Pope Mary Ann, Porello Silvia L, David Sheila S
Department of Chemistry, University of Utah, Salt Lake City, Utah 84103, USA.
J Biol Chem. 2002 Jun 21;277(25):22605-15. doi: 10.1074/jbc.M203037200. Epub 2002 Apr 17.
The DNA repair enzyme MutY plays an important role in the prevention of DNA mutations resulting from the presence of the oxidatively damaged lesion 7,8-dihydro-8-oxo-2'-deoxyguanosine (OG). MutY is a base excision repair (BER) glycosylase that removes misincorporated adenine residues from OG:A mispairs, as well as G:A and C:A mispairs. We have previously shown that, under conditions of low MutY concentrations relative to an OG:A or G:A substrate, the time course of the adenine glycosylase reaction exhibits biphasic kinetic behavior due to slow release of the DNA product by MutY. The dissociation of MutY from its product may require the recruitment of other proteins from the BER pathway, such as an apurinic-apyrimidinic (AP) endonuclease, as turnover-enhancing cofactors. The effect of the AP endonucleases endonuclease IV (Endo IV), exonuclease III (Exo III), and Ape1 on the reaction kinetics of MutY with G:A- and OG:A-containing substrates was investigated. The effect of the glycosylases UDG and MutM and the DNA polymerase pol I was also characterized. Endo IV and Exo III, unlike Ape1, UDG, and pol I, greatly enhance the rate of product release with a G:A substrate, whereas the rate constant for the adenine removal step remains unchanged. Furthermore, the turnover rate with a truncated form of MutY, Stop 225, which lacks 125 amino acids of the C terminus, is unaffected by the presence of Endo IV or Exo III. These results constitute the first evidence of an interaction between the MutY-product DNA complex and Endo IV or Exo III. Furthermore, they suggest a role for the C-terminal domain of MutY in mediating this interaction.
DNA修复酶MutY在预防因氧化损伤的7,8-二氢-8-氧代-2'-脱氧鸟苷(OG)的存在而导致的DNA突变中起重要作用。MutY是一种碱基切除修复(BER)糖基化酶,可从OG:A错配以及G:A和C:A错配中去除错掺入的腺嘌呤残基。我们先前已经表明,在相对于OG:A或G:A底物而言MutY浓度较低的条件下,由于MutY缓慢释放DNA产物,腺嘌呤糖基化酶反应的时间进程呈现双相动力学行为。MutY与其产物的解离可能需要从BER途径募集其他蛋白质,例如无嘌呤-无嘧啶(AP)内切酶,作为增强周转的辅助因子。研究了AP内切酶内切酶IV(Endo IV)、外切酶III(Exo III)和Ape1对MutY与含G:A和OG:A底物反应动力学的影响。还对糖基化酶UDG和MutM以及DNA聚合酶pol I的作用进行了表征。与Ape1、UDG和pol I不同,Endo IV和Exo III极大地提高了G:A底物的产物释放速率,而腺嘌呤去除步骤的速率常数保持不变。此外,缺乏C末端125个氨基酸的截短形式的MutY即Stop 225的周转速率不受Endo IV或Exo III存在的影响。这些结果构成了MutY-产物DNA复合物与Endo IV或Exo III之间相互作用的首个证据。此外,它们表明MutY的C末端结构域在介导这种相互作用中起作用。