Biology Department, Brookhaven National Laboratory, Upton, NY, USA.
NSLS-II, Brookhaven National Laboratory, Upton, NY, USA.
Commun Biol. 2022 Mar 23;5(1):257. doi: 10.1038/s42003-022-03213-2.
AAA+ proteases regulate numerous physiological and cellular processes through tightly regulated proteolytic cleavage of protein substrates driven by ATP hydrolysis. FtsH is the only known family of membrane-anchored AAA+ proteases essential for membrane protein quality control. Although a spiral staircase rotation mechanism for substrate translocation across the FtsH pore has been proposed, the detailed conformational changes among various states have not been clear due to absence of FtsH structures in these states. We report here the cryo-EM structure for Thermotoga maritima FtsH (TmFtsH) in a fully ADP-bound symmetric state. Comparisons of the ADP-state structure with its apo-state and a substrate-engaged yeast YME1 structure show conformational changes in the ATPase domains, rather than the protease domains. A reconstruction of the full-length TmFtsH provides structural insights for the dynamic transmembrane and the periplasmic domains. Our structural analyses expand the understanding of conformational switches between different nucleotide states in ATP hydrolysis by FtsH.
AAA+ 蛋白酶通过 ATP 水解驱动的蛋白质底物的严格调控蛋白水解切割,调节许多生理和细胞过程。FtsH 是唯一已知的膜锚定 AAA+ 蛋白酶家族,对于膜蛋白质量控制是必不可少的。尽管已经提出了底物跨 FtsH 孔螺旋梯式旋转的机制,但由于这些状态下缺乏 FtsH 结构,因此各种状态之间的详细构象变化尚不清楚。我们在此报告了嗜热栖热菌 FtsH(TmFtsH)在完全 ADP 结合对称状态下的冷冻电镜结构。与 apo 状态和与底物结合的酵母 YME1 结构的 ADP 状态结构的比较显示,ATP 酶结构域而不是蛋白酶结构域发生构象变化。全长 TmFtsH 的重建为动态跨膜和周质结构域提供了结构见解。我们的结构分析扩展了对 FtsH 中不同核苷酸状态之间构象转换的理解。