Department of Biochemistry, Boston University School of Medicine, Boston, MA 02118.
Department of Physics, Massachusetts Institute of Technology, Cambridge, MA 02139.
Proc Natl Acad Sci U S A. 2018 Jul 24;115(30):E7043-E7052. doi: 10.1073/pnas.1803130115. Epub 2018 Jul 9.
Protein abnormalities in cells are the cause of major pathologies, and a number of adaptive responses have evolved to relieve the toxicity of misfolded polypeptides. To trigger these responses, cells must detect the buildup of aberrant proteins which often associate with proteasome failure, but the sensing mechanism is poorly understood. Here we demonstrate that this mechanism involves the heat shock protein 70-Bcl-2-associated athanogene 3 (Hsp70-Bag3) complex, which upon proteasome suppression responds to the accumulation of defective ribosomal products, preferentially recognizing the stalled polypeptides. Components of the ribosome quality control system LTN1 and VCP and the ribosome-associated chaperone NAC are necessary for the interaction of these species with the Hsp70-Bag3 complex. This complex regulates important signaling pathways, including the Hippo pathway effectors LATS1/2 and the p38 and JNK stress kinases. Furthermore, under proteotoxic stress Hsp70-Bag3-LATS1/2 signaling regulates protein aggregation. We established that the regulated step was the emergence and growth of abnormal protein oligomers containing only a few molecules, indicating that aggregation is regulated at very early stages. The Hsp70-Bag3 complex therefore functions as an important signaling node that senses proteotoxicity and triggers multiple pathways that control cell physiology, including activation of protein aggregation.
细胞内的蛋白质异常是主要病理学的原因,并且已经进化出许多适应性反应来缓解错误折叠多肽的毒性。为了触发这些反应,细胞必须检测到异常蛋白质的积累,这些蛋白质通常与蛋白酶体失活有关,但这种感应机制还了解甚少。在这里,我们证明这种机制涉及热休克蛋白 70-Bcl-2 相关的athanogene 3(Hsp70-Bag3)复合物,当蛋白酶体受到抑制时,该复合物会对有缺陷的核糖体产物的积累作出反应,优先识别失活的多肽。核糖体质量控制系统的 LTN1 和 VCP 以及与核糖体相关的伴侣 NAC 的成分对于这些物质与 Hsp70-Bag3 复合物的相互作用是必需的。该复合物调节重要的信号通路,包括 Hippo 通路效应物 LATS1/2 以及 p38 和 JNK 应激激酶。此外,在蛋白毒性应激下,Hsp70-Bag3-LATS1/2 信号通路调节蛋白质聚集。我们确定受调控的步骤是仅包含少数分子的异常蛋白质寡聚物的出现和生长,这表明聚集受到非常早期的调控。因此,Hsp70-Bag3 复合物作为一个重要的信号节点,能够感应蛋白毒性,并触发多种控制细胞生理学的途径,包括蛋白质聚集的激活。