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X-ray crystal structure of the polymerase domain of the bacteriophage N4 virion RNA polymerase

机译:噬菌体N4病毒粒子RNA聚合酶聚合酶结构域的X射线晶体结构

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摘要

Coliphage N4 virion RNA polymerase (vRNAP), which is injected into the host upon infection, transcribes the phage early genes from promoters that have a 5-bp stem–3 nt loop hairpin structure. Here, we describe the 2.0-Å resolution x-ray crystal structure of N4 mini-vRNAP, a member of the T7-like, single-unit RNAP family and the minimal component having all RNAP functions of the full-length vRNAP. The structure resembles a “fisted right hand” with Fingers, Palm and Thumb subdomains connected to an N-terminal domain. We established that the specificity loop extending from the Fingers along with W129 of the N-terminal domain play critical roles in hairpin-promoter recognition. A comparison with the structure of the T7 RNAP initiation complex reveals that the pathway of the DNA to the active site is blocked in the apo-form vRNAP, indicating that vRNAP must undergo a large-scale conformational change upon promoter DNA binding and explaining the highly restricted promoter specificity of vRNAP that is essential for phage early transcription.
机译:感染时注入宿主的Coliphage N4病毒体RNA聚合酶(vRNAP)从具有5 bp茎–3 nt环发夹结构的启动子转录噬菌体早期基因。在这里,我们描述了N4 mini-vRNAP的2.0-x分辨率X射线晶体结构,它是T7样单单位RNAP家族的成员,是具有全长vRNAP所有RNAP功能的最小组分。该结构类似于“拳头右手”,其中Fingers,Palm和Thumb子域连接到N端域。我们确定从手指延伸的特异性环与N末端域的W129一起在发夹启动子识别中起关键作用。与T7 RNAP起始复合物的结构比较表明,脱辅基形式的vRNAP中DNA到活性位点的通路被阻断,表明vRNAP在启动子DNA结合后必须经历大规模构象变化,并解释了高度限制了vRNAP的启动子特异性,这对噬菌体的早期转录至关重要。

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