首页> 外文期刊>Virology >An acidic amphipathic helix in the Bovine Papillomavirus E2 protein is critical for DNA replication and interaction with the E1 protein.
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An acidic amphipathic helix in the Bovine Papillomavirus E2 protein is critical for DNA replication and interaction with the E1 protein.

机译:牛乳头瘤病毒E2蛋白中的酸性两亲性螺旋对于DNA复制和与E1蛋白的相互作用至关重要。

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摘要

The papillomavirus E2 proteins function in viral transcriptional regulation, and genome replication and episomal maintenance. The transactivation domain is essential for these activities. To identify functional regions, a structural model of the BPV1 E2 transactivation domain was used to target surface residues for mutation. Mutation of several previously uncharacterized regions yielded proteins specifically disrupted in the replication activity of E2. Mutations in an amino-terminal acidic amphipathic helix disrupted the interaction of the E1 and E2 proteins and a peptide derived from this helix blocked cooperative origin binding of E1 and E2. Mutation of clusters of charged residues, R47, K48, K49, R58, and H61 or R172, D175, E176, and R179, or residue R68 in the previously described putative E1 interaction region, specifically disrupted replication while retaining the ability to bind to the E1 protein. Thus, this approach has identified novel regions that are required for the replication function of E2.
机译:乳头瘤病毒E2蛋白在病毒转录调控,基因组复制和游离维持中起作用。反式激活域对于这些活动至关重要。为了识别功能区,BPV1 E2反式激活结构域的结构模型用于靶向突变的表面残基。几个先前未表征的区域的突变产生蛋白质,该蛋白质在E2的复制活性中被特异性破坏。氨基末端酸性两亲性螺旋中的突变破坏了E1和E2蛋白的相互作用,并且从该螺旋衍生的肽阻止了E1和E2的协同起源结合。先前假定的E1相互作用区域中带电残基R47,K48,K49,R58和H61或R172,D175,E176和R179或残基R68的簇突变,特异性地破坏了复制,同时保留了与肽结合的能力E1蛋白。因此,这种方法已经确定了E2复制功能所需的新颖区域。

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