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Mutational analysis of the damage-recognition and catalytic mechanism of human SMUG1 DNA glycosylase

机译:人SMUG1 DNA糖基化酶的损伤识别和催化机制的突变分析

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Single-strand selective monofunctional uracil-DNA glycosylase (SMUG1), previously thought to be a backup enzyme for uracil-DNA glycosylase, has recently been shown to excise 5-hydroxyuracil (hoU), 5-hydroxymethyluracil (hmU) and 5-formyluracil (fU) bearing an oxidized group at ring C5 as well as an uracil. In the present study, we used site-directed mutagenesis to construct a series of mutants of human SMUG1 (hSMUG1), and tested their activity for uracil, hoU, hmU, fU and other bases to elucidate the catalytic and damage-recognition mechanism of hSMUG1. The functional analysis of the mutants, together with the homology modeling of the hSMUG1 structure based on that determined recently for Xenopus laevis SMUG1, revealed the crucial residues for the rupture of the N-glycosidic bond (Asn85 and His239), discrimination of pyrimidine rings through pi-pi stacking to the base (Phe98) and specific hydrogen bonds to the Watson-Crick face of the base (Asn163) and exquisite recognition of the C5 substituent through water-bridged (uracil) or direct (hoU, hmU and fU) hydrogen bonds (Gly87-Met91). Integration of the present results and the structural data elucidates how hSMUG1 accepts uracil, hoU, hmU and fU as substrates, but not other oxidized pyrimidines such as 5-hydroxycytosine, 5-formylcytosine and thymine glycol, and intact pyrimidines such as thymine and cytosine.
机译:单链选择性单功能尿嘧啶DNA糖基化酶(SMUG1)以前被认为是尿嘧啶DNA糖基化酶的备用酶,最近被证明可切除5-羟基尿嘧啶(hoU),5-羟基甲基尿嘧啶(hmU)和5-甲酰基尿嘧啶( fU)在C5环上带有一个氧化基团以及一个尿嘧啶。在本研究中,我们使用定点诱变构建了一系列人类SMUG1(hSMUG1)突变体,并测试了它们对尿嘧啶,hoU,hmU,fU和其他碱基的活性,以阐明hSMUG1的催化和损伤识别机制。 。突变体的功能分析,以及基于最近针对非洲爪蟾SMUG1确定的hSMUG1结构的同源性模型,揭示了N-糖苷键断裂的关键残基(Asn85和His239),通过嘧啶环的识别pi-pi堆积到碱基上(Phe98),特定氢键结合到碱基的Watson-Crick面上(Asn163),并通过水桥(尿嘧啶)或直接(hoU,hmU和fU)氢精确识别C5取代基键(Gly87-Met91)。本结果和结构数据的整合阐明了hSMUG1如何接受尿嘧啶,hoU,hmU和fU作为底物,但不接受其他氧化的嘧啶,例如5-羟基胞嘧啶,5-甲酰基胞嘧啶和胸腺嘧啶乙二醇,以及完整的嘧啶,例如胸腺嘧啶和胞嘧啶。

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