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首页> 外文期刊>Journal of Molecular Biology >Bacteriophage T5 encodes a homolog of the eukaryotic transcription coactivator PC4 implicated in recombination-dependent DNA replication
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Bacteriophage T5 encodes a homolog of the eukaryotic transcription coactivator PC4 implicated in recombination-dependent DNA replication

机译:噬菌体T5编码与重组依赖的DNA复制有关的真核转录共激活因子PC4的同源物

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The RNA polymerase II cofactor PC4 globally regulates transcription of protein-encoding genes through interactions with unwinding DNA, the basal transcription machinery and transcription activators. Here, we report the surprising identification of PC4 homologs in all sequenced representatives of the T5 family of bacteriophages, as well as in an archaeon and seven phyla of eubacteria. We have solved the crystal structure of the full-length T5 protein at 1.9 ?, revealing a striking resemblance to the characteristic single-stranded DNA (ssDNA)-binding core domain of PC4. Intriguing novel structural features include a potential regulatory region at the N-terminus and a C-terminal extension of the homodimerisation interface. The genome organisation of T5-related bacteriophages points at involvement of the PC4 homolog in recombination-dependent DNA replication, strongly suggesting that the protein corresponds to the hitherto elusive replicative ssDNA-binding protein of the T5 family. Our findings imply that PC4-like factors intervene in multiple unwinding-related processes by acting as versatile modifiers of nucleic acid conformation and raise the possibility that the eukaryotic transcription coactivator derives from ancestral DNA replication, recombination and repair factors.
机译:RNA聚合酶II辅助因子PC4通过与解链DNA,基础转录机制和转录激活因子的相互作用来全局调节蛋白质编码基因的转录。在这里,我们报告了在T5噬菌体家族的所有测序代表以及古细菌和真细菌的七个门中PC4同源物的令人惊讶的鉴定。我们已经解决了全长T5蛋白在1.9?处的晶体结构,揭示了与PC4的特征性单链DNA(ssDNA)结合核心结构域的惊人相似。有趣的新颖结构特征包括均二聚化界面的N末端和C末端延伸的潜在调控区域。 T5相关噬菌体的基因组组织指向PC4同源物参与重组依赖的DNA复制,强烈暗示该蛋白质与T5家族迄今难以捉摸的复制性ssDNA结合蛋白相对应。我们的发现暗示,PC4样因子通过充当核酸构象的多官能修饰剂而介入多个解旋相关过程,并增加了真核转录共激活因子源自祖先DNA复制,重组和修复因子的可能性。

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