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Architecture of Viral Genome-Delivery Molecular Machines

机译:病毒基因组传递分子机器的体系结构

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摘要

From the abyss of the ocean to the human gut, bacterial viruses (or bacteriophages) have colonized all ecosystems of the planet earth and evolved in sync with their bacterial hosts. Over 95% of bacteriophages have a tail that varies greatly in length and complexity. The tail complex interrupts the icosahedral capsid symmetry and provides both an entry for viral genome-packaging during replication and an exit for genome-ejection during infection. Here, we review recent progress in deciphering the structure, assembly and conformational dynamics of viral genome-delivery tail machines. We focus on the bacteriophages P22 and T7, two well-studied members of the Podoviridae family that use short, non-contractile tails to infect Gram-negative bacteria. The structure of specialized tail fibers and their putative role in host anchoring, cell-surface penetration and genome-ejection is discussed.
机译:从海洋的深处到人类的肠道,细菌病毒(或噬菌体)已经定居在地球的所有生态系统中,并与其细菌宿主同步进化。超过95%的噬菌体的尾巴的长度和复杂性差异很大。尾部复合体中断了二十面体衣壳的对称性,并为复制过程中病毒基因组包装提供了入口,为感染过程中基因组弹出提供了出口。在这里,我们审查解密病毒基因组交付尾巴机器的结构,组装和构象动力学的最新进展。我们专注于细菌噬菌体P22和T7,这是经过精心研究的Podoviridae家族成员,它们使用短而不可收缩的尾巴感染革兰氏阴性细菌。讨论了专用尾纤维的结构及其在宿主锚定,细胞表面渗透和基因组弹出中的假定作用。

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