Recognition of DNA adducts by edited and unedited forms of DNA glycosylase NEIL1

被引:25
作者
Minko, Irina G. [1 ]
Vartanian, Vladimir L. [1 ]
Tozaki, Naoto N. [1 ]
Coskun, Erdem [2 ,3 ]
Coskun, Sanem Hosbas [2 ]
Jaruga, Pawel [2 ]
Yeo, Jongchan [4 ]
David, Sheila S. [4 ]
Stone, Michael P. [5 ]
Egli, Martin [6 ]
Dizdaroglu, Miral [2 ]
McCullough, Amanda K. [1 ,7 ]
Lloyd, R. Stephen [1 ,7 ,8 ]
机构
[1] Oregon Hlth & Sci Univ, Oregon Inst Occupat Hlth Sci, Portland, OR 97239 USA
[2] NIST, Biomol Measurement Div, Gaithersburg, MD 20899 USA
[3] Univ Maryland, Inst Biosci & Biotechnol Res, Rockville, MD 20850 USA
[4] Univ Calif Davis, Dept Chem, Davis, CA 95616 USA
[5] Vanderbilt Univ, Dept Chem, Box 1583, Nashville, TN 37235 USA
[6] Vanderbilt Univ, Dept Biochem, Nashville, TN 37232 USA
[7] Oregon Hlth & Sci Univ, Dept Mol & Med Genet, Portland, OR 97239 USA
[8] Oregon Hlth & Sci Univ, Dept Physiol & Pharmacol, Portland, OR 97239 USA
基金
美国国家卫生研究院;
关键词
Base excision repair; RNA editing; Formamidopyrimidines; Thymine glycol; Aflatoxin; Hepatocellular carcinoma; BASE EXCISION-REPAIR; HYDANTOIN LESIONS; OXIDIZED BASES; DAMAGE; AFLATOXIN; GENOME; MICE; 8-OXOGUANINE; OXIDATION; PROTEINS;
D O I
10.1016/j.dnarep.2019.102741
中图分类号
Q3 [遗传学];
学科分类号
071007 ; 090102 ;
摘要
Pre-mRNA encoding human NEIL1 undergoes editing by adenosine deaminase ADAM that converts a single adenosine to inosine, and this conversion results in an amino acid change of lysine 242 to arginine. Previous investigations of the catalytic efficiencies of the two forms of the enzyme revealed differential release of thymine glycol (ThyGly) from synthetic oligodeoxynucleotides, with the unedited form, NEIL1 K242 being approximate to 30-fold more efficient than the edited NEIL1 K242R. In contrast, when these enzymes were reacted with oligodeoxynucleotides containing guanidinohydantoin or spiroiminohydantoin, the edited K242R form was approximate to 3-fold more efficient than the unedited NEIL1. However, no prior studies have investigated the efficiencies of these two forms of NEIL1 on either high-molecular weight DNA containing multiple oxidatively-induced base damages, or oligodeoxynucleotides containing a bulky alkylated formamidopyrimidine. To understand the extent of changes in substrate recognition, gamma-irradiated calf thymus DNA was treated with either edited or unedited NEIL1 and the released DNA base lesions analyzed by gas chromatography-tandem mass spectrometry. Of all the measured DNA lesions, imidazole ring-opened 4,6-diamino-5-formamidopyrimidine (FapyAde) and 2,6-diamino-4-hydroxy-5-formamidopyrimidine (FapyGua) were preferentially released by both NEIL1 enzymes with K242R being approximate to 1.3 and 1.2-fold more efficient than K242 on excision of FapyAde and FapyGua, respectively. Consistent with the prior literature, large differences (approximate to 7.5 to 12-fold) were measured in the excision of ThyGly from genomic DNA by the unedited versus edited NEIL1. In contrast, the edited NEIL1 was more efficient (approximate to 3 to 5 fold) on release of 5-hydroxycytosine. Excision kinetics on DNA containing a site-specific aflatoxin B-1-FapyGua adduct revealed an approximate to 1.4-fold higher rate by the unedited NEIL1. Molecular modeling provides insight into these differential substrate specificities. The results of this study and in particular, the comparison of substrate specificities of unedited and edited NEIL1 using biologically and clinically important base lesions, are critical for defining its role in preservation of genomic integrity.
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页数:8
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