Laboratory of Molecular Bacteriology, Department of Microbiology and Immunology, Rega Institute for Medical Research, Katholieke Universiteit Leuven (KU Leuven), B-3000 Leuven, Belgium.
Nat Rev Microbiol. 2017 Jan;15(1):21-36. doi: 10.1038/nrmicro.2016.161. Epub 2016 Nov 28.
The general secretory (Sec) pathway comprises an essential, ubiquitous and universal export machinery for most proteins that integrate into, or translocate through, the plasma membrane. Sec exportome polypeptides are synthesized as pre-proteins that have cleavable signal peptides fused to the exported mature domains. Recent advances have re-evaluated the interaction networks of pre-proteins with chaperones that are involved in pre-protein targeting from the ribosome to the SecYEG channel and have identified conformational signals as checkpoints for high-fidelity targeting and translocation. The recent structural and mechanistic insights into the channel and its ATPase motor SecA are important steps towards the elucidation of the allosteric crosstalk that mediates secretion. In this Review, we discuss recent biochemical, structural and mechanistic insights into the consecutive steps of the Sec pathway - sorting and targeting, translocation and release - in both co-translational and post-translational modes of export. The architecture and conformational dynamics of the SecYEG channel and its regulation by ribosomes, SecA and pre-proteins are highlighted. Moreover, we present conceptual models of the mechanisms and energetics of the Sec-pathway dependent secretion process in bacteria.
通用分泌途径(Sec)包括一种基本、普遍和通用的出口机制,用于将大多数整合到质膜中或通过质膜转运的蛋白质。Sec 外排体多肽作为前蛋白合成,这些前蛋白融合了可切割的信号肽到输出的成熟结构域。最近的进展重新评估了前蛋白与伴侣蛋白的相互作用网络,这些伴侣蛋白参与了从核糖体到 SecYEG 通道的前蛋白靶向,并确定了构象信号作为高精度靶向和易位的检查点。最近对通道及其 ATP 酶 SecA 的结构和机制见解,是阐明介导分泌的变构串扰的重要步骤。在这篇综述中,我们讨论了 Sec 途径的连续步骤的最新生化、结构和机制见解 - 分拣和靶向、易位和释放 - 在共翻译和翻译后出口模式下。SecYEG 通道的结构和构象动力学及其被核糖体、SecA 和前蛋白的调节被强调。此外,我们提出了细菌中 Sec 依赖分泌过程的机制和能量学的概念模型。