Vargiu Attilio Vittorio, Ramaswamy Venkata Krishnan, Malloci Giuliano, Malvacio Ivana, Atzori Alessio, Ruggerone Paolo
Department of Physics, University of Cagliari, Cittadella Universitaria, S.P. Monserrato-Sestu km 0.700, 09042 Monserrato (CA), Italy.
Department of Physics, University of Cagliari, Cittadella Universitaria, S.P. Monserrato-Sestu km 0.700, 09042 Monserrato (CA), Italy.
Res Microbiol. 2018 Sep-Oct;169(7-8):384-392. doi: 10.1016/j.resmic.2017.12.001. Epub 2018 Jan 31.
The putative mechanism by which bacterial RND-type multidrug efflux pumps recognize and transport their substrates is a complex and fascinating enigma of structural biology. How a single protein can recognize a huge number of unrelated compounds and transport them through one or just a few mechanisms is an amazing feature not yet completely unveiled. The appearance of cooperativity further complicates the understanding of structure-dynamics-activity relationships in these complex machineries. Experimental techniques may have limited access to the molecular determinants and to the energetics of key processes regulating the activity of these pumps. Computer simulations are a complementary approach that can help unveil these features and inspire new experiments. Here we review recent computational studies that addressed the various molecular processes regulating the activity of RND efflux pumps.
细菌RND型多药外排泵识别并转运其底物的假定机制,是结构生物学中一个复杂而迷人的谜团。单一蛋白质如何识别大量不相关的化合物,并通过一种或仅仅几种机制来转运它们,这是一个尚未完全揭示的惊人特性。协同性的出现,进一步使我们对这些复杂机制中结构-动力学-活性关系的理解变得复杂化。实验技术在获取调节这些泵活性的关键过程的分子决定因素和能量学方面可能存在局限性。计算机模拟是一种互补的方法,有助于揭示这些特性并启发新的实验。在此,我们综述了最近针对调节RND外排泵活性的各种分子过程的计算研究。