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Myung, Kyungjae
Center for Genomic Integrity
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HLTF and SHPRH are not essential for PCNA polyubiquitination, survival and somatic hypermutation: Existence of an alternative E3 ligase

Author(s)
Krijger, Peter H. L.Lee, Kyoo-YoungWit, Niekvan den Berk, Paul C. M.Wu, XiaoliRoest, Henk P.Maas, AlexDing, HaoHoeijmakers, Jan H. J.Myung, KyungjaeJacobs, Heinz
Issued Date
2011-04
DOI
10.1016/j.dnarep.2010.12.008
URI
https://scholarworks.unist.ac.kr/handle/201301/31045
Fulltext
https://www.sciencedirect.com/science/article/pii/S1568786410004179?via%3Dihub
Citation
DNA REPAIR, v.10, no.4, pp.438 - 444
Abstract
DNA damage tolerance is regulated at least in part at the level of proliferating cell nuclear antigen (PCNA) ubiquitination. Monoubiquitination (PCNA-Ub) at lysine residue 164 (K164) stimulates error-prone translesion synthesis (US), Rad5-dependent polyubiquitination (PCNA-Ub(n)) stimulates error-free template switching (TS). To generate high affinity antibodies by somatic hypermutation (SHM), B cells profit from error-prone TLS polymerases. Consistent with the role of PCNA-Ub in stimulating TLS, hypermutated B cells of PCNA(K164R) mutant mice display a defect in generating selective point mutations. Two Rad5 orthologs, HLTF and SHPRH have been identified as alternative E3 ligases generating PCNA-Ub(n) in mammals. As PCNA-Ub and PCNA-Ub(n) both make use of K164, error-free PCNA-Ub(n)-dependent TS may suppress error-prone PCNA-Ub-dependent TLS. To determine a regulatory role of Shprh and Hltf in SHM, we generated Shprh/Hltf double mutant mice. Interestingly, while the formation of PCNA-Ub and PCNA-Ub(n) is prohibited in PCNA(K164R) MEFs, the formation of PCNA-Ub(n) is not abolished in Shprh/Hltf mutant MEFs. In line with these observations Shprh/Hltf double mutant B cells were not hypersensitive to DNA damage. Furthermore, SHM was normal in Shprh/Hltf mutant B cells. These data suggest the existence of an alternative E3 ligase in the generation of PCNA-Ub(n).
Publisher
ELSEVIER SCIENCE BV
ISSN
1568-7864
Keyword (Author)
PCNARAD5HLTFSHPRHSomatic hypermutationTranslesion synthesis
Keyword
CELL NUCLEAR ANTIGENDNA-POLYMERASE-ETAIMMUNOGLOBULIN GENE HYPERMUTATIONPOSTREPLICATION REPAIR PATHWAYCLASS-SWITCH RECOMBINATIONSACCHAROMYCES-CEREVISIAETRANSLESION SYNTHESISUBIQUITIN LIGASEGENOMIC INSTABILITYDAMAGE

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