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ATP serves as a nucleotide switch coupling the genome maturation and packaging motor complexes of a virus assembly machine

机译:ATP充当核苷酸开关连接病毒组装机的基因组成熟和包装运动复合体

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摘要

The assembly of double-stranded DNA viruses, from phages to herpesviruses, is strongly conserved. Terminase enzymes processively excise and package monomeric genomes from a concatemeric DNA substrate. The enzymes cycle between a stable maturation complex that introduces site-specific nicks into the duplex and a dynamic motor complex that rapidly translocates DNA into a procapsid shell, fueled by ATP hydrolysis. These tightly coupled reactions are catalyzed by terminase assembled into two functionally distinct nucleoprotein complexes; the and the , respectively. We describe the effects of nucleotides on the assembly of a catalytically competent maturation complex on viral DNA, their effect on maturation complex stability and their requirement for the transition to active packaging motor complex. ATP plays a major role in regulating all of these activities and may serve as a ‘nucleotide switch’ that mediates transitions between the two complexes during processive genome packaging. These biological processes are recapitulated in all of the dsDNA viruses that package monomeric genomes from concatemeric DNA substrates and the nucleotide switch mechanism may have broad biological implications with respect to virus assembly mechanisms.
机译:从噬菌体到疱疹病毒的双链DNA病毒的组装是严格保守的。终止酶从串联的DNA底物中逐步切除并包装单体基因组。酶在稳定的成熟复合物和动态运动复合物之间循环,稳定的成熟复合物将双特异性位点引入双链体,而动态运动复合物则将DNA迅速转移到衣壳中,并由ATP水解。这些紧密偶联的反应是由装配成两个功能不同的核蛋白复合物的末端酶催化的。和。我们描述了核苷酸对病毒DNA具有催化作用的成熟复合物的装配,对成熟复合物稳定性的影响以及向活性包装马达复合物过渡的要求。 ATP在调节所有这些活性中起主要作用,并可能充当“核苷酸开关”,在过程性基因组包装过程中介导两个复合物之间的过渡。这些生物学过程在所有dsDNA病毒中都有概括,这些dsDNA病毒从连续的DNA底物包装单体基因组,而核苷酸转换机制可能对病毒装配机制具有广泛的生物学意义。

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