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Three-step Channel Conformational Changes Common to DNA Packaging Motors of Bacterial Viruses T3 T4 SPP1 and Phi29

机译:T3T4SPP1和Phi29细菌病毒DNA包装马达常见的三步通道构象变化

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摘要

The DNA packaging motor of dsDNA bacterial viruses contains a head-tail connector with a channel for genome to enter during assembly and to exit during host infection. The DNA packaging motor of bacterial virus phi29 was recently reported to use the “One-way Revolution” mechanism for DNA packaging. This raises a question of how dsDNA is ejected during infection if the channel acts as a one-way inward valve. Here we report a three step conformational change of the portal channel that is common among DNA translocation motors of bacterial viruses T3, T4, SPP1, and phi29. The channels of these motors exercise three discrete steps of gating, as revealed by electrophysiological assays. It is proposed that the three step channel conformational changes occur during DNA entry process, resulting in a structural transition in preparation of DNA movement in the reverse direction during ejection.
机译:dsDNA细菌病毒的DNA包装马达包含一个头尾连接器,该连接器具有一个基因组通道,可在组装过程中进入基因组,并在宿主感染期间退出。据报道,细菌病毒phi29的DNA包装马达使用DNA的“单向革命”机制。这就提出了一个问题,即如果通道充当单向内向瓣膜,则在感染过程中dsDNA会如何排出。在这里,我们报告了三步的门户通道构象变化,这是细菌病毒T3,T4,SPP1和phi29的DNA易位马达中常见的。这些电机的通道执行三个离散的门控步骤,如电生理分析所示。建议在进入DNA的过程中发生三步通道构象变化,从而导致DNA弹出过程中DNA反向移动的准备过程中的结构转变。

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