Computational Molecular Biophysics, IWR, University of Heidelberg, Heidelberg, Germany.
FEBS Lett. 2011 Sep 2;585(17):2739-43. doi: 10.1016/j.febslet.2011.07.036. Epub 2011 Aug 5.
The restriction endonuclease EcoRV binds two magnesium ions. One of these ions, Mg(A)(2+), binds to the phosphate group where the cleavage occurs and is required for catalysis, but the role of the other ion, Mg(B)(2+) is debated. Here, multiple independent molecular dynamics simulations suggest that Mg(B)(2+) is crucial for achieving a tightly bound protein-DNA complex and stabilizing a conformation that allows cleavage. In the absence of Mg(B)(2+) in all simulations the protein-DNA hydrogen bond network is significantly disrupted and the sharp kink at the central base pair step of the DNA, which is observed in the two-metal complex, is not present. Also, the active site residues rearrange in such a way that the formation of a nucleophile, required for DNA hydrolysis, is unlikely.
限制内切酶 EcoRV 结合两个镁离子。其中一个离子,Mg(A)(2+),结合在发生切割的磷酸基团上,对催化是必需的,但另一个离子 Mg(B)(2+)的作用存在争议。在这里,多个独立的分子动力学模拟表明,Mg(B)(2+)对于形成紧密结合的蛋白-DNA 复合物和稳定允许切割的构象至关重要。在所有模拟中均不含有 Mg(B)(2+)的情况下,蛋白-DNA 氢键网络会受到严重破坏,而且在双金属复合物中观察到的 DNA 中心碱基对步的尖锐拐点也不存在。此外,活性位点残基以一种不太可能形成亲核试剂的方式重新排列,亲核试剂是 DNA 水解所必需的。