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PMID: 21757780 Published · ppublish English

ATM protein-dependent phosphorylation of Rad50 protein regulates DNA repair and cell cycle control.

The Journal of biological chemistry ·Vol. 286 ·No. 36 ·2011-12-05

Gatei Magtouf, Jakob Burkhard, Chen Philip, Kijas Amanda W, Becherel Olivier J, Gueven Nuri, Birrell Geoff, Lee Ji-Hoon, Paull Tanya T, Lerenthal Yaniv, Fazry Shazrul, Taucher-Scholz Gisela, Kalb Reinhard, Schindler Detlev, Waltes Regina, Dörk Thilo, Lavin Martin F

Abstract

The Mre11/Rad50/NBN complex plays a central role in coordinating the cellular response to DNA double-strand breaks. The importance of Rad50 in that response is evident from the recent description of a patient with Rad50 deficiency characterized by chromosomal instability and defective ATM-dependent signaling. We report here that ATM (defective in ataxia-telangiectasia) phosphorylates Rad50 at a single site (Ser-635) that plays an important adaptor role in signaling for cell cycle control and DNA repair. Although a Rad50 phosphosite-specific mutant (S635G) supported normal activation of ATM in Rad50-deficient cells, it was defective in correcting DNA damage-induced signaling through the ATM-dependent substrate SMC1. This mutant also failed to correct radiosensitivity, DNA double-strand break repair, and an S-phase checkpoint defect in Rad50-deficient cells. This was not due to disruption of the Mre11/Rad50/NBN complex revealing for the first time that phosphorylation of Rad50 plays a key regulatory role as an adaptor for specific ATM-dependent downstream signaling through SMC1 for DNA repair and cell cycle checkpoint control in the maintenance of genome integrity.

Article Info
Journal
The Journal of biological chemistry
Abbr.
J Biol Chem
Published
2011-12-05
Indexed
2011-09-05
Updated
2016-10-19
Language
English
Country/Region
United States
NLM ID
2985121R
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