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The Catalytic Power of Uracil DNA Glycosylase in the Opening of Thymine Base Pairs

机译:尿嘧啶DNA糖基化酶在胸腺嘧啶碱基对开放中的催化能力

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摘要

Uracil DNA glycosylase (UNG) locates uracil and its structural congener thymine in the context of duplex DNA using a base flipping mechanism. NMR imino proton exchange measurements were performed on free and UNG-bound DNA duplexes in which a single thymine (T) was paired with a series of adenine analogues (X) capable of forming one, two or three hydrogen bonds. The base pair opening equilibrium for the free DNA increased 55-fold as the number of hydrogen bonds decreased, but the opening rate constants were nearly the same in the absence and presence of UNG. In contrast, UNG was found to slow the base pair closing rate constants (kcl) compared to each free duplex by a factor of 3 to 23-fold. These findings indicate that regardless of the inherent thermodynamic stability of the TX pair, UNG does not alter the spontaneous opening rate. Instead, the enzyme holds the spontaneously expelled thymine (or uracil) in a transient extrahelical sieving site where it may partition forward into the enzyme active site (uracil) or back into the DNA base stack (thymine).
机译:尿嘧啶DNA糖基化酶(UNG)使用碱基翻转机制在双链DNA的背景下定位尿嘧啶及其结构同源胸腺嘧啶。在自由和UNG结合的DNA双链体上进行NMR亚氨基质子交换测量,其中单个胸腺嘧啶(T)与一系列能够形成一个,两个或三个氢键的腺嘌呤类似物(X)配对。游离DNA的碱基对开放平衡随着氢键数量的减少而增加了55倍,但是在不存在和存在UNG的情况下,开放速率常数几乎相同。相反,发现UNG与每个自由双链体相比使碱基对的闭合速率常数(kcl)减慢了3至23倍。这些发现表明,无论TX对固有的热力学稳定性如何,UNG都不会改变自发打开率。取而代之的是,该酶将自发排出的胸腺嘧啶(或尿嘧啶)保留在一个短暂的螺旋筛分位点中,在该位置它可以向前分配到酶活性位点(尿嘧啶)中,也可以分配回DNA碱基堆栈(胸腺嘧啶)中。

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