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Calcium depletion challenges endoplasmic reticulum proteostasis by destabilising BiP-substrate complexes

机译:钙耗尽通过稳定脱脂衬底复合物来挑战内质网蛋白质

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摘要

The metazoan endoplasmic reticulum (ER) serves both as a hub for maturation of secreted proteins and as an intracellular calcium storage compartment, facilitating calcium-release-dependent cellular processes. ER calcium depletion robustly activates the unfolded protein response (UPR). However, it is unclear how fluctuations in ER calcium impact organellar proteostasis. Here, we report that calcium selectively affects the dynamics of the abundant metazoan ER Hsp70 chaperone BiP, by enhancing its affinity for ADP. In the calcium-replete ER, ADP rebinding to post-ATP hydrolysis BiP-substrate complexes competes with ATP binding during both spontaneous and co-chaperone-assisted nucleotide exchange, favouring substrate retention. Conversely, in the calcium-depleted ER, relative acceleration of ADP-to-ATP exchange favours substrate release. These findings explain the rapid dissociation of certain substrates from BiP observed in the calcium-depleted ER and suggest a mechanism for tuning ER quality control and coupling UPR activity to signals that mobilise ER calcium in secretory cells.
机译:甲烷内质网(ER)作为分泌蛋白质的成熟和作为细胞内钙储存室的集线器,促进钙释放依赖性细胞过程。 ER钙耗竭鲁棒地激活展开的蛋白质反应(UPR)。然而,目前还不清楚ER钙肌肉蛋白质蛋白质的波动。在这里,我们通过提高其对ADP的亲和力,促进钙选择性地影响丰富的Metazoan ER HSP70伴侣BIP的动态。在钙 - Replete ER中,ADP Rebinding至ATP水解BIP衬底复合物在自发和共伴侣辅助核苷酸交换期间与ATP结合竞争,有利于基材保持。相反,在钙耗尽的ER中,ADP-TO-ATP交换的相对加速度底座释放。这些发现解释了在钙耗尽的ER中观察到的细胞的某些底物的快速解离,并提出了一种调整ER质量控制和耦合UPR活性的机制,以动员分泌细胞中的ER钙的信号。

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