4.7 Article

Comprehensive ADP-ribosylome analysis identifies tyrosine as an ADP-ribose acceptor site

期刊

EMBO REPORTS
卷 19, 期 8, 页码 -

出版社

WILEY
DOI: 10.15252/embr.201745310

关键词

ADP-ribosylation; ARTD1; PARP1; genotoxic stress; HPF1; tyrosine ADP-ribosylation

资金

  1. Forschungskredit from the University of Zurich [FK-15-052]
  2. Swiss Cancer Research Foundation [KFS-3740-08-2015-R]
  3. Canton of Zurich
  4. Swiss National Science Foundation [SNF 310030_157019, 31003A_176177]

向作者/读者索取更多资源

Despite recent mass spectrometry (MS)-based breakthroughs, comprehensive ADP-ribose (ADPr)-acceptor amino acid identification and ADPr-site localization remain challenging. Here, we report the establishment of an unbiased, multistep ADP-ribosylome data analysis workflow that led to the identification of tyrosine as a novel ARTD1/PARP1-dependent in vivo ADPr-acceptor amino acid. MS analyses of in vitro ADP-ribosylated proteins confirmed tyrosine as an ADPr-acceptor amino acid in RPS3A (Y155) and HPF1 (Y238) and demonstrated that trans-modification of RPS3A is dependent on HPF1. We provide an ADPr-site Localization Spectra Database (ADPr-LSD), which contains 288 high-quality ADPr-modified peptide spectra, to serve as ADPr spectral references for correct ADPr-site localizations.

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