首页> 外文期刊>DNA repair >Distinct kinetics of human DNA ligases I, IIIalpha, IIIbeta, and IV reveal direct DNA sensing ability and differential physiological functions in DNA repair.
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Distinct kinetics of human DNA ligases I, IIIalpha, IIIbeta, and IV reveal direct DNA sensing ability and differential physiological functions in DNA repair.

机译:人类DNA连接酶I,IIIalpha,IIIbeta和IV的不同动力学揭示了直接DNA感测能力和DNA修复中的不同生理功能。

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The three human LIG genes encode polypeptides that catalyze phosphodiester bond formation during DNA replication, recombination and repair. While numerous studies have identified protein partners of the human DNA ligases (hLigs), there has been little characterization of the catalytic properties of these enzymes. In this study, we developed and optimized a fluorescence-based DNA ligation assay to characterize the activities of purified hLigs. Although hLigI joins DNA nicks, it has no detectable activity on linear duplex DNA substrates with short, cohesive single-strand ends. By contrast, hLigIIIbeta and the hLigIIIalpha/XRCC1 and hLigIV/XRCC4 complexes are active on both nicked and linear duplex DNA substrates. Surprisingly, hLigIV/XRCC4, which is a key component of the major non-homologous end joining (NHEJ) pathway, is significantly less active than hLigIII on a linear duplex DNA substrate. Notably, hLigIV/XRCC4 molecules only catalyze a single ligation event in the absence or presence of ATP. The failure to catalyze subsequent ligation events reflects a defect in the enzyme-adenylation step of the next ligation reaction and suggests that, unless there is an in vivo mechanism to reactivate DNA ligase IV/XRCC4 following phosphodiester bond formation, the cellular NHEJ capacity will be determined by the number of adenylated DNA ligaseIV/XRCC4 molecules.
机译:这三个人类LIG基因编码在DNA复制,重组和修复过程中催化磷酸二酯键形成的多肽。尽管许多研究已经确定了人类DNA连接酶(hLigs)的蛋白质伴侣,但是这些酶的催化特性却鲜有表征。在这项研究中,我们开发并优化了基于荧光的DNA连接测定法,以表征纯化的hLigs的活性。尽管hLigI加入了DNA缺口,但它对具有短而有粘性的单链末端的线性双链DNA底物没有可检测的活性。相比之下,hLigIIIbeta和hLigIIIalpha / XRCC1和hLigIV / XRCC4复合物在带切口和线性双链DNA底物上均具有活性。令人惊讶的是,hLigIV / XRCC4是主要的非同源末端连接(NHEJ)途径的关键组成部分,在线性双链DNA底物上的活性明显低于hLigIII。值得注意的是,hLigIV / XRCC4分子仅在不存在或存在ATP的情况下催化单个连接事件。无法催化随后的连接事件反映了下一个连接反应的酶-腺苷酸化步骤中的缺陷,这表明,除非在磷酸二酯键形成后存在体内机制来重新激活DNA连接酶IV / XRCC4,否则细胞的NHEJ能力将是由腺苷酸化的DNA连接酶IV / XRCC4分子的数目确定。

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