University of Virginia, Department of Chemistry, Charlottesville, Virginia.
University of Warwick, School of Life Sciences & Department of Chemistry, Coventry, UK.
Biophys J. 2022 Jun 7;121(11):2078-2083. doi: 10.1016/j.bpj.2022.04.038. Epub 2022 May 2.
Lipoprotein signal peptidase (LspA) is an aspartyl protease that cleaves the transmembrane helix signal peptide of lipoproteins as part of the lipoprotein-processing pathway. Members of this pathway are excellent targets for the development of antibiotic therapeutics because they are essential in Gram-negative bacteria, are important for virulence in Gram-positive bacteria, and may not develop antibiotic resistance. Here, we report the conformational dynamics of LspA in the apo state and bound to the antibiotic globomycin determined using molecular dynamics simulations and electron paramagnetic resonance. The periplasmic helix fluctuates on the nanosecond timescale and samples unique conformations in the different states. In the apo state, the dominant conformation is the most closed and occludes the charged active site from the lipid bilayer. With antibiotic bound there are multiple binding modes with the dominant conformation of the periplasmic helix in a more open conformation. The different conformations observed in both bound and apo states indicate a flexible and adaptable active site, which explains how LspA accommodates and processes such a variety of substrates.
脂蛋白信号肽酶(LspA)是一种天冬氨酸蛋白酶,作为脂蛋白加工途径的一部分,它可切割脂蛋白的跨膜螺旋信号肽。该途径的成员是开发抗生素治疗药物的绝佳靶点,因为它们在革兰氏阴性菌中是必需的,在革兰氏阳性菌中对毒力很重要,并且可能不会产生抗生素耐药性。在这里,我们使用分子动力学模拟和电子顺磁共振报告了apo 状态下和与抗生素 globomycin 结合的 LspA 的构象动力学。周质螺旋在纳秒时间尺度上波动,并在不同状态下采样独特的构象。在 apo 状态下,主要构象是最封闭的,使带电的活性位点与脂质双层隔离。与抗生素结合时,存在多种结合模式,周质螺旋的主要构象处于更开放的构象。在结合态和 apo 态下观察到的不同构象表明其活性位点具有柔韧性和适应性,这解释了 LspA 如何容纳和处理如此多种类的底物。