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人类MutSα核苷酸结合位点的差异特异性和同时占据情况。

Differential specificities and simultaneous occupancy of human MutSalpha nucleotide binding sites.

作者信息

Martik Diana, Baitinger Celia, Modrich Paul

机构信息

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

出版信息

J Biol Chem. 2004 Jul 2;279(27):28402-10. doi: 10.1074/jbc.M312108200. Epub 2004 Apr 22.

Abstract

We have examined the permissible nucleotide occupancy states of human MutSalpha. The MSH2.MSH6 heterodimer binds 1 mol of ADP and 1 mol of adenosine 5'-O-(thiotriphosphate) (ATPgammaS), with a K(d) for each nucleotide of about 1 microm. Anisotropy measurements using BODIPY TR and BODIPY FL fluorescent derivatives of ADP and 5'-adenylyl-beta,gamma-imidodiphosphate (AMPPNP) also indicate an interaction stoichiometry of 1 mol of ADP and 1 mol of triphosphate analogue per MutSalpha heterodimer. Di- and triphosphate sites can be simultaneously occupied as judged by sequential filling of the two binding site classes with differentially radiolabeled ADP and ATPgammaS and by fluorescence resonance energy transfer between BODIPY TR- and BODIPY FL-labeled ADP and AMPPNP. ATP hydrolysis by MutSalpha is accompanied by a pre-steady-state burst of ADP formation, and analysis of MutSalpha-bound nucleotide during the first turnover has demonstrated the presence of both ADP and ATP. Simultaneous presence of ADP and a nonhydrolyzable ATP analogue modulates MutSalpha.heteroduplex interaction in a manner that is distinct from that observed in the presence of ADP or nonhydrolyzable triphosphate alone, and it is unlikely that this effect is due to the presence of a mixed population of binary complexes between MutSalpha and ADP or a triphosphate analogue. These findings imply that MutSalpha has two nucleotide binding sites with differential specificities for ADP and ATP and suggest that the ADP.MutSalpha.ATP ternary complex has an important role in mismatch repair.

摘要

我们已经研究了人类MutSalpha允许的核苷酸占据状态。MSH2.MSH6异二聚体结合1摩尔的ADP和1摩尔的腺苷5'-O-(硫代三磷酸)(ATPγS),每种核苷酸的解离常数(K(d))约为1微摩尔。使用ADP的BODIPY TR和BODIPY FL荧光衍生物以及5'-腺苷-β,γ-亚氨基二磷酸(AMPPNP)进行的各向异性测量也表明,每个MutSalpha异二聚体的相互作用化学计量为1摩尔ADP和1摩尔三磷酸类似物。通过用不同放射性标记的ADP和ATPγS依次填充两类结合位点,以及通过BODIPY TR和BODIPY FL标记的ADP和AMPPNP之间的荧光共振能量转移判断,二磷酸和三磷酸位点可以同时被占据。MutSalpha水解ATP伴随着ADP形成的预稳态爆发,并且在第一次周转期间对MutSalpha结合的核苷酸进行分析表明同时存在ADP和ATP。ADP和不可水解ATP类似物同时存在以一种不同于单独存在ADP或不可水解三磷酸时观察到方式调节MutSalpha.异源双链体相互作用,并且这种效应不太可能是由于MutSalpha与ADP或三磷酸类似物之间存在二元复合物的混合群体。这些发现意味着MutSalpha有两个对ADP和ATP具有不同特异性的核苷酸结合位点,并表明ADP.MutSalpha.ATP三元复合物在错配修复中起重要作用。

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