Functional Interaction between Poly(ADP-Ribose) Polymerase 2 (PARP-2) and TRF2: PARP Activity Negatively Regulates TRF2

Author:

Dantzer Françoise1,Giraud-Panis Marie-Josèphe2,Jaco Isabel3,Amé Jean-Christophe1,Schultz Inès1,Blasco Maria3,Koering Catherine-Elaine4,Gilson Eric4,Ménissier-de Murcia Josiane1,de Murcia Gilbert1,Schreiber Valérie1

Affiliation:

1. UPR 9003 du Centre National de la Recherche Scientifique, Université Louis Pasteur, Ecole Supérieure de Biotechnologie de Strasbourg, 67412 Illkirch Cedex

2. UPR4301/CNRS, CBM, F-45071 Orléans

3. Department of Immunology and Oncology, National Center of Biotechnology, CSIC, Campus de Cantoblanco, Madrid E-28049, Spain

4. UMR5161/CNRS, ENS de Lyon, F-69364 Lyon, France

Abstract

ABSTRACT The DNA damage-dependent poly(ADP-ribose) polymerase-2 (PARP-2) is, together with PARP-1, an active player of the base excision repair process, thus defining its key role in genome surveillance and protection. Telomeres are specialized DNA-protein structures that protect chromosome ends from being recognized and processed as DNA strand breaks. In mammals, telomere protection depends on the T 2 AG 3 repeat binding protein TRF2, which has been shown to remodel telomeres into large duplex loops (t-loops). In this work we show that PARP-2 physically binds to TRF2 with high affinity. The association of both proteins requires the N-terminal domain of PARP-2 and the myb domain of TRF2. Both partners colocalize at promyelocytic leukemia bodies in immortalized telomerase-negative cells. In addition, our data show that PARP activity regulates the DNA binding activity of TRF2 via both a covalent heteromodification of the dimerization domain of TRF2 and a noncovalent binding of poly(ADP-ribose) to the myb domain of TRF2. PARP-2 −/− primary cells show normal telomere length as well as normal telomerase activity compared to wild-type cells but display a spontaneously increased frequency of chromosome and chromatid breaks and of ends lacking detectable T 2 AG 3 repeats. Altogether, these results suggest a functional role of PARP-2 activity in the maintenance of telomere integrity.

Publisher

American Society for Microbiology

Subject

Cell Biology,Molecular Biology

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