Zentrum für Molekulare Biologie Heidelberg (ZMBH), DKFZ-ZMBH Alliance, Universität Heidelberg, Im Neuenheimer Feld 282, Heidelberg D-69120, Germany.
Biochem Cell Biol. 2010 Feb;88(1):63-75. doi: 10.1139/o09-118.
The oligomeric AAA+ chaperones ClpB/Hsp104 mediate the reactivation of aggregated proteins, an activity that is crucial for the survival of cells during severe stress. Hsp104 is also essential for the propagation of yeast prions by severing prion fibres. Protein disaggregation depends on the cooperation of ClpB/Hsp104 with a cognate Hsp70 chaperone system. While Hsp70 chaperones are also involved in prion propagation, their precise role is much less well defined compared with its function in aggregate solubilization. Therefore, it remained unclear whether both ClpB/Hsp104 activities are based on common or different mechanisms. Novel data show that ClpB/Hsp104 uses a motor threading activity to remodel both protein aggregates and prion fibrils. Moreover, transfer of both types of substrates to the ClpB/Hsp104 processing pore site requires initial substrate interaction of Hsp70. Together these data emphasize the similarity of thermotolerance and prion propagation pathways and point to a shared mechanistic principle of Hsp70-ClpB/Hsp104-mediated solubilization of amorphous and ordered aggregates.
寡聚 AAA+伴侣蛋白 ClpB/Hsp104 介导聚集蛋白的重激活,这一活性对于细胞在严重应激期间的存活至关重要。Hsp104 对于酵母朊病毒的传播也是必需的,它通过切断朊病毒纤维来实现。蛋白解聚依赖于 ClpB/Hsp104 与同源 Hsp70 伴侣蛋白系统的合作。虽然 Hsp70 伴侣蛋白也参与朊病毒的传播,但与在聚集物溶解中的作用相比,其确切作用要模糊得多。因此,尚不清楚 ClpB/Hsp104 的这两种活性是否基于共同或不同的机制。新的数据表明,ClpB/Hsp104 使用一种马达穿线活性来重塑蛋白聚集物和朊病毒纤维。此外,两种类型的底物向 ClpB/Hsp104 加工孔位点的转移都需要 Hsp70 的初始底物相互作用。这些数据共同强调了耐热性和朊病毒传播途径的相似性,并指出了 Hsp70-ClpB/Hsp104 介导的无定形和有序聚集物溶解的共同机制原则。