https://ror.org/024mrxd33 School of Molecular and Cellular Biology, Faculty of Biological Sciences & Astbury Centre for Structural Molecular Biology, University of Leeds, Leeds, UK.
Chemistry Department, University of Sheffield, Sheffield, UK.
Life Sci Alliance. 2024 Aug 5;7(10). doi: 10.26508/lsa.202402702. Print 2024 Oct.
The complex multistep activation cascade of Ire1 involves changes in the Ire1 conformation and oligomeric state. Ire1 activation enhances ER folding capacity, in part by overexpressing the ER Hsp70 molecular chaperone BiP; in turn, BiP provides tight negative control of Ire1 activation. This study demonstrates that BiP regulates Ire1 activation through a direct interaction with Ire1 oligomers. Particularly, we demonstrated that the binding of Ire1 luminal domain (LD) to unfolded protein substrates not only trigger conformational changes in Ire1-LD that favour the formation of Ire1-LD oligomers but also exposes BiP binding motifs, enabling the molecular chaperone BiP to directly bind to Ire1-LD in an ATP-dependent manner. These transient interactions between BiP and two short motifs in the disordered region of Ire1-LD are reminiscent of interactions between clathrin and another Hsp70, cytoplasmic Hsc70. BiP binding to substrate-bound Ire1-LD oligomers enables unfolded protein substrates and BiP to synergistically and dynamically control Ire1-LD oligomerisation, helping to return Ire1 to its deactivated state when an ER stress response is no longer required.
IRE1 的复杂多步骤激活级联反应涉及 IRE1 构象和寡聚状态的变化。IRE1 的激活增强了 ER 的折叠能力,部分原因是过度表达 ER Hsp70 分子伴侣 BiP;反过来,BiP 对 IRE1 激活提供严格的负调控。本研究表明,BiP 通过与 Ire1 寡聚体的直接相互作用来调节 Ire1 激活。具体而言,我们证明了 Ire1 腔结构域(LD)与未折叠蛋白底物的结合不仅触发 Ire1-LD 的构象变化,有利于 Ire1-LD 寡聚体的形成,而且暴露了 BiP 结合基序,使分子伴侣 BiP 能够以 ATP 依赖的方式直接结合到 Ire1-LD 上。BiP 与 Ire1-LD 无规区域中的两个短基序之间的这些瞬时相互作用类似于网格蛋白与另一种 Hsp70、胞质 Hsc70 之间的相互作用。BiP 与底物结合的 Ire1-LD 寡聚体的结合使未折叠蛋白底物和 BiP 能够协同且动态地控制 Ire1-LD 寡聚化,有助于在不再需要 ER 应激反应时使 Ire1 恢复到失活状态。