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在爱泼斯坦-巴尔病毒EBNA-1蛋白中确定一个形成核心DNA识别基序的16个氨基酸序列。

Delineation of a 16 amino acid sequence that forms a core DNA recognition motif in the Epstein-Barr virus EBNA-1 protein.

作者信息

Chen M R, Zong J, Hayward S D

机构信息

Department of Oncology, Johns Hopkins School of Medicine, Baltimore, Maryland 21205-2185.

出版信息

Virology. 1994 Dec;205(2):486-95. doi: 10.1006/viro.1994.1669.

Abstract

EBNA-1 is the sole virally specified protein required for replication of the Epstein-Barr virus latency origin and also modulates its own expression. Both of these functions are mediated through specific DNA binding. We created a series of amino acid substitutions across the previously identified DNA-binding domain of EBNA-1 to further define the amino acids required for DNA recognition. The results of electrophoretic mobility shift assays using in vitro-translated EBNA-1 (aa 408-641) polypeptides indicated that: (i) The predicted alpha helical segment between aa 477 and 487 is not directly involved in DNA recognition but appears to contribute to a critical local polypeptide conformation. (ii) The positively charged residues Arg459, Lys460, and Lys461 are dispensable for DNA binding. (iii) The region between Gly462 and Lys477 contains residues important for DNA recognition. This region is extremely sensitive to mutation. The behavior of a synthetic peptide representing EBNA-1 aa 458-478 supported the mutagenesis data. A dimer form of this peptide, which lacks the predicted alpha helical domain, was capable of binding DNA, but only nonspecifically. The effect of binding affinity on transactivation was examined in cotransfection assays. EBNA-1 mutants with reduced binding affinity also demonstrated reduced levels of transactivation.

摘要

EBNA-1是爱泼斯坦-巴尔病毒潜伏性起源复制所需的唯一病毒特异性蛋白,并且还调节其自身的表达。这两种功能均通过特异性DNA结合介导。我们在先前鉴定的EBNA-1的DNA结合结构域上创建了一系列氨基酸替换,以进一步确定DNA识别所需的氨基酸。使用体外翻译的EBNA-1(第408-641位氨基酸)多肽进行的电泳迁移率变动分析结果表明:(i)第477至487位氨基酸之间预测的α螺旋段不直接参与DNA识别,但似乎有助于形成关键的局部多肽构象。(ii)带正电荷的残基Arg459、Lys460和Lys461对于DNA结合并非必需。(iii)Gly462和Lys477之间的区域包含对DNA识别重要的残基。该区域对突变极其敏感。代表EBNA-1第458-478位氨基酸的合成肽的行为支持了诱变数据。该肽的二聚体形式缺乏预测的α螺旋结构域,能够结合DNA,但仅为非特异性结合。在共转染实验中检测了结合亲和力对反式激活的影响。结合亲和力降低的EBNA-1突变体也表现出反式激活水平降低。

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