte A. and Buee, A (1998). Phosphorylation of specific sets of tau isoforms reflects differentneurofibrillary degeneration processes. FEBS Lett 433, 201-204.[Medline]

Matsuo, E. K., Shin, R.-W. Billingsley, M. L., Van deVoorde, A., O'Connor, M., Trojanowski, J. Q. and Lee, V. M.-Y (1994). Biopsy-derived adult human brain tau is phosphorylated at many of the same sites as Alzheimer's Disease paired helical filament tau. Neuron 13, 989-1002.[Medline]

McKee, A. C., Kowall, N. W. and Kosik,K. S (1989). Microtubular reorganization and dendritic growth response in Alzheimer's disease. Ann. Neurol 26, 652-659.[Medline]

McKee, A. C, Kosik, K. S and Kowall,N. W (1991). Neuritic pathology and dementia in Alzheimer's disease. Ann. Neurol 30, 156-165.[Medline]

Nacharaju, P., Lewis, J., Easson, C., Yen, S., Hackett, J., Hutton, M. and Yen, S. H (1999). Accelerated filament formation from tau protein with specific FTDP-17 missense mutations. FEBS Lett 447, 195-199.[Medline]

Nixon, R. A., Cataldo, A. M., Paskevitch, P. A., Hamilton, D. J., Wheelock, T. R. and Kanaley-Andrews, L (1992). The lysosomal system in neurons, Involvement at multiple stages in Alzheimer's disease pathogenesis. Ann. NY Acad. Sci 674, 65-88.[Medline]

Praprotnik, D., Smith, M. A., Richey, P. L., Vinters, H. V. and Perry,G (1996). Filament heterogeneity within the dystrophic neurites of senile plaques suggests blockage of fast axonal transport in Alzheimer's disease. Acta Neuropathol (Berl) 91, 226-235.[Medline]

Perry, G., Stewart, D., Friedman, R, Manetto, V., Autilio-Gambetti L. and Gambetti, P (1987). Filaments of Pick's bodies contain altered cytoskeletal elements. Am. J. Pathol 127, 559-568.[Abstract]

Perry, G., Kawai, M.. Tabaton, M.. Onorato, M.. Mulvihill, P.. Richey, P.. Morandi, A. Connolly, J. and Gambetti, P (1991). Neuropil threads ofAlzheimer's Disease show a marked alteration of the normal cytoskeleton. J. Neurosci 11, 1748-1755.[Abstract]

Probst, A., Langui, D., Lautenschlager, C., Ulrich, J., Brion, J. P. and Anderton, B. H (1988). Progressive supranuclear palsy, extensive neuropil threads in addition to neurofibrillary tangles. Very similar antigenicity of subcortical neuronal pathology in progressive supranuclear palsy and Alzheimer's disease. Acta. Neuropathol. (Berl) 77, 61-68.[Medline]

Reed,. LA., Schmidt, M. L., Wszolek, Z. K., Balin, B. J., Soontornniyomkij, V., Lee, V. M., Trojanowski, J. Q. and Schelper, R. L (1998). The neuropathology of a chromosome 17-linked autosomal dominant parkinsonism and dementia (\324pallido-ponto-nigral degeneration'). J. Neuropathol. Exp. Neurol 57, 588-601.[Medline]

Schneider, A., Biernat, J., von Bergen, M., Mandelkow, E. and Mandelkow, E. M (1999). Phosphorylation that detaches tau protein from microtubules (Ser262, Ser214) also protects it against aggregation into Alzheimer paired helical filaments. Biochemistry 38, 3549-3558.[Medline]

Schwab, C. and McGeer, P. L (1998). Tubulin immunopositive structures resembling intracellular neurofibrillary tangles. Neurobiol. Aging 19, 41-45.[Medline]

Sergeant, N., Wattez, A. and Delacourte, A (1999). Neurofibrillary degeneration in progressive supranuclear palsy and corticobasaldegeneration, tau pathologies with exclusively \324exon 10' isoforms. J. Neurochem 72, 1243-1249.[Medline]

Spittaels, K., Van den Haute, C., Van Dorpe, J., Bruynseels, K., Vandezande, K., Laenen, I., Geerts, H., Mercken, M., Sciot, R., Van Lommel, A., Loos, R. and Van Leuven, F (1999). Prominent axonopathy in the brain and spinal cord of transgenic mice overexpressing four-repeat human tau protein. Am. J. Pathol 55, 2153-2165.

