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Overexpression of Escherichia coli udk mimics the absence of T7 Gp2 function and thereby abrogates successful infection by T7 phage

机译:大肠杆菌udk的过表达模拟了T7 Gp2功能的缺失从而消除了T7噬菌体的成功感染

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摘要

Successful infection of Escherichia coli by bacteriophage T7 relies upon the transcription of the T7 genome by two different RNA polymerases (RNAps). The bacterial RNAp transcribes early T7 promoters, whereas middle and late T7 genes are transcribed by the T7 RNAp. Gp2, a T7-encoded transcription factor, is a 7 kDa product of an essential middle T7 gene 2, and is a potent inhibitor of the host RNAp. The essential biological role of Gp2 is to inhibit transcription of early T7 genes that fail to terminate efficiently in order to facilitate the coordinated usage of the T7 genome by both host and phage RNAps. Overexpression of the E. coli udk gene, which encodes a uridine/cytidine kinase, interferes with T7 infection. We demonstrate that overexpression of udk antagonizes Gp2 function in E. coli in the absence of T7 infection and thus independently of T7-encoded factors. It seems that overexpression of udk reduces Gp2 stability and functionality during T7 infection, which consequently results in inadequate inhibition of host RNAp and in the accumulation of early T7 transcripts. In other words, overexpression of udk mimics the absence of Gp2 during T7 infection. Our study suggests that the transcriptional regulation of the T7 genome is surprisingly complex and might potentially be affected at many levels by phage- and host-encoded factors.
机译:噬菌体T7成功感染大肠杆菌取决于两种不同的RNA聚合酶(RNAps)对T7基因组的转录。细菌RNAp转录早期的T7启动子,而中间和晚期的T7基因则被T7 RNAp转录。 Tp编码的转录因子Gp2是必需的中间T7基因2的7 kDa产物,是宿主RNAp的有效抑制剂。 Gp2的基本生物学作用是抑制未能有效终止的早期T7基因的转录,以促进宿主和噬菌体RNAps协同使用T7基因组。编码尿苷/胞苷激酶的大肠杆菌udk基因的过表达会干扰T7感染。我们证明,udk的过表达在没有T7感染的情况下拮抗大肠杆菌中的Gp2功能,因此独立于T7编码因子。似乎udk的过表达降低了T7感染期间Gp2的稳定性和功能性,因此导致宿主RNAp的抑制作用不足以及早期T7转录物的积累。换句话说,udk的过度表达模仿了T7感染期间Gp2的缺失。我们的研究表明,T7基因组的转录调控异常复杂,并且可能在许多水平上受到噬菌体和宿主编码因子的影响。

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