More than one-third of cellular proteomes traffic into and across membranes. Bacteria have invented several sophisticated secretion systems that guide various proteins to extracytoplasmic locations and in some cases inject them directly into hosts. Of these, the Sec system is ubiquitous, essential and by far the best understood. Secretory polypeptides are sorted from cytoplasmic ones initially due to characteristic signal peptides. Then they are targeted to the plasma membrane by chaperones/pilots. The translocase, a dynamic nanomachine, lies at the centre of this process and acts as a protein-conducting channel with a unique property; allowing both forward transfer of secretory proteins but also lateral release into the lipid bilayer with high fidelity and efficiency. This process, tightly orchestrated at the expense of energy, ensures fundamental cell processes such as membrane biogenesis, cell division, motility, nutrient uptake and environmental sensing. In the present review, we examine this fascinating process, summarizing current knowledge on the structure, function and mechanics of the Sec pathway.

译文

:三分之一以上的细胞蛋白质组进入和穿过膜。细菌已经发明了几种复杂的分泌系统,可以将各种蛋白质引导到胞外位置,在某些情况下可以将它们直接注射到宿主中。在这些系统中,Sec系统无处不在,必不可少,是迄今为止最广为人知的系统。最初,由于特征性信号肽,分泌多肽从细胞质中分离出来。然后它们被伴侣/飞行员靶向质膜。转运酶,一个动态的纳米机器,位于这一过程的中心,并作为具有独特性质的蛋白质传导通道。既可以使分泌蛋白向前转移,又可以高保真度和效率横向释放到脂质双层中。以能量为代价精心安排的这一过程可确保基本的细胞过程,例如膜生物发生,细胞分裂,运动,养分吸收和环境感知。在当前的审查中,我们检查了这个迷人的过程,总结了有关Sec途径的结构,功能和力学的当前知识。

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