2002
DOI: 10.1074/jbc.m207107200
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hUNG2 Is the Major Repair Enzyme for Removal of Uracil from U:A Matches, U:G Mismatches, and U in Single-stranded DNA, with hSMUG1 as a Broad Specificity Backup

Abstract: hUNG2 and hSMUG1 are the only known glycosylases that may remove uracil from both double-and singlestranded DNA in nuclear chromatin, but their relative contribution to base excision repair remains elusive. The present study demonstrates that both enzymes are strongly stimulated by physiological concentrations of Mg 2؉, at which the activity of hUNG2 is 2-3 orders of magnitude higher than of hSMUG1. Moreover, Mg 2؉ increases the preference of hUNG2 toward uracil in ssDNA nearly 40-fold. APE1 has a strong stimu… Show more

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Cited by 307 publications
(414 citation statements)
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References 47 publications
(72 reference statements)
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“…Since the N-terminus of UNG2 was reported to be susceptible to proteolysis [39], UNG2 was produced in E. coli as an N-terminal his 6 -tag fusion protein. Following purification to apparent homogeneity (Fig.…”
Section: Purification Of Ung2 and Pcnamentioning
confidence: 99%
“…Since the N-terminus of UNG2 was reported to be susceptible to proteolysis [39], UNG2 was produced in E. coli as an N-terminal his 6 -tag fusion protein. Following purification to apparent homogeneity (Fig.…”
Section: Purification Of Ung2 and Pcnamentioning
confidence: 99%
“…Several enzymes are required to convert the damaged DNA [30]. One enzyme that plays a crucial role in this process is uracil-DNA glycosylase (UNG); it removes mismatched uracil from single and double stranded DNA [31]. Its inhibition in neuronal cultures results in neuronal death [32] and UNG knockout mice with elevated levels of homocysteine through dietary folate deficiency, show degeneration in the hippocampus as well as impairments in learning [33].…”
Section: Introductionmentioning
confidence: 99%
“…(36,48,72,76) Overlap between glycosylases is also common as examplified by the in vitro identification of the eC-activity in three human DNA glycosylase, TDG, SMUG1 and MBD4. (52,(54)(55)(56) Although the biological function of these activities remains to be seen, such redundancy of repair is expected to be useful for backing up in vivo.…”
Section: Discussionmentioning
confidence: 99%
“…hTDG also excises eC paired with G with greater efficiency than T from T Á G, but less than U from U Á G. (52,54) Both proteins can remove eC opposite each of the four bases but with varying efficiencies, with eC Á G the preferred substrate. (52,54,57) Recently, Kavli et al (55) described excision of eC by the human single-strand-selective monofunctional uracil-DNA glycosylase (SMUG1), which is only found in higher eukaryotes. In another study, the human methyl-CpG binding domain protein (MBD4 or MED1) also shows a weak activity toward eC but only when the opposite base is G. (56) The biochemical details of these two activities have not been reported.…”
Section: Excision Of Ecmentioning
confidence: 99%