Siegers K, Waldmann T, Leroux M R, Grein K, Shevchenko A, Schiebel E, Hartl F U
The Beatson Institute for Cancer Research, CRC Beatson Laboratories, Glasgow G61 1BD, UK.
EMBO J. 1999 Jan 4;18(1):75-84. doi: 10.1093/emboj/18.1.75.
The functional coupling of protein synthesis and chaperone-assisted folding in vivo has remained largely unexplored. Here we have analysed the chaperonin-dependent folding pathway of actin in yeast. Remarkably, overexpression of a heterologous chaperonin which traps non-native polypeptides does not interfere with protein folding in the cytosol, indicating a high-level organization of folding reactions. Newly synthesized actin avoids the chaperonin trap and is effectively channelled from the ribosome to the endogenous chaperonin TRiC. Efficient actin folding on TRiC is critically dependent on the hetero-oligomeric co-chaperone GimC. By interacting with folding intermediates and with TRiC, GimC accelerates actin folding at least 5-fold and prevents the premature release of non-native protein from TRiC. We propose that TRiC and GimC form an integrated 'folding compartment' which functions in cooperation with the translation machinery. This compartment sequesters newly synthesized actin and other aggregation-sensitive polypeptides from the crowded macromolecular environment of the cytosol, thereby allowing their efficient folding.
蛋白质合成与伴侣蛋白辅助折叠在体内的功能耦合在很大程度上仍未得到充分探索。在此,我们分析了酵母中肌动蛋白的伴侣蛋白依赖性折叠途径。值得注意的是,捕获非天然多肽的异源伴侣蛋白的过表达并不干扰胞质溶胶中的蛋白质折叠,这表明折叠反应具有高度的组织性。新合成的肌动蛋白避开了伴侣蛋白陷阱,并有效地从核糖体导向内源性伴侣蛋白TRiC。TRiC上肌动蛋白的有效折叠关键依赖于异源寡聚共伴侣蛋白GimC。通过与折叠中间体和TRiC相互作用,GimC将肌动蛋白折叠速度至少提高5倍,并防止非天然蛋白从TRiC过早释放。我们提出,TRiC和GimC形成一个整合的“折叠隔室”,其与翻译机制协同发挥作用。这个隔室将新合成的肌动蛋白和其他对聚集敏感的多肽与胞质溶胶中拥挤的大分子环境隔离开来,从而使其能够高效折叠。