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Atomic structures of a bactericidal contractile nanotube in its pre- and postcontraction states

机译:收缩前和收缩后杀菌性收缩纳米管的原子结构

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摘要

R-type pyocins are representatives of contractile ejection systems, a class of biological nanomachines that includes, among others, the bacterial type VI secretion system (T6SS) and contractile bacteriophage tails. We report atomic models of the Pseudomonas aeruginosa precontraction pyocin sheath and tube, and the postcontraction sheath, obtained by cryo-EM at 3.5-Å and 3.9-Å resolutions, respectively. The central channel of the tube is negatively charged, in contrast to the neutral and positive counterparts in T6SSs and phage tails. The sheath is interwoven by long N- and C-terminal extension arms emanating from each subunit, which create an extensive two-dimensional mesh that has the same connectivity in the extended and contracted state of the sheath. We propose that the contraction process draws energy from electrostatic and shape complementarities to insert the inner tube through bacterial cell membranes to eventually kill the bacteria.
机译:R型凸核蛋白酶是收缩性喷射系统的代表,收缩性喷射系统是一类生物纳米机器,其中包括细菌VI型分泌系统(T6SS)和收缩性噬菌体尾巴。我们报告的铜绿假单胞菌收缩前的鞘和管,以及收缩后的鞘的原子模型,分别通过cryo-EM在3.5-Å和3.9-Å的分辨率获得。与T6SS和噬菌体尾巴的中性和正性对应物相比,试管的中央通道带负电。护套由从每个子单元发出的长N端和C端延伸臂交织在一起,形成了广泛的二维网格,在护套的伸展和收缩状态下它们具有相同的连通性。我们建议收缩过程从静电和形状互补中吸收能量,以通过细菌细胞膜插入内管,最终杀死细菌。

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