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Resection of DNA double-strand breaks activates Mre11- Rad50- Nbs1- and Rad9- Hus1- Rad1-dependent mechanisms that redundantly promote ATR checkpoint activation and end processing in Xenopus egg extracts. , Tatsukawa K, Sakamoto R, Kawasoe Y, Kubota Y, Tsurimoto T, Takahashi TS, Ohashi E., Nucleic Acids Res. April 12, 2024; 52 (6): 3146-3163.
MRN-dependent and independent pathways for recruitment of TOPBP1 to DNA double-strand breaks. , Montales K, Ruis K, Lindsay H , Michael WM., PLoS One. August 2, 2022; 17 (8): e0271905.
Identification of SCN5a p.C335R Variant in a Large Family with Dilated Cardiomyopathy and Conduction Disease. , Sedaghat-Hamedani F, Rebs S, El-Battrawy I, Chasan S, Krause T, Haas J, Zhong R, Liao Z, Xu Q, Zhou X , Akin I, Zitron E, Frey N, Streckfuss-Bömeke K, Kayvanpour E., Int J Mol Sci. November 30, 2021; 22 (23):
Conservation and divergence of protein pathways in the vertebrate heart. , Federspiel JD, Tandon P , Wilczewski CM, Wasson L, Herring LE, Venkatesh SS, Cristea IM, Conlon FL ., PLoS Biol. September 6, 2019; 17 (9): e3000437.
Mdc1 modulates the interaction between TopBP1 and the MRN complex during DNA damage checkpoint responses. , Choi SH, Yoo HY., Biochem Biophys Res Commun. October 7, 2016; 479 (1): 5-11.
MRN, CtIP, and BRCA1 mediate repair of topoisomerase II-DNA adducts. , Aparicio T , Baer R, Gottesman M, Gautier J ., J Cell Biol. February 15, 2016; 212 (4): 399-408.
MCM8-9 complex promotes resection of double-strand break ends by MRE11- RAD50- NBS1 complex. , Lee KY, Im JS, Shibata E, Park J , Handa N, Kowalczykowski SC, Dutta A ., Nat Commun. July 28, 2015; 6 7744.
The Mre11- Rad50- Nbs1 (MRN) complex has a specific role in the activation of Chk1 in response to stalled replication forks. , Lee J , Dunphy WG ., Mol Biol Cell. May 1, 2013; 24 (9): 1343-53.
A role for the MRN complex in ATR activation via TOPBP1 recruitment. , Duursma AM, Driscoll R, Elias JE, Cimprich KA., Mol Cell. April 11, 2013; 50 (1): 116-22.
The MRN- CtIP pathway is required for metaphase chromosome alignment. , Rozier L, Guo Y, Peterson S, Sato M, Baer R, Gautier J , Mao Y., Mol Cell. March 28, 2013; 49 (6): 1097-107.
Analysis of MRE11's function in the 5'-->3' processing of DNA double-strand breaks. , Liao S, Guay C, Toczylowski T, Yan H., Nucleic Acids Res. May 1, 2012; 40 (10): 4496-506.
Role for Rif1 in the checkpoint response to damaged DNA in Xenopus egg extracts. , Kumar S , Yoo HY, Kumagai A , Shevchenko A, Shevchenko A, Dunphy WG ., Cell Cycle. March 15, 2012; 11 (6): 1183-94.
CtIP interacts with TopBP1 and Nbs1 in the response to double-stranded DNA breaks (DSBs) in Xenopus egg extracts. , Ramírez-Lugo JS, Yoo HY, Yoon SJ , Dunphy WG ., Cell Cycle. February 1, 2011; 10 (3): 469-80.
The Mre11/ Rad50/ Nbs1 complex functions in resection-based DNA end joining in Xenopus laevis. , Taylor EM, Cecillon SM, Bonis A, Chapman JR, Povirk LF, Lindsay HD ., Nucleic Acids Res. January 1, 2010; 38 (2): 441-54.
CtIP links DNA double-strand break sensing to resection. , You Z, Shi LZ, Zhu Q, Wu P, Zhang YW , Basilio A, Tonnu N, Verma IM, Berns MW, Hunter T., Mol Cell. December 25, 2009; 36 (6): 954-69.
PIKK-dependent phosphorylation of Mre11 induces MRN complex inactivation by disassembly from chromatin. , Di Virgilio M, Ying CY, Gautier J ., DNA Repair (Amst). November 2, 2009; 8 (11): 1311-20.
The Mre11- Rad50- Nbs1 complex mediates activation of TopBP1 by ATM. , Yoo HY, Kumagai A , Shevchenko A, Shevchenko A, Dunphy WG ., Mol Biol Cell. May 1, 2009; 20 (9): 2351-60.
Structure of a second BRCT domain identified in the nijmegen breakage syndrome protein Nbs1 and its function in an MDC1-dependent localization of Nbs1 to DNA damage sites. , Xu C, Wu L, Cui G, Botuyan MV, Chen J , Mer G., J Mol Biol. August 29, 2008; 381 (2): 361-72.
Mre11- Rad50- Nbs1-dependent processing of DNA breaks generates oligonucleotides that stimulate ATM activity. , Jazayeri A, Balestrini A, Garner E, Haber JE, Costanzo V., EMBO J. July 23, 2008; 27 (14): 1953-62.
A forward chemical genetic screen reveals an inhibitor of the Mre11- Rad50- Nbs1 complex. , Dupré A , Boyer-Chatenet L, Sattler RM, Modi AP, Lee JH , Nicolette ML, Kopelovich L, Jasin M, Baer R, Paull TT, Gautier J ., Nat Chem Biol. February 1, 2008; 4 (2): 119-25.
Telomere capping and cellular checkpoints: clues from fruit flies. , Ciapponi L, Cenci G., Cytogenet Genome Res. January 1, 2008; 122 (3-4): 365-73.
Rad50 adenylate kinase activity regulates DNA tethering by Mre11/ Rad50 complexes. , Bhaskara V, Dupré A , Lengsfeld B, Hopkins BB, Chan A, Lee JH , Zhang X, Gautier J , Zakian V, Paull TT., Mol Cell. March 9, 2007; 25 (5): 647-61.
Two-step activation of ATM by DNA and the Mre11- Rad50- Nbs1 complex. , Dupré A , Boyer-Chatenet L, Gautier J ., Nat Struct Mol Biol. May 1, 2006; 13 (5): 451-7.
ATM and ATR promote Mre11 dependent restart of collapsed replication forks and prevent accumulation of DNA breaks. , Trenz K, Smith E, Smith S, Costanzo V., EMBO J. April 19, 2006; 25 (8): 1764-74.
Repair of double-strand breaks by nonhomologous end joining in the absence of Mre11. , Di Virgilio M, Gautier J ., J Cell Biol. December 5, 2005; 171 (5): 765-71.
ATM activation and its recruitment to damaged DNA require binding to the C terminus of Nbs1. , You Z, Chahwan C, Bailis J, Hunter T, Russell P., Mol Cell Biol. July 1, 2005; 25 (13): 5363-79.
Condensin and cohesin display different arm conformations with characteristic hinge angles. , Anderson DE, Losada A, Erickson HP, Hirano T., J Cell Biol. February 4, 2002; 156 (3): 419-24.