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首页> 外文期刊>Virology >Distinct regions of EBV DNase are required for nuclease and DNA binding activities.
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Distinct regions of EBV DNase are required for nuclease and DNA binding activities.

机译:EBV DNase的不同区域对于核酸酶和DNA结合活性是必需的。

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Epstein-Barr virus (EBV) DNase possesses both endonuclease and exonuclease activities and accepts both double-stranded DNA (dsDNA) and single-stranded DNA (ssDNA) as substrates. To map regions of EBV DNase responsible for nuclease and DNA binding activities, a series of mutant DNase polypeptides was expressed using a bacterial system for the nuclease assay and in an in vitro transcription/translation system to assay binding activity to dsDNA or ssDNA cellulose. The results indicated that the C-terminus of EBV DNase, residues 450-460, is essential for nuclease activity but dispensable for DNA binding. However, deletion of residues 441-470 resulted in the loss of both nuclease and DNA binding activities. Substitution of Phe452 and Val458 led to inactive enzymes. In the N-terminus, deletion of residues 23-28 and residues 7-61 resulted in the loss of nuclease activity but the DNA binding activities of the deleted enzymes were intermediate and low, respectively. Mutation of Leu23 to Gly showed drastically reduced nuclease activity but its DNA binding ability was not affected. Based on the amino acid sequence alignment of various herpesvirus DNases, we chose four highly conserved and two less well conserved regions as controls for mutagenesis studies. These six internal deletion (ID) mutants were prepared using a recombinant PCR method. Each of the polypeptides was expressed in a bacterial system for the nuclease assay and using an in vitro transcription/translation system for the DNA binding assay. DNA binding and nuclease activities of all six internal deletion mutants were abolished, except that mutant ID2, with deletion of residues 138-152, retained an intermediate ability to bind DNA. These data indicate that since mutations at distinct regions within EBV DNase resulted in the loss of nuclease and/or DNA binding activities, it is suggested that these distinct regions are required for maintenance of an intact and highly ordered structure(s) for both activities.
机译:爱泼斯坦巴尔病毒(EBV)DNase同时具有核酸内切酶和核酸外切酶活性,并接受双链DNA(dsDNA)和单链DNA(ssDNA)作为底物。为了绘制负责核酸酶和DNA结合活性的EBV DNase区域,使用细菌系统进行核酸酶测定,并在体外转录/翻译系统中表达一系列突变的DNase多肽,以测定与dsDNA或ssDNA纤维素的结合活性。结果表明,EBV DNase的C末端(残基450-460)对于核酸酶活性是必不可少的,但对于DNA结合却是必不可少的。但是,残基441-470的缺失导致核酸酶和DNA结合活性的丧失。 Phe452和Val458的取代导致酶失活。在N末端,残基23-28和残基7-61的缺失导致核酸酶活性的丧失,但是缺失的酶的DNA结合活性分别为中等和低。 Leu23突变为Gly显示出核酸酶活性大大降低,但其DNA结合能力并未受到影响。基于各种疱疹病毒DNase的氨基酸序列比对,我们选择了四个高度保守的区域和两个不太保守的区域作为诱变研究的对照。使用重组PCR方法制备了这六个内部缺失(ID)突变体。每种多肽在细菌系统中表达以进行核酸酶测定,并在体外转录/翻译系统中进行DNA结合测定。取消了所有六个内部缺失突变体的DNA结合和核酸酶活性,除了具有残基138-152缺失的突变体ID2保留了结合DNA的中间能力。这些数据表明,由于EBV DNase内不同区域的突变导致核酸酶和/或DNA结合活性的丧失,因此建议为维持两种活性的完整且高度有序的结构而需要这些不同区域。

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