CHEN, ling, Kelly TRUJILLO, Stephen VAN KOMEN, Dong ROH, Lumír KREJČÍ, Kevin LEWIS, Mike RESNICK, Patrick SUNG and Alan TOMKINSON. Effect of amino acid substitutions in the rad50 ATP binding domain on DNA double strand break repair in yeast. Journal of Biological Chemistry. Bethesda, USA: Amer. Soc. Biochem. Mol. Biol., 2005, vol. 280, No 4, p. 2620-7, 7 pp. ISSN 0021-9258.
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Basic information
Original name Effect of amino acid substitutions in the rad50 ATP binding domain on DNA double strand break repair in yeast.
Name in Czech Vliv aminokyselinových substitucí v ATP vazebné doméně proteinu Rad50
Authors CHEN, ling (840 United States of America), Kelly TRUJILLO (840 United States of America), Stephen VAN KOMEN (840 United States of America), Dong ROH (410 Republic of Korea), Lumír KREJČÍ (203 Czech Republic, guarantor), Kevin LEWIS (840 United States of America), Mike RESNICK (840 United States of America), Patrick SUNG (840 United States of America) and Alan TOMKINSON (840 United States of America).
Edition Journal of Biological Chemistry, Bethesda, USA, Amer. Soc. Biochem. Mol. Biol. 2005, 0021-9258.
Other information
Original language English
Type of outcome Article in a journal
Field of Study 10600 1.6 Biological sciences
Country of publisher United States of America
Confidentiality degree is not subject to a state or trade secret
WWW URL
Impact factor Impact factor: 5.854
Organization unit Faculty of Science
UT WoS 000226449100031
Keywords in English Rad50; ATPase; repair;
Tags ATPase, Rad50, repair
Tags International impact, Reviewed
Changed by Changed by: doc. Mgr. Lumír Krejčí, Ph.D., učo 18098. Changed: 15/5/2009 22:53.
Abstract
The Saccharomyces cerevisiae Rad50-Mre11-Xrs2 complex plays a central role in the cellular response to DNA double strand breaks. Rad50 has a globular ATPase head domain with a long coiled-coil tail. DNA binding by Rad50 is ATP-dependent and the Rad50-Mre11-Xrs2 complex possesses DNA unwinding and endonuclease activities that are regulated by ATP. Here we have examined the role of the Rad50 Walker type A ATP binding motif in DNA double strand break repair by a combination of genetic and biochemical approaches. Replacement of the conserved lysine residue within the Walker A motif with alanine, glutamate, or arginine results in the same DNA damage sensitivity and homologous recombination defect as the rad50 deletion mutation. The Walker A mutations also cause a deficiency in non-homologous end-joining. As expected, complexes containing the rad50 Walker A mutant proteins are defective in ATPase, ATP-dependent DNA unwinding, and ATP-stimulated endonuclease activities. Although the DNA end-bridging activity of the Rad50-Mre11-Xrs2 complex is ATP-independent, the end-bridging activity of complexes containing the rad50 Walker A mutant proteins is salt-sensitive. These results provide a molecular explanation for the observed in vivo defects of the rad50 Walker mutant strains and reveal a novel ATP-independent function for Rad50 in DNA end-bridging.
Abstract (in Czech)
Vliv ATP na funkci Rad50 proteinu
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