Characterization and dynamics of aggresome formation by a cytosolic GFP-chimera

被引:493
作者
García-Mata, R
Bebök, Z
Sorscher, EJ
Sztul, ES
机构
[1] Univ Alabama, Dept Cell Biol, MCLM, Birmingham, AL 35294 USA
[2] Univ Alabama, Gregory Fleming James Cyst Fibrosis Ctr, Birmingham, AL 35294 USA
关键词
aggresome; p50/dynamitin; chaperones; proteasome; microtubules;
D O I
10.1083/jcb.146.6.1239
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Formation of a novel structure, the aggresome, has been proposed to represent a general cellular response to the presence of misfolded proteins (Johnston, J.A,, C.L, Ward, and R,R. Kopito, 1998. J, Cell Biol. 143:1883-1898; Wigley, W. C., R.P. Fabunmi, M.G, Lee, C,R, Marine, S, Muallem, G.N. DeMartino, and P.J, Thomas, 1999. J. Cell Biol. 145:481-490). To test the generality of this finding and characterize aspects of aggresome composition and its formation, we investigated the effects of overexpressing a cytosolic protein chimera (GFP-250) in cells. Overexpression of GFP-250 caused formation of aggresomes and was paralleled by the redistribution of the intermediate filament protein vimentin as well as by the recruitment of the proteasome, and the Hsp70 and the chaperonin systems of chaperones. Interestingly, GFP-250 within the aggresome appeared not to be ubiquitinated. In vivo time-lapse analysis of aggresome dynamics showed that small aggregates form within the periphery of the cell and travel on microtubules to the MTOC region where they remain as distinct but closely apposed particulate structures. Overexpression of p50/dynamitin, which causes the dissociation of the dynactin complex, significantly inhibited the formation of aggresomes, suggesting that the minus-end-directed motor activities of cytoplasmic dynein are required for aggresome formation. Perinuclear aggresomes interfered with correct Golgi localization and disrupted the normal astral distribution of microtubules, However, ER-to-Golgi protein transport occurred normally in aggresome containing cells. Our results suggest that aggresomes can be formed by soluble, nonubiquitinated proteins as well as by integral transmembrane ubiquitinated ones, supporting the hypothesis that aggresome formation might be a general cellular response to the presence of misfolded proteins.
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页码:1239 / 1254
页数:16
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