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MutS对二磷酸腺苷和三磷酸腺苷的差异结合与同时结合

Differential and simultaneous adenosine di- and triphosphate binding by MutS.

作者信息

Bjornson Keith P, Modrich Paul

机构信息

Department of Biochemistry and Howard Hughes Medical Institute, Duke University Medical Center, Durham, North Carolina 27710, USA.

出版信息

J Biol Chem. 2003 May 16;278(20):18557-62. doi: 10.1074/jbc.M301101200. Epub 2003 Mar 6.

Abstract

The roles of ATP binding and hydrolysis in the function of MutS in mismatch repair are poorly understood. As one means of addressing this question, we have determined the affinities and number of adenosine di- and triphosphate binding sites within MutS. Nitrocellulose filter binding assay and equilibrium fluorescence anisotropy measurements have demonstrated that MutS has one high affinity binding site for ADP and one high affinity site for nonhydrolyzable ATP analogues per dimer equivalent. Low concentrations of 5'-adenylylimidodiphosphate (AMPPNP) promote ADP binding and a large excess of AMPPNP is required to displace ADP from the protein. Fluorescence energy transfer and filter binding assays indicate that ADP and nonhydrolyzable ATP analogues can bind simultaneously to adjacent subunits within the MutS oligomer with affinities in the low micromolar range. These findings suggest that the protein exists primarily as the ATP.MutS.ADP ternary complex in solution and that this may be the form of the protein that is involved in DNA encounters in vivo.

摘要

ATP结合与水解在错配修复中MutS功能里所起的作用仍知之甚少。作为解决这个问题的一种方法,我们已经确定了MutS内二磷酸腺苷和三磷酸腺苷结合位点的亲和力及数量。硝酸纤维素滤膜结合试验和平衡荧光偏振测量表明,每个二聚体当量的MutS有一个对ADP的高亲和力结合位点和一个对不可水解ATP类似物的高亲和力位点。低浓度的5'-腺苷酰亚胺二磷酸(AMPPNP)促进ADP结合,并且需要大量过量的AMPPNP才能将ADP从蛋白质上置换下来。荧光能量转移和滤膜结合试验表明,ADP和不可水解ATP类似物能够以低微摩尔范围的亲和力同时结合到MutS寡聚体内相邻的亚基上。这些发现表明,该蛋白质在溶液中主要以ATP·MutS·ADP三元复合物的形式存在,并且这可能是该蛋白质在体内与DNA相遇时的形式。

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