首页> 美国卫生研究院文献>Journal of Virology >DNA Binding by Kaposis Sarcoma-Associated Herpesvirus Lytic Switch Protein Is Necessary for Transcriptional Activation of Two Viral Delayed Early Promoters
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DNA Binding by Kaposis Sarcoma-Associated Herpesvirus Lytic Switch Protein Is Necessary for Transcriptional Activation of Two Viral Delayed Early Promoters

机译:卡波西氏肉瘤相关疱疹病毒裂解开关蛋白的DNA结合是转录激活的两个病毒延迟早期启动子的必要条件。

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摘要

Kaposi's sarcoma-associated herpesvirus (KSHV; also known as human herpesvirus-8) establishes latent and lytic infections in both lymphoid and endothelial cells and has been associated with diseases of both cell types. The KSHV open reading frame 50 (ORF50) protein is a transcriptional activator that plays a central role in the reactivation of lytic viral replication from latency. Here we identify and characterize a DNA binding site for the ORF50 protein that is shared by the promoters of two delayed early genes (ORF57 and K-bZIP). Transfer of this element to heterologous promoters confers on them high-level responsiveness to ORF50, indicating that the element is both necessary and sufficient for activation. The element consists of a conserved 12-bp palindromic sequence and less conserved sequences immediately 3′ to it. Mutational analysis reveals that sequences within the palindrome are critical for binding and activation by ORF50, but the presence of a palindrome itself is not absolutely required. The 3′ flanking sequences also play a critical role in DNA binding and transactivation. The strong concordance of DNA binding in vitro with transcriptional activation in vivo strongly implies that sequence-specific DNA binding is necessary for ORF50-mediated activation through this element. Expression of truncated versions of the ORF50 protein reveals that DNA binding is mediated by the amino-terminal 272 amino acids of the polypeptide.
机译:卡波西氏肉瘤相关疱疹病毒(KSHV;也称为人疱疹病毒-8)在淋巴样和内皮细胞中均建立潜伏性和溶菌性感染,并与两种细胞类型的疾病有关。 KSHV开放阅读框50(ORF50)蛋白是转录激活因子,在从潜伏期恢复裂解性病毒复制中起着核心作用。在这里,我们确定并表征了两个延迟早期基因(ORF57和K-bZIP)的启动子所共享的ORF50蛋白的DNA结合位点。该元件向异源启动子的转移赋予它们对ORF50的高水平响应性,表明该元件对于激活既是必需的又是足够的。该元件由一个保守的12 bp回文序列和紧靠其3'的较少保守的序列组成。突变分析表明,回文中的序列对于ORF50的结合和激活至关重要,但并非绝对需要回文本身。 3'侧翼序列在DNA结合和反式激活中也起关键作用。体外DNA结合与体内转录激活的强烈一致性强烈暗示,序列特异性DNA结合对于ORF50介导的通过该元件的激活是必需的。截短形式的ORF50蛋白的表达表明DNA结合是由多肽的氨基末端272个氨基酸介导的。

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