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Structure of the Type VI Secretion System Contractile Sheath

机译:VI型分泌系统收缩鞘的结构

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Bacteria use rapid contraction of a long sheath of the type VI secretion system (T6SS) to deliver effectors into a target cell. Here, we present an atomic-resolution structure of a native contracted Vibrio cholerae sheath determined by cryo-electron microscopy. The sheath subunits, composed of tightly interacting proteins VipA and VipB, assemble into a six-start helix. The helix is stabilized by a core domain assembled from four b strands donated by one VipA and two VipB molecules. The fold of inner and middle layers is conserved between T6SS and phage sheaths. However, the structure of the outer layer is distinct and suggests a mechanism of interaction of the bacterial sheath with an accessory ATPase, ClpV, that facilitates multiple rounds of effector delivery. Our results provide a mechanistic insight into assembly of contractile nanomachines that bacteria and phages use to translocate macromolecules across membranes.
机译:细菌利用VI型分泌系统(T6SS)的长鞘的快速收缩将效应子传递到靶细胞中。在这里,我们介绍了通过冷冻电子显微镜确定的天然收缩霍乱弧菌鞘的原子分辨率结构。由紧密相互作用的蛋白质VipA和VipB组成的鞘亚基组装成六起始螺旋。螺旋由一个由一个VipA和两个VipB分子捐赠的4条b链组装而成的核心结构域稳定。内层和中层的折叠在T6SS和噬菌体鞘之间是保守的。但是,外层的结构是不同的,表明细菌鞘与辅助ATPase ClpV相互作用的机制,有助于多轮效应子传递。我们的结果为可收缩的纳米机器的组装提供了机械学的见解,细菌和噬菌体利用这些纳米机器将大分子跨膜转运。

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