Weibezahn Jimena, Bukau Bernd, Mogk Axel
Zentrum für Molekulare Biologie Heidelberg, Universität Heidelberg, Im Neuenheimer Feld 282, Heidelberg D-69120, Germany.
Microb Cell Fact. 2004 Jan 16;3(1):1. doi: 10.1186/1475-2859-3-1.
Aprotein quality control system, consisting of molecular chaperones and proteases, controls the folding status of proteins and prevents the aggregation of misfolded proteins by either refolding or degrading aggregation-prone species. During severe stress conditions this protection system can be overwhelmed by high substrate load, resulting in the formation of protein aggregates. In such emergency situations, Hsp104/ClpB becomes a key player for cell survival, as it has the extraordinary capacity to rescue proteins from an aggregated state in cooperation with an Hsp70 chaperone system. The ring-forming Hsp104/ClpB chaperone belongs to the AAA+ protein superfamily, which in general drives the assembly and disassembly of protein complexes by ATP-dependent remodelling of protein substrates. A disaggregation activity was also recently attributed to other eubacterial AAA+ proteins, while such an activity has not yet been identified in mammalian cells. In this review, we report on new insights into the mechanism of protein disaggregation by AAA+ proteins, suggesting that these chaperones act as molecular crowbars or ratchets.
一个由分子伴侣和蛋白酶组成的蛋白质质量控制系统,通过重新折叠或降解易于聚集的蛋白质种类来控制蛋白质的折叠状态,并防止错误折叠蛋白质的聚集。在严重应激条件下,这种保护系统可能会因高底物负荷而不堪重负,从而导致蛋白质聚集体的形成。在这种紧急情况下,Hsp104/ClpB成为细胞存活的关键因素,因为它具有与Hsp70伴侣系统协作从聚集状态拯救蛋白质的非凡能力。形成环状的Hsp104/ClpB伴侣属于AAA+蛋白质超家族,该超家族通常通过依赖ATP的蛋白质底物重塑来驱动蛋白质复合物的组装和拆卸。最近,其他真细菌AAA+蛋白质也被认为具有解聚活性,而在哺乳动物细胞中尚未发现这种活性。在这篇综述中,我们报告了对AAA+蛋白质介导的蛋白质解聚机制的新见解,表明这些伴侣蛋白起到分子撬棍或棘轮的作用。