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Sequence analysis of bacteriophage T4 DNA packaging/terminase genes 16 and 17 reveals a common ATPase center in the large subunit of viral terminases

机译:噬菌体T4 DNA包装/末端酶基因16和17的序列分析揭示了病毒末端酶大亚基中共有一个ATPase中心

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摘要

Phage DNA packaging is believed to be driven by a rotary device coupled to an ATPase ‘motor’. Recent evidence suggests that the phage DNA packaging motor is one of the strongest force-generating molecular motors reported to date. However, the ATPase center that is responsible for generating this force is unknown. In order to identify the DNA translocating ATPase, the sequences of the packaging/terminase genes of coliphages T4 and RB49 and vibriophages KVP40 and KVP20 have been analyzed. Alignment of the terminase polypeptide sequences revealed a number of functional signatures in the terminase genes 16 and 17. Most importantly, the data provide compelling evidence for an ATPase catalytic center in the N-terminal half of the large terminase subunit gp17. An analogous ATPase domain consisting of conserved functional signatures is also identified in the large terminase subunit of other bacteriophages and herpesviruses. Interestingly, the putative terminase ATPase domain exhibits some of the common features found in the ATPase domain of DEAD box helicases. Residues that would be critical for ATPase catalysis and its coupling to DNA packaging are identified. Com binatorial mutagenesis shows that the predicted threonine residues in the putative ATPase coupling motif are indeed critical for function.
机译:噬菌体DNA包装被认为是由与ATPase“马达”耦合的旋转装置驱动的。最近的证据表明,噬菌体DNA包装马达是迄今为止报道的最强的力产生分子马达之一。但是,负责产生这种力的ATPase中心尚不清楚。为了鉴定DNA易位ATP酶,已经分析了噬菌体T4和RB49以及噬菌体KVP40和KVP20的包装/末端酶基因的序列。末端酶多肽序列的比对揭示了末端酶基因16和17中的许多功能性特征。最重要的是,该数据为大末端酶亚基gp17的N端一半中的ATPase催化中心提供了令人信服的证据。在其他噬菌体和疱疹病毒的大末端酶亚基中也鉴定出由保守的功能标记组成的类似ATPase结构域。有趣的是,推定的末端酶ATPase结构域表现出DEAD盒解旋酶ATPase结构域中的一些常见特征。确定了对于ATPase催化及其与DNA包装偶联至关重要的残基。组合诱变表明,推定的ATPase偶联基序中预测的苏氨酸残基确实对功能至关重要。

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