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Functions of PARylation in DNA Damage Repair Pathways 被引量:3

Functions of PARylation in DNA Damage Repair Pathways
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摘要 Protein poly ADP-ribosylation(PARylation) is a widespread post-translational modification at DNA lesions,which is catalyzed by poly(ADP-ribose) polymerases(PARPs).This modification regulates a number of biological processes including chromatin reorganization,DNA damage response(DDR),transcriptional regulation,apoptosis,and mitosis.PARP1,functioning as a DNA damage sensor,can be activated by DNA lesions,forming PAR chains that serve as a docking platform for DNA repair factors with high biochemical complexity.Here,we highlight molecular insights into PARylation recognition,the expanding role of PARylation in DDR pathways,and the functional interaction between PARylation and ubiquitination,which will offer us a better understanding of the biological roles of this unique post-translational modification. Protein poly ADP-ribosylation(PARylation) is a widespread post-translational modification at DNA lesions,which is catalyzed by poly(ADP-ribose) polymerases(PARPs).This modification regulates a number of biological processes including chromatin reorganization,DNA damage response(DDR),transcriptional regulation,apoptosis,and mitosis.PARP1,functioning as a DNA damage sensor,can be activated by DNA lesions,forming PAR chains that serve as a docking platform for DNA repair factors with high biochemical complexity.Here,we highlight molecular insights into PARylation recognition,the expanding role of PARylation in DDR pathways,and the functional interaction between PARylation and ubiquitination,which will offer us a better understanding of the biological roles of this unique post-translational modification.
出处 《Genomics, Proteomics & Bioinformatics》 SCIE CAS CSCD 2016年第3期131-139,共9页 基因组蛋白质组与生物信息学报(英文版)
基金 funded by the National Institutes of Health of the United States(Grant Nos.CA132755,CA187209,and GM108647)
关键词 Poly ADP-ribosylation PARPs DNA damage response PAR-binding modules Ubiquitination Poly ADP-ribosylation PARPs DNA damage response PAR-binding modules Ubiquitination
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