نتایج جستجو برای: dmc1

تعداد نتایج: 335  

2013
Jessica P. Lao Veronica Cloud Chu-Chun Huang Jennifer Grubb Drew Thacker Chih-Ying Lee Michael E. Dresser Neil Hunter Douglas K. Bishop

During meiosis, repair of programmed DNA double-strand breaks (DSBs) by recombination promotes pairing of homologous chromosomes and their connection by crossovers. Two DNA strand-exchange proteins, Rad51 and Dmc1, are required for meiotic recombination in many organisms. Studies in budding yeast imply that Rad51 acts to regulate Dmc1's strand exchange activity, while its own exchange activity ...

2012
Amitabh V. Nimonkar Christopher C. Dombrowski Joseph S. Siino Alicja Z. Stasiak Andrzej Stasiak Stephen C. Kowalczykowski

Background: DNA strand exchange proteins, Dmc1 and Rad51, and translocases, Tid1 and Rad54, function in DNA break repair during meiosis. Results: We biochemically demonstrate that Dmc1 and Rad51 are specifically stimulated by Tid1 and Rad54, respectively. Conclusions: Dmc1-Tid1 and Rad51-Rad54 represent functional pairs for DNA pairing and joint molecule formation. Significance: The separate an...

Journal: :Journal of molecular biology 2001
S Yang X Yu E M Seitz S C Kowalczykowski E H Egelman

The Escherichia coli RecA protein has been a model for understanding homologous eukaryotic recombination proteins such as Rad51. The active form of both RecA and Rad51 appear to be helical filaments polymerized on DNA, in which an unusual helical structure is induced in the DNA. Surprisingly, the human meiosis-specific homolog of RecA, Dmc1, has thus far only been observed to bind DNA as an oct...

Journal: :Genetics and molecular research : GMR 2011
F Etedali B Baghban Kohnehrouz M Valizadeh A Gholizadeh M A Malboobi

The development of meiotic division and associated genetic recombination paved the way for evolutionary changes. However, the secondary and tertiary structure and functional domains of many of the proteins involved in genetic recombination have not been studied in detail. We used the human Dmc1 gene product along with secondary and tertiary domain structures of Escherichia coli RecA protein to ...

Journal: :Proceedings of the National Academy of Sciences of the United States of America 2011
Eloïse Dray Myun Hwa Dunlop Liisa Kauppi Joseph San Filippo Claudia Wiese Miaw-Sheue Tsai Sead Begovic David Schild Maria Jasin Scott Keeney Patrick Sung

Homologous recombination is needed for meiotic chromosome segregation, genome maintenance, and tumor suppression. RAD51AP1 (RAD51 associated protein 1) has been shown to interact with and enhance the recombinase activity of RAD51. Accordingly, genetic ablation of RAD51AP1 leads to enhanced sensitivity to and also chromosome aberrations upon DNA damage, demonstrating a role for RAD51AP1 in mitot...

Journal: :Genes & development 2007
Roberto J Pezza Oleg N Voloshin Filip Vanevski R Daniel Camerini-Otero

Meiotic recombination between homologous chromosomes ensures their proper segregation at the first division of meiosis and is the main force shaping genetic variation of genomes. The HOP2 and MND1 genes are essential for this recombination: Their disruption results in severe defects in homologous chromosome synapsis and an early-stage failure in meiotic recombination. The mouse Hop2 and Mnd1 pr...

Journal: :PLoS Biology 2007
Laura A Bannister Roberto J Pezza Janet R Donaldson Dirk G de Rooij Kerry J Schimenti R. Daniel Camerini-Otero John C Schimenti

DMC1 is a meiosis-specific homolog of bacterial RecA and eukaryotic RAD51 that can catalyze homologous DNA strand invasion and D-loop formation in vitro. DMC1-deficient mice and yeast are sterile due to defective meiotic recombination and chromosome synapsis. The authors identified a male dominant sterile allele of Dmc1, Dmc1(Mei11), encoding a missense mutation in the L2 DNA binding domain tha...

Journal: :Proceedings of the National Academy of Sciences of the United States of America 2001
R C Gupta E Golub B Bi C M Radding

Human Dmc1 protein, a meiosis-specific homolog of Escherichia coli RecA protein, has previously been shown to promote DNA homologous pairing and strand-exchange reactions that are qualitatively similar to those of RecA protein and Rad51. Human and yeast Rad51 proteins each form a nucleoprotein filament that is very similar to the filament formed by RecA protein. However, recent studies failed t...

2008
Sean D. Sheridan Xiong Yu Robyn Roth John E. Heuser Michael G. Sehorn Patrick Sung Edward H. Egelman Douglas K. Bishop

The eukaryotic RecA homologs Rad51 and Dmc1 are essential for strand exchange between homologous chromosomes during meiosis. All members of the RecA family of recombinases polymerize on DNA to form helical nucleoprotein filaments, which is the active form of the protein. Here we compare the filament structures of the Rad51 and Dmc1 proteins from both human and budding yeast. Previous studies of...

2015
M. Scott Brown Jennifer Grubb Annie Zhang Michael J. Rust Douglas K. Bishop Michael Lichten

The Eukaryotic RecA-like proteins Rad51 and Dmc1 cooperate during meiosis to promote recombination between homologous chromosomes by repairing programmed DNA double strand breaks (DSBs). Previous studies showed that Rad51 and Dmc1 form partially overlapping co-foci. Here we show these Rad51-Dmc1 co-foci are often arranged in pairs separated by distances of up to 400 nm. Paired co-foci remain pr...

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