Tabaton, M., Mandybur, T. I., Perry, G., Onorato, M., Autilio-Gambetti, L. and Gambetti,P (1989). The widespread alteration of neurites in Alzheimer's disease may be unrelated to amyloid deposition. Ann. Neurol 26, 771-778.[Medline]

Tint, I., Slaughter, T., Fischer, I. and M. M. Black (1998). Acute inactivation of tau has No effect on dynamics of MTs in growing axons of cultured sympathetic neurons. J. Neurosci 18, 8660-8673.[Abstract/Free Full Text]

Velasco, M. E., Smith, M. A., Siedlak, S. L., Nunomura, A. and Perry,G (1998). Striation is the characteristic neuritic abnormality in Alzheimer disease. Brain Res 813, 329-333.[Medline]

Wilson, D. M. and Binder,L. I (1995). Polymerization of microtubule-associated protein tau under near-physiological conditions. J. Biol. Chem 270, 24306-24314.[Abstract/Free Full Text]

Yamaguchi, H., Nakazato, Y., Shoji, M., Ihara, Y. and Hirai, S (1990). Ultrastructure of the neuropil threads in the Alzheimer brain, their dendritic origin and accumulation in the senile plaques. Acta Neuropathol 80, 368-374.[Medline]


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
A. Deshpande, K. M. Win, and J. Busciglio
Tau isoform expression and regulation in human cortical neurons
FASEB J, July 1, 2008; 22(7): 2357 - 2367.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
S. M. Greenwood, S. M. Mizielinska, B. G. Frenguelli, J. Harvey, and C. N. Connolly
Mitochondrial Dysfunction and Dendritic Beading during Neuronal Toxicity
J. Biol. Chem., September 7, 2007; 282(36): 26235 - 26244.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
S. F. Levy, A. C. LeBoeuf, M. R. Massie, M. A. Jordan, L. Wilson, and S. C. Feinstein
Three- and Four-repeat Tau Regulate the Dynamic Instability of Two Distinct Microtubule Subpopulations in Qualitatively Different Manners: IMPLICATIONS FOR NEURODEGENERATION
J. Biol. Chem., April 8, 2005; 280(14): 13520 - 13528.
[Abstract] [Full Text] [PDF]


Home page
Physiol. Rev.Home page
J. AVILA, J. J. LUCAS, M. PEREZ, and F. HERNANDEZ
Role of Tau Protein in Both Physiological and Pathological Conditions
Physiol Rev, April 1, 2004; 84(2): 361 - 384.
[Abstract] [Full Text] [PDF]


Home page
J. Neurosci.Home page
Y. Yoshiyama, B. Zhang, J. Bruce, J. Q. Trojanowski, and V. M.-Y. Lee
Reduction of Detyrosinated Microtubules and Golgi Fragmentation Are Linked to Tau-Induced Degeneration in Astrocytes
J. Neurosci., November 19, 2003; 23(33): 10662 - 10671.
[Abstract] [Full Text] [PDF]


Home page
NeurologyHome page
V. M.-Y. Lee and J. Q. Trojanowski
Transgenic mouse models of tauopathies: Prospects for animal models of Pick's disease
Neurology, June 12, 2001; 56(90004): S26 - 30.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
K. Spittaels, C. Van den Haute, J. Van Dorpe, H. Geerts, M. Mercken, K. Bruynseels, R. Lasrado, K. Vandezande, I. Laenen, T. Boon, et al.
Glycogen Synthase Kinase-3beta Phosphorylates Protein Tau and Rescues the Axonopathy in the Central Nervous System of Human Four-repeat Tau Transgenic Mice
J. Biol. Chem., December 22, 2000; 275(52): 41340 - 41349.
[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 Hall, G. F.
Right arrow Articles by Yao, J.
Right arrow Search for Related Content
PubMed
Right arrow PubMed Citation
Right arrow Articles by Hall, G. F.
Right arrow Articles by Yao, J.
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?