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A systematic analysis of the PARP protein family identifies new functions critical for cell physiology

Author(s)
Vyas, Sejal; Chesarone-Cataldo, Melissa; Todorova, Tanya; Huang, Yun-Han; Chang, Paul
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Abstract
The poly(ADP-ribose) polymerase (PARP) family of proteins use NAD[superscript +] as their substrate to modify acceptor proteins with ADP-ribose modifications. The function of most PARPs under physiological conditions is unknown. Here, to better understand this protein family, we systematically analyse the cell cycle localization of each PARP and of poly(ADP-ribose), a product of PARP activity, then identify the knockdown phenotype of each protein and perform secondary assays to elucidate function. We show that most PARPs are cytoplasmic, identify cell cycle differences in the ratio of nuclear to cytoplasmic poly(ADP-ribose) and identify four phenotypic classes of PARP function. These include the regulation of membrane structures, cell viability, cell division and the actin cytoskeleton. Further analysis of PARP14 shows that it is a component of focal adhesion complexes required for proper cell motility and focal adhesion function. In total, we show that PARP proteins are critical regulators of eukaryotic physiology.
Date issued
2013-08
URI
http://hdl.handle.net/1721.1/96281
Department
Massachusetts Institute of Technology. Department of Biology; Koch Institute for Integrative Cancer Research at MIT
Journal
Nature Communications
Publisher
Nature Publishing Group
Citation
Vyas, Sejal, Melissa Chesarone-Cataldo, Tanya Todorova, Yun-Han Huang, and Paul Chang. “A Systematic Analysis of the PARP Protein Family Identifies New Functions Critical for Cell Physiology.” Nature Communications 4 (August 6, 2013).
Version: Author's final manuscript
ISSN
2041-1723

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