نتایج جستجو برای: rad51 protein

تعداد نتایج: 1236329  

Journal: :Nucleic Acids Research 2006
Mahmud K. K. Shivji Owen R. Davies Jane M. Savill Debbie L. Bates Luca Pellegrini Ashok R. Venkitaraman

Human BRCA2, a breast and ovarian cancer suppressor, binds to the DNA recombinase RAD51 through eight conserved BRC repeats, motifs of approximately 30 residues, dispersed across a large region of the protein. BRCA2 is essential for homologous recombination in vivo, but isolated BRC repeat peptides can prevent the assembly of RAD51 into active nucleoprotein filaments in vitro, suggesting a mode...

Journal: :ESMO open 2023

50% HGSOC patients harbour defects in homologous recombination repair (HR), where there are many proteins involved eg. BRCA. Mutations BRCA genes (BRCAm), affect ∼15% of the population. RAD51 is another key protein HR, binding to broken strands, forming nucleoprotein filaments facilitate repair. This process can be identified via foci, subnuclear complexes which viewed microscopically. overexpr...

Journal: :Proceedings of the National Academy of Sciences of the United States of America 2009
Anna Reymer Karolin Frykholm Katsumi Morimatsu Masayuki Takahashi Bengt Nordén

To get mechanistic insight into the DNA strand-exchange reaction of homologous recombination, we solved a filament structure of a human Rad51 protein, combining molecular modeling with experimental data. We build our structure on reported structures for central and N-terminal parts of pure (uncomplexed) Rad51 protein by aid of linear dichroism spectroscopy, providing angular orientations of sub...

2010
R. Luoto Alice X. Meng Amanda R. Wasylishen Helen Zhao Carla L. Coackley Robert G. Bristow

ownloade C regulates a myriad of genes controlling cell proliferation, metabolism, differentiation, and apoptosis. lso controls the expression of DNA double-strand break (DSB) repair genes and therefore may be a ial target for anticancer therapy to sensitize cancer cells to DNA damage or prevent genetic instability. report, we studied whether MYC binds to DSB repair gene promoters and modulates...

Journal: :Journal of Biological Chemistry 2008

Journal: :Nucleic acids research 1997
S Buchhop M K Gibson X W Wang P Wagner H W Stürzbecher C C Harris

p53 is thought to function in the maintenance of genomic stability by modulating transcription and interacting with cellular proteins to influence the cell cycle, DNA repair and apoptosis. p53 mutations occur in >50% of human cancers, and cells which lack wild type p53 accumulate karyotypic abnormalities such as amplifications, deletions, inversions and translocations. We propose that p53 hinde...

Journal: :Journal of cell science 2013
Hiroki Shima Hidekazu Suzuki Jiying Sun Kazuteru Kono Lin Shi Aiko Kinomura Yasunori Horikoshi Tsuyoshi Ikura Masae Ikura Roland Kanaar Kazuhiko Igarashi Hisato Saitoh Hitoshi Kurumizaka Satoshi Tashiro

Genetic information encoded in chromosomal DNA is challenged by intrinsic and exogenous sources of DNA damage. DNA double-strand breaks (DSBs) are extremely dangerous DNA lesions. RAD51 plays a central role in homologous DSB repair, by facilitating the recombination of damaged DNA with intact DNA in eukaryotes. RAD51 accumulates at sites containing DNA damage to form nuclear foci. However, the ...

Journal: :Proceedings of the National Academy of Sciences of the United States of America 2013
Tohru Miura Takehiko Shibata Kohji Kusano

DNA damage alone or DNA replication fork arrest at damaged sites may induce DNA double-strand breaks and initiate homologous recombination. This event can result in a crossover with a homologous chromosome, causing loss of heterozygosity along the chromosome. It is known that Srs2 acts as an antirecombinase at the replication fork: it is recruited by the SUMO (a small ubiquitin-related modifier...

Journal: :Molecular and cellular biology 2002
Yannick Saintigny Kate Makienko Cristina Swanson Mary J Emond Raymond J Monnat

Werner syndrome (WRN) is an uncommon autosomal recessive disease whose phenotype includes features of premature aging, genetic instability, and an elevated risk of cancer. We used three different experimental strategies to show that WRN cellular phenotypes of limited cell division potential, DNA damage hypersensitivity, and defective homologous recombination (HR) are interrelated. WRN cell surv...

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