Literature DB >> 15389836

Astrocytes and oligodendrocytes express different STOP protein isoforms.

M R Galiano1, C Bosc, A Schweitzer, A Andrieux, D Job, M E Hallak.   

Abstract

Many cell types contain subpopulations of microtubules that resist depolymerizing conditions, such as exposure to cold or to the drug nocodazole. This stabilization is due mainly to polymer association with STOP proteins. In mouse, neurons express two major variants of these proteins, N-STOP and E-STOP (120 kDa and 79 kDa, respectively), whereas fibroblasts express F-STOP (42 kDa) and two minor variants of 48 and 89 kDa. N- and E-STOP induce microtubule resistance to both cold and nocodazole exposure, whereas F-STOP confers microtubule stability only to the cold. Here, we investigated the expression of STOP proteins in oligodendrocytes and astrocytes in culture. We found that STOP proteins were expressed in precursor cells, in immature and mature oligodendrocytes, and in astrocytes. We found that oligodendrocytes express a major STOP variant of 89 kDa, which we called O-STOP, and two minor variants of 42 and 48 kDa. The STOP variants expressed by oligodendrocytes induce microtubule resistance to the cold and to nocodazole. For astrocytes, we found the expression of two STOP variants of 42 and 48 kDa and a new STOP isoform of 60 kDa, which we called A-STOP. The STOP variants expressed by astrocytes induce microtubule resistance to the cold but not to nocodazole, as fibroblast variants. In conclusion, astrocytes and oligodendrocytes express different isoforms of STOP protein, which show different microtubule-stabilizing capacities. Copyright 2004 Wiley-Liss, Inc.

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Year:  2004        PMID: 15389836     DOI: 10.1002/jnr.20260

Source DB:  PubMed          Journal:  J Neurosci Res        ISSN: 0360-4012            Impact factor:   4.164


  15 in total

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3.  Glial βII Spectrin Contributes to Paranode Formation and Maintenance.

Authors:  Keiichiro Susuki; Daniel R Zollinger; Kae-Jiun Chang; Chuansheng Zhang; Claire Yu-Mei Huang; Chang-Ru Tsai; Mauricio R Galiano; Yanhong Liu; Savannah D Benusa; Leonid M Yermakov; Ryan B Griggs; Jeffrey L Dupree; Matthew N Rasband
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4.  MAP6-F is a temperature sensor that directly binds to and protects microtubules from cold-induced depolymerization.

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5.  Myotonic dystrophy type 1-associated CTG repeats disturb the expression and subcellular distribution of microtubule-associated proteins MAP1A, MAP2, and MAP6/STOP in PC12 cells.

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6.  Structural basis for the association of MAP6 protein with microtubules and its regulation by calmodulin.

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7.  Deletion of the STOP gene, a microtubule stabilizing factor, leads only to discrete cerebral metabolic changes in mice.

Authors:  Ryosuke Hanaya; Estelle Koning; Arielle Ferrandon; Annie Schweitzer; Annie Andrieux; Astrid Nehlig
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9.  Bmcc1s, a novel brain-isoform of Bmcc1, affects cell morphology by regulating MAP6/STOP functions.

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Journal:  PLoS One       Date:  2012-04-16       Impact factor: 3.240

10.  Reduced expression of STOP/MAP6 in mice leads to cognitive deficits.

Authors:  Julien Volle; Jacques Brocard; Mohamed Saoud; Sylvie Gory-Faure; Jérôme Brunelin; Annie Andrieux; Marie-Françoise Suaud-Chagny
Journal:  Schizophr Bull       Date:  2012-09-20       Impact factor: 9.306

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