Department of Life Sciences, Korea University, Seoul, South Korea.
School of Biological Sciences, Institute of Molecular Biology and Genetics, Seoul National University, Seoul, South Korea.
EMBO J. 2022 Jul 4;41(13):e109755. doi: 10.15252/embj.2021109755. Epub 2022 May 20.
The ClpP serine peptidase is a tetradecameric degradation molecular machine involved in many physiological processes. It becomes a competent ATP-dependent protease when coupled with Clp-ATPases. Small chemical compounds, acyldepsipeptides (ADEPs), are known to cause the dysregulation and activation of ClpP without ATPases and have potential as novel antibiotics. Previously, structural studies of ClpP from various species revealed its structural details, conformational changes, and activation mechanism. Although product release through side exit pores has been proposed, the detailed driving force for product release remains elusive. Herein, we report crystal structures of ClpP from Bacillus subtilis (BsClpP) in unforeseen ADEP-bound states. Cryo-electron microscopy structures of BsClpP revealed various conformational states under different pH conditions. To understand the conformational change required for product release, we investigated the relationship between substrate hydrolysis and the pH-lowering process. The production of hydrolyzed peptides from acidic and basic substrates by proteinase K and BsClpP lowered the pH values. Our data, together with those of previous findings, provide insight into the molecular mechanism of product release by the ClpP self-compartmentalizing protease.
ClpP 丝氨酸肽酶是一种参与许多生理过程的十四聚体降解分子机器。当与 Clp-ATP 酶偶联时,它成为一种有能力的 ATP 依赖性蛋白酶。已知小分子化学化合物酰基二肽(ADEP)在没有 ATP 酶的情况下导致 ClpP 的失调和激活,并具有作为新型抗生素的潜力。先前,来自不同物种的 ClpP 的结构研究揭示了其结构细节、构象变化和激活机制。尽管已经提出了通过侧出口孔进行产物释放的观点,但产物释放的详细驱动力仍然难以捉摸。在此,我们报告了枯草芽孢杆菌(BsClpP)ClpP 的出人意料的 ADEP 结合状态的晶体结构。BsClpP 的低温电子显微镜结构揭示了不同 pH 条件下的各种构象状态。为了了解产物释放所需的构象变化,我们研究了底物水解与降低 pH 值过程之间的关系。蛋白酶 K 和 BsClpP 从酸性和碱性底物中水解产生的肽降低了 pH 值。我们的数据,连同以前的发现,提供了对 ClpP 自我分隔蛋白酶产物释放的分子机制的深入了解。