首页> 美国卫生研究院文献>Journal of Virology >Transcriptional and replicational activation functions in the bovine papillomavirus type 1 E2 protein are encoded by different structural determinants.
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Transcriptional and replicational activation functions in the bovine papillomavirus type 1 E2 protein are encoded by different structural determinants.

机译:牛乳头瘤病毒1型E2蛋白中的转录和复制激活功能由不同的结构决定簇编码。

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摘要

A set of E2 proteins with mutations in the amino-terminal transactivation domain was made by a scheme called clustered charged-to-alanine scan. These mutant E2 proteins were tested for expression, stability, and compartmentalization in cells and for sequence-specific DNA binding, as well as in functional assays for transcriptional and replicational activation. We identified four groups of mutants. First, mutants K111A, K112A, and E176A were unable to activate replication and transcription because of oligomerization-induced retention of oligomers in the cytoplasm. Second, although fractions of the mutant proteins E74A and D143A/ R172C existed in the oligomeric form, they were localized in the nucleus. Certain fractions of these proteins existed as a dimer able to form a specific complex and activate replication; however, these proteins were inactive in transcriptional activation. Third, mutants R37A and D122A were localized in the nucleus, existed in the dimeric form, supported replication efficiently, and were severely crippled in transcriptional activation. The fourth group of mutants did not differ considerably from the wild-type protein. The activation of transcription by the wild type as well as mutant E2 proteins was dependent on the concentration of input E2 expression vector DNA and had a bell-like shape. We suggest that the reduction of transcriptional activation at higher E2 concentrations, the self-squelching activity, is caused by oligomerization of the E2 transactivator and is one of the mechanisms for the regulation of E2 activity. Our results also show that transcriptional and replicational activation activities are encoded by different determinants in the E2 protein.
机译:通过称为簇电荷-丙氨酸扫描的方案制备了一组在氨基末端反式激活结构域中具有突变的E2蛋白。测试了这些突变E2蛋白在细胞中的表达,稳定性和区室化,以及序列特异性DNA结合以及转录和复制激活的功能测定。我们确定了四组突变体。首先,突变体K111A,K112A和E176A由于寡聚化诱导寡聚体保留在细胞质中而无法激活复制和转录。其次,尽管突变蛋白E74A和D143A / R172C的部分以寡聚形式存在,但它们位于细胞核中。这些蛋白质的某些部分以二聚体形式存在,能够形成特定的复合物并激活复制。然而,这些蛋白质在转录激活中是无活性的。第三,突变体R37A和D122A位于细胞核中,以二聚体形式存在,有效地支持复制,并且在转录激活中严重受损。第四组突变体与野生型蛋白差异不大。野生型以及突变型E2蛋白对转录的激活取决于输入的E2表达载体DNA的浓度,并且具有钟形形状。我们建议,在较高的E2浓度下转录激活的减少,即自我抑制活性,是由E2反式激活剂的寡聚引起的,并且是E2活性调节的机制之一。我们的结果还表明,转录和复制激活活性由E2蛋白中的不同决定簇编码。

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