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Chaperone Proteins Abrogate Inhibition of the Human Papillomavirus (HPV) E1 Replicative Helicase by the HPV E2 Protein

机译:伴侣蛋白消除了HPV E2蛋白对人乳头瘤病毒(HPV)E1复制解旋酶的抑制作用

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摘要

Human papillomavirus (HPV) DNA replication requires the viral origin recognition protein E2 and the presumptive viral replicative helicase E1. We now report for the first time efficient DNA unwinding by a purified HPV E1 protein. Unwinding depends on a supercoiled DNA substrate, topoisomerase I, single-stranded-DNA-binding protein, and ATP, but not an origin. Electron microscopy revealed completely unwound molecules. Intermediates contained two single-stranded loops emanating from a single protein complex, suggesting a bidirectional E1 helicase which translocated the flanking DNA in an inward direction. We showed that E2 protein partially inhibited DNA unwinding and that Hsp70 or Hsp40, which we reported previously to stimulate HPV-11 E1 binding to the origin and promote dihexameric E1 formation, apparently displaced E2 and abolished inhibition. Neither E2 nor chaperone proteins were detected in unwinding complexes. These results suggest that chaperones play important roles in the assembly and activation of a replicative helicase in higher eukaryotes. An E1 mutation in the ATP binding site caused deficient binding and unwinding of origin DNA, indicating the importance of ATP binding in efficient helicase assembly on the origin.
机译:人乳头瘤病毒(HPV)DNA复制需要病毒起源识别蛋白E2和推定的病毒复制解旋酶E1。现在,我们首次报告纯化的HPV E1蛋白释放出的有效DNA。展开取决于超螺旋DNA底物,拓扑异构酶I,单链DNA结合蛋白和ATP,但不是起源。电子显微镜显示分子完全解绕。中间体包含两个来自单个蛋白质复合物的单链环,表明存在双向E1解旋酶,该E1解旋酶向内转移了侧翼DNA。我们显示E2蛋白部分抑制DNA解链,Hsp70或Hsp40(我们先前报道可刺激HPV-11 E1结合至起点并促进二六聚体E1形成),显然取代了E2,并取消了抑制作用。展开复合物中未检测到E2和伴侣蛋白。这些结果表明,伴侣蛋白在高等真核生物中在组装和激活复制性解旋酶中起重要作用。 ATP结合位点的E1突变导致原始DNA的结合不足和展开,表明ATP结合在有效的解旋酶组装上非常重要。

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