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首页> 外文期刊>Biochemistry >A new method for determining the stereochemistry of DNA cleavage reactions: application to the SfiI and HpaII restriction endonucleases and to the MuA transposase.
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A new method for determining the stereochemistry of DNA cleavage reactions: application to the SfiI and HpaII restriction endonucleases and to the MuA transposase.

机译:一种确定DNA裂解反应的立体化学的新方法:应用于SfiI和HpaII限制性核酸内切酶以及MuA转座酶。

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摘要

A new method was developed for tracking the stereochemical path of enzymatic cleavage of DNA. DNA with a phosphorothioate of known chirality at the scissile bond is cleaved by the enzyme in H218O. The cleavage produces a DNA molecule with the 5'-[16O,18O, S]-thiophosphoryl group, whose chirality depends on whether the cleavage reaction proceeds by a single-step hydrolysis mechanism or by a two-step mechanism involving a protein-DNA covalent intermediate. To determine this chirality, the cleaved DNA is joined to an oligonucleotide by DNA ligase. Given the strict stereochemistry of the DNA ligase reaction, determined here, the original chirality of the phosphorothioate dictates whether the 18O is retained or lost in the ligation product, which can be determined by mass spectrometry. This method has advantages over previous methods in that it is not restricted to particular DNA sequences, requires substantially less material, and avoids purification of the products at intermediate stages in the procedure. The method was validated by confirming that DNA cleavage by the EcoRI restriction endonuclease causes inversion of configuration at the scissile phosphate. It was then applied to the reactions of the SfiI and HpaII endonucleases and the MuA transposase. In all three cases, DNA cleavage proceeded with inversion of configuration, indicating direct hydrolysis of the phosphodiester bond by water as opposed to a reaction involving a covalent enzyme-DNA intermediate.
机译:开发了一种新的方法来跟踪DNA酶促裂解的立体化学路径。 H218O中的酶裂解了在易裂键上具有已知手性的硫代磷酸酯的DNA。裂解产生具有5'-[16O,18O,S]-硫代磷酰基的DNA分子,其手性取决于裂解反应是通过单步水解机制还是通过涉及蛋白质-DNA的两步机制进行共价中间体。为了确定该手性,通过DNA连接酶将切割的DNA连接至寡核苷酸。考虑到此处确定的DNA连接酶反应的严格立体化学,硫代磷酸酯的原始手性决定了18O是保留还是丢失在连接产物中,这可以通过质谱法确定。该方法相对于以前的方法具有优点,因为它不限于特定的DNA序列,所需的材料少得多,并且避免了在过程的中间阶段纯化产物。通过确认EcoRI限制性核酸内切酶对DNA的切割会导致易裂磷酸盐的构型反转,从而验证了该方法的有效性。然后将其应用于SfiI和HpaII核酸内切酶与MuA转座酶的反应。在所有三种情况下,DNA裂解均以构型反转进行,表明磷酸二酯键被水直接水解,这与涉及共价酶-DNA中间体的反应相反。

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