首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Divalent Ion-Induced Switch in DNA Cleavage of KpnI Endonuclease Probed through Surface-Enhanced Raman Spectroscopy
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Divalent Ion-Induced Switch in DNA Cleavage of KpnI Endonuclease Probed through Surface-Enhanced Raman Spectroscopy

机译:通过表面增强拉曼光谱探测KPNI内核核酸酶DNA切割的二价离子诱导开关

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We demonstrate the remarkable ability of surface-enhanced Raman spectroscopy (SERS) to track the allosteric changes in restriction endonuclease KpnI (R.KpnI) caused by metal ions. R.KpnI binds and promiscuously cleaves DNA upon activation by Mg2+ ions. However, the divalent ion Ca2+ induces high fidelity cleavage, which can be overcome by higher concentrations of Mg2+ ions. In the absence of any 3D crystal structure, for the first time, we have elucidated the structural underpinnings of such a differential effect of divalent ions on the endonuclease activity. A combined SERS and molecular dynamics (MD) approach showed that Ca2+ ion activates an enzymatic switch in the active site, which is responsible for the high fidelity activity of the enzyme. Thus, SERS in combination with MD simulations provides a powerful tool for probing the link between the structure and activity of enzyme molecules that play vital roles in DNA transactions.
机译:我们证明了表面增强拉曼光谱(SERS)跟踪金属离子引起的限制性内切酶KpnI(R.KpnI)变构变化的显著能力。在被Mg2+离子激活时,R.KpnI结合并混杂地切割DNA。然而,二价离子Ca2+诱导高保真断裂,这可以通过更高浓度的Mg2+离子来克服。在没有任何3D晶体结构的情况下,我们首次阐明了二价离子对核酸内切酶活性的这种差异效应的结构基础。结合SERS和分子动力学(MD)的方法表明,Ca2+离子激活了活性部位的酶开关,这是酶高保真活性的原因。因此,SERS与MD模拟相结合,为探索在DNA交易中起重要作用的酶分子的结构和活性之间的联系提供了强有力的工具。

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