Perinuclear localization of huntingtin as a consequence of its binding to microtubules through an interaction with β-tubulin: relevance to Huntington's disease
Author:
Hoffner Guylaine1, Kahlem Pascal1, Djian Philippe1
Affiliation:
1. CNRS — UPR 2228, Régulation de la Transcription et Maladies Génétiques,UniversitéRené Descartes, 45 rue des Saints-Pères, 75270 Paris Cedex 06,France
Abstract
Huntington's disease results from an expansion of a series of glutamine repeats in the protein huntingtin. We have discovered from immunopurification studies that huntingtin combines specifically with the β subunit of tubulin. This binding explains why huntingtin can be shown on assembled microtubules by electron microscopy. Immunostaining shows that most of the huntingtin in the cytoplasm is associated with microtubules. Huntingtin is particularly abundant in the perinuclear region, where it is also associated with microtubules and in the centrosomal region, where it co-localizes withγ-tubulin. In Huntington's disease, inclusions are often nuclear or perinuclear. Since the perinuclear concentration of huntingtin does not depend on the number of its glutamine repeats, we propose that inclusions are found in perinuclear and intranuclear locations because the β-tubulin binding property of huntingtin brings it to the perinuclear region, from which it readily gains access to the nucleus. The mutational glutamine expansion then promotes insolubility and results in an inclusion.
Publisher
The Company of Biologists
Reference54 articles.
1. Archer, J. E., Vega, L. R. and Solomon, F.(1995). Rbl2p, a yeast protein that binds to β-tubulin and participates in microtubule function in vivo. Cell82, 425-434. 2. Archer, J. E., Magendantz, M., Vega, L. R. and Solomon, F.(1998). Formation and function of the Rbl2p-β-tubulin complex. Mol. Cell. Biol.18, 1757-1762. 3. Boucher, D., Larcher, J. C., Gros, F. and Denoulet, P.(1994). Polyglutamylation of tubulin as a progressive regulator of in vitro interactions between the microtubule-associated protein tau and tubulin. Biochemistry33, 12471-12477. 4. Burke, J. R., Enghild, J. J., Martin, M. E., Jou, Y. S., Myers,R. M., Roses, A. D., Vance, J. M. and Strittmatter, W. J.(1996). Huntingtin and DRPLA proteins selectively interact with the enzyme GAPDH. Nat. Med.2, 347-350. 5. David, G., Abbas, N., Stevanin, G., Durr, A., Yvert, G., Cancel,G., Weber, C., Imbert, G., Saudou, F., Antoniou, E. et al.(1997). Cloning of the SCA7 gene reveals a highly unstable CAG repeat expansion. Nat. Genet.17, 65-70.
Cited by
89 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献
|
|