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Nucleic Acids Research
|
July 26, 2002
An xrcc4 defect or Wortmannin stimulates homologous recombination specifically induced by double-strand breaks in mammalian cells
Fabien Delacôte, Mingguang Han, Thomas D Stamato, et al.
Molecular and Cellular Biology
|
January 30, 2004
Mouse strains with an active H2-Ea meiotic recombination hot spot exhibit increased levels of H2-Ea-specific DNA breaks in testicular germ cells
Jian Qin, Laura L Richardson, Maria Jasin, et al.
Cancer Research
|
March 13, 2002
Gene conversion is strongly induced in human cells by double-strand breaks and is modulated by the expression of BCL-x(L)
Claudia Wiese, Andrew J Pierce, Stacey S Gauny, et al.
Oncogene
|
March 17, 2004
Ablation of PARP-1 does not interfere with the repair of DNA double-strand breaks, but compromises the reactivation of stalled replication forks
Yun-Gui Yang, Ulrich Cortes, Srinivas Patnaik, et al.
Methods (San Diego, Calif.)
|
June 15, 2014
Biallelic targeting of expressed genes in mouse embryonic stem cells using the Cas9 system
Yu Zhang, Fabio Vanoli, Jeannine R LaRocque, et al.
Nature Genetics
|
August 25, 2014
Mouse tetrad analysis provides insights into recombination mechanisms and hotspot evolutionary dynamics
Francesca Cole, Frédéric Baudat, Corinne Grey, et al.
Plos Genetics
|
March 14, 2015
The ATM signaling cascade promotes recombination-dependent pachytene arrest in mouse spermatocytes
Sarai Pacheco, Marina Marcet-Ortega, Julian Lange, et al.
Annual Review of Cancer Biology
|
October 23, 2018
Homology-Directed Repair and the Role of BRCA1, BRCA2, and Related Proteins in Genome Integrity and Cancer
Chun-Chin Chen, Weiran Feng, Pei Xin Lim, et al.
Nature
|
October 18, 2011
ATM controls meiotic double-strand-break formation
Julian Lange, Jing Pan, Francesca Cole, et al.
Cell Cycle (Georgetown, Tex.)
|
August 19, 2017
Genomic and chromatin features shaping meiotic double-strand break formation and repair in mice
Shintaro Yamada, Seoyoung Kim, Sam E Tischfield, et al.
Page
of 17
Search research articles
Search
Showing results (61-70 of 170) with videos related to
Sort By:
Page
of 17
Nucleic Acids Research
|
July 26, 2002
An xrcc4 defect or Wortmannin stimulates homologous recombination specifically induced by double-strand breaks in mammalian cells
Fabien Delacôte, Mingguang Han, Thomas D Stamato, et al.
Molecular and Cellular Biology
|
January 30, 2004
Mouse strains with an active H2-Ea meiotic recombination hot spot exhibit increased levels of H2-Ea-specific DNA breaks in testicular germ cells
Jian Qin, Laura L Richardson, Maria Jasin, et al.
Cancer Research
|
March 13, 2002
Gene conversion is strongly induced in human cells by double-strand breaks and is modulated by the expression of BCL-x(L)
Claudia Wiese, Andrew J Pierce, Stacey S Gauny, et al.
Oncogene
|
March 17, 2004
Ablation of PARP-1 does not interfere with the repair of DNA double-strand breaks, but compromises the reactivation of stalled replication forks
Yun-Gui Yang, Ulrich Cortes, Srinivas Patnaik, et al.
Methods (San Diego, Calif.)
|
June 15, 2014
Biallelic targeting of expressed genes in mouse embryonic stem cells using the Cas9 system
Yu Zhang, Fabio Vanoli, Jeannine R LaRocque, et al.
Nature Genetics
|
August 25, 2014
Mouse tetrad analysis provides insights into recombination mechanisms and hotspot evolutionary dynamics
Francesca Cole, Frédéric Baudat, Corinne Grey, et al.
Plos Genetics
|
March 14, 2015
The ATM signaling cascade promotes recombination-dependent pachytene arrest in mouse spermatocytes
Sarai Pacheco, Marina Marcet-Ortega, Julian Lange, et al.
Annual Review of Cancer Biology
|
October 23, 2018
Homology-Directed Repair and the Role of BRCA1, BRCA2, and Related Proteins in Genome Integrity and Cancer
Chun-Chin Chen, Weiran Feng, Pei Xin Lim, et al.
Nature
|
October 18, 2011
ATM controls meiotic double-strand-break formation
Julian Lange, Jing Pan, Francesca Cole, et al.
Cell Cycle (Georgetown, Tex.)
|
August 19, 2017
Genomic and chromatin features shaping meiotic double-strand break formation and repair in mice
Shintaro Yamada, Seoyoung Kim, Sam E Tischfield, et al.
Page
of 17