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5型腺病毒DNA结合蛋白突变体的生化分析

Biochemical analysis of adenovirus type 5 DNA-binding protein mutants.

作者信息

Neale G A, Kitchingman G R

机构信息

Department of Virology and Molecular Biology, St. Jude Children's Research Hospital, Memphis, Tennessee 38101.

出版信息

J Biol Chem. 1989 Feb 25;264(6):3153-9.

PMID:2644280
Abstract

We previously reported the isolation and functional characterization of seven adenovirus type 5 (Ad5) DNA-binding protein (DBP) point mutants (Quinn, C. O., and Kitchingman, G. R. (1986) J. Virol. 60, 653-661). Six of the seven mutants were defective in their ability to help adeno-associated virus replicate its DNA. To determine the level at which the mutations affect this function of the DBP, we analyzed several properties of the mutant proteins. All are transported to the nucleus and are post-translationally phosphorylated to the same extent. The half-lives of the proteins, measured by pulse-chase, were nearly identical to that of the wild-type DBP. The mutant DBPs were examined for their ability to bind to single-stranded DNA (ssDNA). Mutations in amino acids 322, 323, and 470 lowered the affinity of the DBP for ssDNA, while a mutation in amino acid 181 had no affect. Combinations of mutations in amino acid 470 with either 322 or 323 did not further lower the affinity of the protein for ssDNA. These data indicate that the functional defect for adeno-associated virus helper activity of the six mutants is due mainly, if not totally, to their reduced affinity for single-stranded DNA. These experiments have thus identified a functional domain of the adenovirus type 5 DBP potentially involved in DNA-protein interactions. Comparisons with temperature-sensitive DBP mutants indicate that the conserved region mutants are functionally distinct and represent a new class of DBP mutants.

摘要

我们之前报道了7个5型腺病毒(Ad5)DNA结合蛋白(DBP)点突变体的分离及功能特性研究(奎因,C.O.,和基奇曼,G.R.(1986年)《病毒学杂志》60卷,653 - 661页)。这7个突变体中有6个在协助腺相关病毒复制其DNA的能力上存在缺陷。为了确定这些突变在何种水平上影响DBP的这一功能,我们分析了突变蛋白的若干特性。所有突变蛋白都能转运至细胞核,并且在翻译后磷酸化程度相同。通过脉冲追踪法测定,这些蛋白的半衰期与野生型DBP的半衰期几乎相同。我们检测了突变DBP与单链DNA(ssDNA)结合的能力。氨基酸322、323和470发生突变会降低DBP对ssDNA的亲和力,而氨基酸181发生突变则无影响。氨基酸470与322或323的突变组合并未进一步降低该蛋白对ssDNA的亲和力。这些数据表明,这6个突变体在腺相关病毒辅助活性方面的功能缺陷,即便不是完全,也主要是由于它们对单链DNA的亲和力降低所致。因此,这些实验确定了5型腺病毒DBP中一个可能参与DNA - 蛋白质相互作用的功能结构域。与温度敏感型DBP突变体的比较表明,保守区域突变体在功能上是不同的,代表了一类新的DBP突变体。

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