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深入了解酪氨酸82和甘氨酸253在大肠杆菌腺嘌呤糖基化酶MutY中的作用。

Insight into the roles of tyrosine 82 and glycine 253 in the Escherichia coli adenine glycosylase MutY.

作者信息

Livingston Alison L, Kundu Sucharita, Henderson Pozzi Michelle, Anderson David W, David Sheila S

机构信息

Department of Chemistry, University of Utah, 315 South 1400 East, Salt Lake City, Utah 84112, USA.

出版信息

Biochemistry. 2005 Nov 1;44(43):14179-90. doi: 10.1021/bi050976u.

Abstract

The oxidation product of 2'-deoxyguanosine, 7,8-dihydro-8-oxo-2'-deoxyguanosine (OG), produces G:C to T:A transversion mutations. The Escherichia coli base excision repair glycosylase MutY plays an important role in preventing OG-associated mutations by removing adenines misincorporated opposite OG lesions during DNA replication. Recently, biallelic mutations in the human MutY homologue (hMYH) have been correlated with the development of colorectal cancer. The two most common mutations correspond to two single amino acid substitutions in the hMYH protein: Y165C and G382D [Al-Tassan, N., et al. (2002) Nat. Genet. 30, 227-232]. Previously, our laboratory analyzed the adenine glycosylase activity of the homologous variant E. coli MutY enzymes, Y82C and G253D [Chmiel, N. H., et al. (2003) J. Mol. Biol. 327, 431-443]. This work demonstrated that both variants have a reduced adenine glycosylase activity and affinity for substrate analogues compared to wild-type MutY. Recent structural work on Bacillus stearothermophilus MutY bound to an OG:A mismatch-containing duplex indicates that both residues aid in recognition of OG [Fromme, J. C., et al. (2004) Nature 427, 652-656]. To determine the extent with which Tyr 82 and Gly 253 contribute to catalysis of adenine removal by E. coli MutY, we made a series of additional modifications in these residues, namely, Y82F, Y82L, and G253A. When the substrate analogue 2'-deoxy-2'-fluoroadenosine (FA) in duplex paired with G or OG is used, both Y82F and G253A showed reduced binding affinity, and G253A was unable to discriminate between OG and G when paired with FA. Additionally, compromised glycosylase activity of Y82F, Y82C, and G253A MutY was observed using the nonoptimal G:A substrate, or at low reaction temperatures. Interestingly, adenine removal from an OG:A-containing DNA substrate by Y82C MutY was also shown to be extremely sensitive to the NaCl concentration. The most surprising result was the remarkably similar activity of Y82L MutY to the WT enzyme under all conditions examined, indicating that a leucine residue may effectively replace tyrosine for intercalation at the OG:A mismatch. The results contained herein provide further insight regarding the intricate roles of Tyr 82 and Gly 253 in the OG recognition and adenine excision functions of MutY.

摘要

2'-脱氧鸟苷的氧化产物7,8-二氢-8-氧代-2'-脱氧鸟苷(OG)会导致G:C到T:A的颠换突变。大肠杆菌碱基切除修复糖基化酶MutY通过在DNA复制过程中去除与OG损伤相对错配掺入的腺嘌呤,在预防与OG相关的突变中发挥重要作用。最近,人类MutY同源物(hMYH)的双等位基因突变与结直肠癌的发生相关。两个最常见的突变对应于hMYH蛋白中的两个单氨基酸替换:Y165C和G382D [Al-Tassan, N.,等人(2002年)《自然遗传学》30卷,227 - 232页]。此前,我们实验室分析了同源变体大肠杆菌MutY酶Y82C和G253D的腺嘌呤糖基化酶活性[Chmiel, N. H.,等人(2003年)《分子生物学杂志》327卷,431 - 443页]。这项工作表明,与野生型MutY相比,这两个变体的腺嘌呤糖基化酶活性和对底物类似物的亲和力都有所降低。最近关于与含OG:A错配双链结合的嗜热脂肪芽孢杆菌MutY的结构研究表明,这两个残基都有助于OG的识别[Fromme, J. C.,等人(2004年)《自然》427卷,652 - 656页]。为了确定Tyr 82和Gly 253在大肠杆菌MutY催化去除腺嘌呤过程中的贡献程度,我们对这些残基进行了一系列额外的修饰,即Y82F、Y82L和G253A。当使用与G或OG配对的双链中的底物类似物2'-脱氧-2'-氟腺苷(FA)时,Y82F和G253A都表现出结合亲和力降低,并且G253A与FA配对时无法区分OG和G。此外,使用非最佳的G:A底物或在低温反应条件下,观察到Y82F、Y82C和G253A MutY的糖基化酶活性受损。有趣的是,Y82C MutY从含OG:A的DNA底物中去除腺嘌呤的过程也被证明对NaCl浓度极其敏感。最令人惊讶的结果是,在所有检测条件下,Y82L MutY的活性与野生型酶非常相似,这表明亮氨酸残基可能有效地取代酪氨酸在OG:A错配处进行插入。本文所包含的结果进一步深入了解了Tyr 82和Gly 253在MutY的OG识别和腺嘌呤切除功能中的复杂作用。

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