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首页> 外文期刊>Nucleic Acids Research >Substrate specificities of bacterial and human AlkB proteins
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Substrate specificities of bacterial and human AlkB proteins

机译:细菌和人类AlkB蛋白的底物特异性

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Methylating agents introduce cytotoxic 1-methyladenine (1-meA) and 3-methylcytosine (3-meC) residues into nucleic acids, and it was recently demonstrated that the Escherichia coli AlkB protein and two human homologues, hABH2 and hABH3, can remove these lesions from DNA by oxidative demethylation. Moreover, AlkB and hABH3 were also found to remove 1-meA and 3-meC from RNA, suggesting that cellular RNA repair can occur. We have here studied the preference of AlkB, hABH2 and hABH3 for single-stranded DNA (ssDNA) or double-stranded DNA (dsDNA), and show that AlkB and hABH3 prefer ssDNA, while hABH2 prefers dsDNA. This was consistently observed with three different oligonucleotide substrates, implying that the specificity for single-stranded versus double-stranded DNA is sequence independent. The dsDNA preference of hABH2 was observed only in the presence of magnesium. The activity of the enzymes on single-stranded RNA (ssRNA), double-stranded RNA (dsRNA) and DNA/RNA hybrids was also investigated, and the results generally confirm the notion that while AlkB and hABH3 tend to prefer single-stranded nucleic acids, hABH2 is more active on double-stranded substrates. These results may contribute to identifying the main substrates of bacterial and human AlkB proteins in vivo.
机译:甲基化剂将细胞毒性的1-甲基腺嘌呤(1-meA)和3-甲基胞嘧啶(3-meC)残基引入核酸,最近证明,大肠杆菌AlkB蛋白和两种人类同源物hABH2和hABH3可以消除这些病变通过氧化脱甲基从DNA中提取。此外,还发现AlkB和hABH3可以从RNA去除1-meA和3-meC,这表明可以发生细胞RNA修复。我们在这里研究了AlkB,hABH2和hABH3对于单链DNA(ssDNA)或双链DNA(dsDNA)的偏好,并表明AlkB和hABH3更喜欢ssDNA,而hABH2更喜欢dsDNA。在三种不同的寡核苷酸底物上均能观察到这一点,这表明单链和双链DNA的特异性与序列无关。仅在镁存在下观察到hABH2的dsDNA偏好。还研究了酶对单链RNA(ssRNA),双链RNA(dsRNA)和DNA / RNA杂交体的活性,结果普遍证实了AlkB和hABH3倾向于偏爱单链核酸的观点hABH2在双链底物上更具活性。这些结果可能有助于鉴定体内细菌和人类AlkB蛋白的主要底物。

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