4.7 Article

Proteomic Investigation of Phosphorylation Sites in Poly(ADP-ribose) Polymerase-1 and Poly(ADP-ribose) Glycohydrolase

期刊

JOURNAL OF PROTEOME RESEARCH
卷 8, 期 2, 页码 1014-1029

出版社

AMER CHEMICAL SOC
DOI: 10.1021/pr800810n

关键词

PARP; PARG; Mass spectrometry; Phosphorylation

资金

  1. Genome Canada
  2. Genome Quebec
  3. Genome Prairie
  4. Genome Alberta
  5. Fonds de la Recherche en Sante du Quebec (FRSQ)
  6. Canadian Institutes of Health Research (CIHR)
  7. Alberta Heritage Foundation
  8. Institut National du Cancer (INCa)
  9. Ligure Nationale Contre le Cancer (LNCC)

向作者/读者索取更多资源

Phosphorylation is a very common post-translational modification event known to modulate a wide range of biological responses. Beyond the regulation of protein activity, the interrelation of phosphorylation with other post-translational mechanisms is responsible for the control of diverse signaling pathways. Several observations suggest that phosphorylation of poly(ADP-ribose) polymerase-1 (PARP-1) regulates its activity. There is also accumulating evidence to suggest the establishment of phosphorylation-dependent assembly of PARP-1-associated multiprotein complexes. Although it is relatively straightforward to demonstrate phosphorylation of a defined target, identification of the actual amino acids involved still represents a technical challenge for many laboratories. With the use of a combination of bioinformatics-based predictions tools for generic and kinase-specific phosphorylation sites, in vitro phosphorylation assays and mass spectrometry analysis, we investigated the phosphorylation profile of PARP-1 and poly(ADP-ribose) glycohydrolase (PARG), two major enzymes responsible for poly(ADP-ribose) turnover. Mass spectrometry analysis revealed the phosphorylation of several serine/threonine residues within important regulatory domains and motifs of both enzymes. With the use of in vivo microirradiation-induced DNA damage, we show that altered phosphorylation at specific sites can modify the dynamics of assembly and disassembly of PARP-1 at sites of DNA damage. By documenting and annotating a collection of known and newly identified phosphorylation sites, this targeted proteomics study significantly advances our understanding of the roles of phosphorylation in the regulation of PARP-1 and PARG.,

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