Ohgita Takashi, Saito Hiroyuki
Department of Biophysical Chemistry, Kyoto Pharmaceutical University.
Chem Pharm Bull (Tokyo). 2019;67(4):341-344. doi: 10.1248/cpb.c18-00947.
Type III secretion system (T3SS) is a protein injection nano-machine consisting of syringe and needle-like structure spanning bacterial inner and outer membranes. Bacteria insert the tip of T3SS needle to host cell membranes, and deliver effector proteins directly into host cells via T3SS to prime the host cell environment for infection. Thus inhibition of T3SS would be a potent strategy for suppressing bacterial infection. We previously demonstrated that T3SS needle rotates by proton-motive force (PMF) with the same mechanism as two evolutionally related rotary protein motors, flagellum and ATP synthase (FASEB J., 27, 2013, Ohgita et al.). Inhibition of needle rotation resulted in suppression of effector secretion, indicating the requirement of needle rotation for effector export. Simulation analysis of protein export by the T3SS needle suggests the importance of a hydrophobic helical groove formed by the conserved aromatic residue in the needle components. Based on these results, we have proposed a novel model of protein export by the T3SS needle, in which effector proteins are exported by PMF-dependent needle rotation oppositely to the hydrophobic helical groove in the needle. Quantitative examinations of the correlation between the speeds of T3SS rotation and the amount of effector export support this model. In this review, we summarize our current understanding of T3SS, and discuss our novel model of the protein export mechanism of T3SS based on the needle rotation.
III型分泌系统(T3SS)是一种蛋白质注射纳米机器,由跨越细菌内膜和外膜的注射器和针状结构组成。细菌将T3SS针的尖端插入宿主细胞膜,并通过T3SS将效应蛋白直接递送到宿主细胞中,从而为感染准备宿主细胞环境。因此,抑制T3SS将是抑制细菌感染的有效策略。我们之前证明,T3SS针通过质子动力(PMF)旋转,其机制与两种进化相关的旋转蛋白马达鞭毛和ATP合酶相同(《美国实验生物学会联合会杂志》,27卷,2013年,Ohgita等人)。抑制针的旋转导致效应蛋白分泌的抑制,表明效应蛋白输出需要针的旋转。T3SS针蛋白输出的模拟分析表明,针组件中保守芳香族残基形成的疏水螺旋槽很重要。基于这些结果,我们提出了一种T3SS针蛋白输出的新模型,其中效应蛋白通过与针中疏水螺旋槽相反的PMF依赖性针旋转输出。对T3SS旋转速度与效应蛋白输出量之间相关性的定量研究支持了该模型。在这篇综述中,我们总结了目前对T3SS的理解,并基于针旋转讨论了T3SS蛋白输出机制的新模型。