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   Plasticity of BRCA2 function in homologous recombination: Genetic interactions of the PALB2 and DNA binding domains  
   
نویسنده siaud n. ,barbera m.a. ,egashira a. ,lam i. ,christ n. ,schlacher k. ,xia b. ,jasin m.
منبع plos genetics - 2011 - دوره : 7 - شماره : 12
چکیده    The breast cancer suppressor brca2 is essential for the maintenance of genomic integrity in mammalian cells through its role in dna repair by homologous recombination (hr). human brca2 is 3,418 amino acids and is comprised of multiple domains that interact with the rad51 recombinase and other proteins as well as with dna. to gain insight into the cellular function of brca2 in hr,we created fusions consisting of various brca2 domains and also introduced mutations into these domains to disrupt specific protein and dna interactions. we find that a brca2 fusion peptide deleted for the dna binding domain and active in hr is completely dependent on interaction with the palb2 tumor suppressor for activity. conversely,a brca2 fusion peptide deleted for the palb2 binding domain is dependent on an intact dna binding domain,providing a role for this conserved domain in vivo; mutagenesis suggests that both single-stranded and double-stranded dna binding activities in the dna binding domain are required for its activity. given that palb2 itself binds dna,these results suggest alternative mechanisms to deliver rad51 to dna. in addition,the brca2 c terminus contains both rad51-dependent and -independent activities which are essential to hr in some contexts. finally,binding the small peptide dss1 is essential for activity when its binding domain is present,but not when it is absent. our results reveal functional redundancy within the brca2 protein and emphasize the plasticity of this large protein built for optimal hr function in mammalian cells. the occurrence of disease-causing mutations throughout brca2 suggests sub-optimal hr from a variety of domain modulations. © 2011 siaud et al.
آدرس developmental biology program,memorial sloan-kettering cancer center,new york,ny,united states,institut de biologie des plantes,bâtiment 630,cnrs umr 8618,université paris 11 sud,orsay, France, developmental biology program,memorial sloan-kettering cancer center,new york,ny, United States, developmental biology program,memorial sloan-kettering cancer center,new york,ny,united states,department of surgery and science,graduate school of kyushu university,fukuoka, Japan, developmental biology program,memorial sloan-kettering cancer center,new york,ny,united states,louis v. gerstner sloan-kettering graduate school of biomedical sciences,memorial sloan-kettering cancer center,new york,ny, United States, developmental biology program,memorial sloan-kettering cancer center,new york,ny,united states,medimmune,cambridge, United Kingdom, developmental biology program,memorial sloan-kettering cancer center,new york,ny, United States, department of radiation oncology,the cancer institute of new jersey,robert wood johnson medical school,university of medicine and dentistry of new jersey,new brunswick,nj, United States, developmental biology program,memorial sloan-kettering cancer center,new york,ny,united states,louis v. gerstner sloan-kettering graduate school of biomedical sciences,memorial sloan-kettering cancer center,new york,ny, United States
 
     
   
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