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AP-endonuclease 1 sculpts DNA through an anchoring tyrosine residue on the DNA intercalating loop

机译:AP-indoNuclease1通过DNA插入环上的锚定酪氨酸残基雕刻DNA

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Base excision repair (BER) maintains genomic stability through the repair of DNA damage. Within BER, AP-endonuclease 1 (APE1) is a multifunctional enzyme that processes DNA intermediates through its backbone cleavage activity. To accomplish these repair activities, APE1 must recognize and accommodate several diverse DNA substrates. This is hypothesized to occur through a DNA sculpting mechanism where structural adjustments of the DNA substrate are imposed by the protein; however, how APE1 uniquely sculpts each substrate within a single rigid active site remains unclear. Here, we utilize structural and biochemical approaches to probe the DNA sculpting mechanism of APE1, specifically by characterizing a protein loop that intercalates the minor groove of the DNA (termed the intercalating loop). Pre-steady-state kinetics reveal a tyrosine residue within the intercalating loop (Y269) that is critical for AP-endonuclease activity. Using X-ray crystallography and molecular dynamics simulations, we determined the Y269 residue acts to anchor the intercalating loop on abasic DNA. Atomic force microscopy reveals the Y269 residue is required for proper DNA bending by APE1, providing evidence for the importance of this mechanism. We conclude that this previously unappreciated tyrosine residue is key to anchoring the intercalating loop and stabilizing the DNA in the APE1 active site.
机译:基本切除修复(BER)通过修复DNA损伤来维持基因组稳定性。在BER中,AP - 内切核酸酶1(APE1)是通过其骨干裂解活性来处理DNA中间体的多官能酶。为了完成这些修复活动,APE1必须识别并容纳几种不同的DNA基材。假设这是通过DNA雕刻机制发生,其中DNA衬底的结构调整由蛋白质施加;然而,APE1唯一雕刻在单个刚性有源站点内的每个基板仍然不清楚。在这里,我们利用结构和生化方法来探测APE1的DNA雕刻机制,具体是通过表征蛋白质环,使蛋白质环形嵌入DNA的次要凹槽(称为插入环)。预稳态动力学显示在插入环(Y269)内的酪氨酸残基,这对于AP-in-neatonuclease活性至关重要。使用X射线晶体学和分子动力学模拟,我们确定了Y269残留物的作用,以将插入环绕在脱脂DNA上锚定。原子力显微镜显示APE1的适当DNA弯曲需要Y269残留物,为该机制的重要性提供证据。我们得出结论,该先前未被覆盖的酪氨酸残基是锚固嵌入环并稳定APE1活性位点中的DNA的关键。

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