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Differential stabilization of reaction intermediates: specificity checkpoints for M.EcoRI revealed by transient fluorescence and fluorescence lifetime studies

机译:反应中间体的差异稳定化:瞬时荧光和荧光寿命研究揭示了M.EcoRI的特异性检查点

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摘要

M.EcoRI, a bacterial sequence-specific S-adenosyl-L-methionine-dependent DNA methyltransferase, relies on a complex conformational mechanism to achieve its remarkable specificity, including DNA bending, base flipping and intercalation into the DNA. Using transient fluorescence and fluorescence lifetime studies with cognate and noncognate DNA, we have characterized several reaction intermediates involving the WT enzyme. Similar studies with a bending-impaired, enhanced-specificity M.EcoRI mutant show minimal differences with the cognate DNA, but significant differences with noncognate DNA. These results provide a plausible explanation of the way in which destabilization of reaction intermediates can lead to changes in substrate specificity.
机译:M.EcoRI是一种细菌序列特异性的S-腺苷-L-蛋氨酸依赖性DNA甲基转移酶,它依靠复杂的构象机制来实现其显着的特异性,包括DNA弯曲,碱基翻转和插入DNA中。通过对同源和非同源DNA进行瞬时荧光和荧光寿命研究,我们表征了几种涉及WT酶的反应中间体。对弯曲受损的,增强特异性的M.EcoRI突变体进行的类似研究显示,与同源DNA的差异很小,但与非同源DNA的差异却很大。这些结果为反应中间体的失稳导致底物特异性改变的方式提供了一个合理的解释。

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