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hMutSα forms an ATP-dependent complex with hMutLα and hMutLβ on DNA

机译:hMutSα与hMutLα和hMutLβ在DNA上形成ATP依赖的复合物

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The DNA binding properties of hMutSα and hMutLα and complex formation of hMutSα with hMutLα and hMutLβ were investigated using binding experiments on magnetic bead-coupled DNA substrates with nuclear extracts as well as purified proteins. hMutS250L?binding to homoduplex DNA was disrupted by lower NaCl concentrations than hMutSα binding to a mismatch. ATP markedly reduced the salt resistance of hMutSα binding but hMutSα still retained affinity for heteroduplexes. hMutSα formed a complex with hMutLα and hMutLβ on DNA in the presence of ATP. This complex only formed on 81mer and not 32mer DNA substrates. Complex formation was enhanced by a mismatch in the DAN substrate, and hMutLα and hMutLβ were shown to enter the complex at different ATP concentrations. Purified hMutLα showed an intrinsic affinity for DNA, with a preference for single-stranded over double-stranded DNA.
机译:使用磁珠偶联DNA底物与核提取物以及纯化蛋白的结合实验,研究了hMutSα和hMutLα的DNA结合特性以及hMutSα与hMutLα和hMutLβ的复合形成。低于与错配的hMutSα结合的NaCl浓度会破坏hMutS250Lα与同源双链DNA的结合。 ATP显着降低了hMutSα结合的耐盐性,但hMutSα仍然保留了对异源双链体的亲和力。在ATP存在下,hMutSα与hMutLα和hMutLβ在DNA上形成复合物。该复合物仅在81mer而非32mer DNA底物上形成。 DAN底物的错配增强了复合物的形成,并且显示hMutLα和hMutLβ以不同的ATP浓度进入复合物。纯化的hMutLα显示出对DNA的固有亲和力,比单链DNA优先于单链DNA。

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