作者
Bruno Fauvet, Martial K Mbefo, Mohamed-Bilal Fares, Carole Desobry, Sarah Michael, Mustafa T Ardah, Elpida Tsika, Philippe Coune, Michel Prudent, Niels Lion, David Eliezer, Darren J Moore, Bernard Schneider, Patrick Aebischer, Omar M El-Agnaf, Eliezer Masliah, Hilal A Lashuel
发表日期
2012/5/1
期刊
Journal of Biological Chemistry
卷号
287
期号
19
页码范围
15345-15364
出版商
Elsevier
简介
Since the discovery and isolation of α-synuclein (α-syn) from human brains, it has been widely accepted that it exists as an intrinsically disordered monomeric protein. Two recent studies suggested that α-syn produced in Escherichia coli or isolated from mammalian cells and red blood cells exists predominantly as a tetramer that is rich in α-helical structure (Bartels, T., Choi, J. G., and Selkoe, D. J. (2011) Nature 477, 107–110; Wang, W., Perovic, I., Chittuluru, J., Kaganovich, A., Nguyen, L. T. T., Liao, J., Auclair, J. R., Johnson, D., Landeru, A., Simorellis, A. K., Ju, S., Cookson, M. R., Asturias, F. J., Agar, J. N., Webb, B. N., Kang, C., Ringe, D., Petsko, G. A., Pochapsky, T. C., and Hoang, Q. Q. (2011) Proc. Natl. Acad. Sci. 108, 17797–17802). However, it remains unknown whether or not this putative tetramer is the main physiological form of α-syn in the brain. In this study, we investigated the oligomeric state of α-syn in …
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