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Exploring the link between MORF4L1 and risk of breast cancer.


ABSTRACT: INTRODUCTION:Proteins encoded by Fanconi anemia (FA) and/or breast cancer (BrCa) susceptibility genes cooperate in a common DNA damage repair signaling pathway. To gain deeper insight into this pathway and its influence on cancer risk, we searched for novel components through protein physical interaction screens. METHODS:Protein physical interactions were screened using the yeast two-hybrid system. Co-affinity purifications and endogenous co-immunoprecipitation assays were performed to corroborate interactions. Biochemical and functional assays in human, mouse and Caenorhabditis elegans models were carried out to characterize pathway components. Thirteen FANCD2-monoubiquitinylation-positive FA cell lines excluded for genetic defects in the downstream pathway components and 300 familial BrCa patients negative for BRCA1/2 mutations were analyzed for genetic mutations. Common genetic variants were genotyped in 9,573 BRCA1/2 mutation carriers for associations with BrCa risk. RESULTS:A previously identified co-purifying protein with PALB2 was identified, MRG15 (MORF4L1 gene). Results in human, mouse and C. elegans models delineate molecular and functional relationships with BRCA2, PALB2, RAD51 and RPA1 that suggest a role for MRG15 in the repair of DNA double-strand breaks. Mrg15-deficient murine embryonic fibroblasts showed moderate sensitivity to ?-irradiation relative to controls and reduced formation of Rad51 nuclear foci. Examination of mutants of MRG15 and BRCA2 C. elegans orthologs revealed phenocopy by accumulation of RPA-1 (human RPA1) nuclear foci and aberrant chromosomal compactions in meiotic cells. However, no alterations or mutations were identified for MRG15/MORF4L1 in unclassified FA patients and BrCa familial cases. Finally, no significant associations between common MORF4L1 variants and BrCa risk for BRCA1 or BRCA2 mutation carriers were identified: rs7164529, Ptrend = 0.45 and 0.05, P2df = 0.51 and 0.14, respectively; and rs10519219, Ptrend = 0.92 and 0.72, P2df = 0.76 and 0.07, respectively. CONCLUSIONS:While the present study expands on the role of MRG15 in the control of genomic stability, weak associations cannot be ruled out for potential low-penetrance variants at MORF4L1 and BrCa risk among BRCA2 mutation carriers.

SUBMITTER: Martrat G 

PROVIDER: S-EPMC3219203 | biostudies-literature | 2011 Apr

REPOSITORIES: biostudies-literature

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Exploring the link between MORF4L1 and risk of breast cancer.

Martrat Griselda G   Maxwell Christopher M CM   Tominaga Emiko E   Porta-de-la-Riva Montserrat M   Bonifaci Núria N   Gómez-Baldó Laia L   Bogliolo Massimo M   Lázaro Conxi C   Blanco Ignacio I   Brunet Joan J   Aguilar Helena H   Fernández-Rodríguez Juana J   Seal Sheila S   Renwick Anthony A   Rahman Nazneen N   Kühl Julia J   Neveling Kornelia K   Schindler Detlev D   Ramírez María J MJ   Castellà María M   Hernández Gonzalo G   Easton Douglas F DF   Peock Susan S   Cook Margaret M   Oliver Clare T CT   Frost Debra D   Platte Radka R   Evans D Gareth DG   Lalloo Fiona F   Eeles Rosalind R   Izatt Louise L   Chu Carol C   Davidson Rosemarie R   Ong Kai-Ren KR   Cook Jackie J   Douglas Fiona F   Hodgson Shirley S   Brewer Carole C   Morrison Patrick J PJ   Porteous Mary M   Peterlongo Paolo P   Manoukian Siranoush S   Peissel Bernard B   Zaffaroni Daniela D   Roversi Gaia G   Barile Monica M   Viel Alessandra A   Pasini Barbara B   Ottini Laura L   Putignano Anna Laura AL   Savarese Antonella A   Bernard Loris L   Radice Paolo P   Healey Sue S   Spurdle Amanda A   Chen Xiaoqing X   Beesley Jonathan J   Rookus Matti A MA   Verhoef Senno S   Tilanus-Linthorst Madeleine A MA   Vreeswijk Maaike P MP   Asperen Christi J CJ   Bodmer Danielle D   Ausems Margreet G E M MG   van Os Theo A TA   Blok Marinus J MJ   Meijers-Heijboer Hanne E J HE   Hogervorst Frans B L FB   Goldgar David E DE   Buys Saundra S   John Esther M EM   Miron Alexander A   Southey Melissa M   Daly Mary B MB   Harbst Katja K   Borg Ake A   Rantala Johanna J   Barbany-Bustinza Gisela G   Ehrencrona Hans H   Stenmark-Askmalm Marie M   Kaufman Bella B   Laitman Yael Y   Milgrom Roni R   Friedman Eitan E   Domchek Susan M SM   Nathanson Katherine L KL   Rebbeck Timothy R TR   Johannsson Oskar Thor OT   Couch Fergus J FJ   Wang Xianshu X   Fredericksen Zachary Z   Cuadras Daniel D   Moreno Víctor V   Pientka Friederike K FK   Depping Reinhard R   Caldés Trinidad T   Osorio Ana A   Benítez Javier J   Bueren Juan J   Heikkinen Tuomas T   Nevanlinna Heli H   Hamann Ute U   Torres Diana D   Caligo Maria Adelaide MA   Godwin Andrew K AK   Imyanitov Evgeny N EN   Janavicius Ramunas R   Sinilnikova Olga M OM   Stoppa-Lyonnet Dominique D   Mazoyer Sylvie S   Verny-Pierre Carole C   Castera Laurent L   de Pauw Antoine A   Bignon Yves-Jean YJ   Uhrhammer Nancy N   Peyrat Jean-Philippe JP   Vennin Philippe P   Ferrer Sandra Fert SF   Collonge-Rame Marie-Agnès MA   Mortemousque Isabelle I   McGuffog Lesley L   Chenevix-Trench Georgia G   Pereira-Smith Olivia M OM   Antoniou Antonis C AC   Cerón Julián J   Tominaga Kaoru K   Surrallés Jordi J   Pujana Miguel Angel MA  

Breast cancer research : BCR 20110405 2


<h4>Introduction</h4>Proteins encoded by Fanconi anemia (FA) and/or breast cancer (BrCa) susceptibility genes cooperate in a common DNA damage repair signaling pathway. To gain deeper insight into this pathway and its influence on cancer risk, we searched for novel components through protein physical interaction screens.<h4>Methods</h4>Protein physical interactions were screened using the yeast two-hybrid system. Co-affinity purifications and endogenous co-immunoprecipitation assays were perform  ...[more]

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