Howard Hughes Medical Institute, Chevy Chase, Maryland, United States.
Department of Biochemistry and Biophysics, University of California, San Francisco, San Francisco, United States.
Elife. 2020 Jan 30;9:e54031. doi: 10.7554/eLife.54031.
The AAA protein Msp1 extracts mislocalized tail-anchored membrane proteins and targets them for degradation, thus maintaining proper cell organization. How Msp1 selects its substrates and firmly engages them during the energetically unfavorable extraction process remains a mystery. To address this question, we solved cryo-EM structures of Msp1-substrate complexes at near-atomic resolution. Akin to other AAA proteins, Msp1 forms hexameric spirals that translocate substrates through a central pore. A singular hydrophobic substrate recruitment site is exposed at the spiral's seam, which we propose positions the substrate for entry into the pore. There, a tight web of aromatic amino acids grips the substrate in a sequence-promiscuous, hydrophobic milieu. Elements at the intersubunit interfaces coordinate ATP hydrolysis with the subunits' positions in the spiral. We present a comprehensive model of Msp1's mechanism, which follows general architectural principles established for other AAA proteins yet specializes Msp1 for its unique role in membrane protein extraction.
AAA 蛋白 Msp1 可提取错位的尾部锚定膜蛋白并将其靶向降解,从而维持细胞的正常组织。Msp1 如何选择其底物并在能量不利的提取过程中牢固地与之结合,这仍然是一个谜。为了解决这个问题,我们以近原子分辨率解析了 Msp1-底物复合物的冷冻电镜结构。与其他 AAA 蛋白类似,Msp1 形成六聚体螺旋,通过中央孔转运底物。一个独特的疏水性底物募集位点暴露在螺旋的接缝处,我们推测该位点将底物定位到孔中。在这里,一个紧密的芳香族氨基酸网络以序列非特异性的方式抓住底物,处于疏水环境中。亚基界面上的元件将 ATP 水解与螺旋中亚基的位置协调起来。我们提出了 Msp1 机制的综合模型,该模型遵循了为其他 AAA 蛋白建立的一般结构原则,但为 Msp1 在膜蛋白提取中的独特作用进行了专门化。