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Inhibitor Binding Increases the Mechanical Stability of Staphylococcal Nuclease

机译:Inhibitor Binding Increases the mechanical stability of staphylococcal Nuclease

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摘要

Staphylococcal nuclease (SNase) catalyzes the hydrolysis of DNA and RNA in a calcium-dependent fashion. We used AFM-based single-molecule force spectroscopy to investigate the mechanical stability of SNase alone and in its complex with an SNase inhibitor, deoxythymidine 3`,5`-bisphosphate. We found that the enzyme unfolds in an all-or-none fashion at similar to 26 pN. Upon binding to the inhibitor, the mechanical unfolding forces of the enzyme-inhibitor complex increase to similar to 50 pN. This inhibitor-induced increase in the mechanical stability of the enzyme is consistent with the increased thermodynamical stability of the complex over that of SNase. Because of its strong mechanical response to inhibitor binding, SNase, a model protein folding system, offers a unique opportunity for studying the relationship between enzyme mechanics and catalysis.
机译:葡萄球菌核酸酶(SNase)以钙依赖性方式催化DNA和RNA的水解。我们使用基于AFM的单分子力光谱技术研究了SNase单独以及与SNase抑制剂脱氧胸苷3`,5`-双磷酸酯配合使用时的机械稳定性。我们发现,该酶以全无的方式展开,类似于26 pN。与抑制剂结合后,酶-抑制剂复合物的机械解折叠力增加到接近50 pN。这种抑制剂诱导的酶机械稳定性的增加与复合物相对于SNase的热力学稳定性的增加是一致的。由于其对抑制剂结合的强大机械反应,SNase(一种模型蛋白质折叠系统)为研究酶力学与催化之间的关系提供了独特的机会。

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