Rad51 protein stimulates the branch migration activity of Rad54 protein

被引:20
|
作者
Rossi, Matthew J. [1 ]
Mazin, Alexander V. [1 ]
机构
[1] Drexel Univ, Coll Med, Dept Biochem & Mol Biol, Philadelphia, PA 19102 USA
基金
美国国家卫生研究院;
关键词
D O I
10.1074/jbc.M800839200
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The Rad51 and Rad54 proteins play important roles during homologous recombination in eukaryotes. Rad51 forms a nucleoprotein filament on single-stranded DNA and performs the initial steps of double strand break repair. Rad54 belongs to the Swi2/Snf2 family of ATP-dependent DNA translocases. We previously showed that Rad54 promotes branch migration of Holliday junctions. Here we find that human Rad51 (hRad51) significantly stimulates the branch migration activity of hRad54. The stimulation appears to be evolutionarily conserved, as yeast Rad51 also stimulates the branch migration activity of yeast Rad54. We further investigated the mechanism of this stimulation. Our results demonstrate that the stimulation of hRad54-promoted branch migration by hRad51 is driven by specific protein-protein interactions, and the active form of the hRad51 filament is more stimulatory than the inactive one. The current results support the hypothesis that the hRad51 conformation state has a strong effect on interaction with hRad54 and ultimately on the function of hRad54 in homologous recombination.
引用
收藏
页码:24698 / 24706
页数:9
相关论文
共 50 条
  • [41] A chemical compound that stimulates the human homologous recombination protein RAD51
    Jayathilaka, Krishanthi
    Sheridan, Sean D.
    Bold, Tyler D.
    Bochenska, Katarzyna
    Logan, Hillary L.
    Weichselbaum, Ralph R.
    Bishop, Douglas K.
    Connell, Philip P.
    PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2008, 105 (41) : 15848 - 15853
  • [42] Molecular Cloning of Pig Rad51, Rad52, and Rad54 Genes, Which Are Involved in Homologous Recombination Machinery
    Matsunami, K.
    Otsuka, H.
    Xu, H.
    Firdawes, S.
    Yamamoto, A.
    Ishimaru, A.
    Fukuzawa, M.
    Miyagawa, S.
    TRANSPLANTATION PROCEEDINGS, 2008, 40 (08) : 2776 - 2778
  • [43] The bromodomain containing protein BRD-9 orchestrates RAD51–RAD54 complex formation and regulates homologous recombination-mediated repair
    Qin Zhou
    Jinzhou Huang
    Chao Zhang
    Fei Zhao
    Wootae Kim
    Xinyi Tu
    Yong Zhang
    Somaira Nowsheen
    Qian Zhu
    Min Deng
    Yuping Chen
    Bo Qin
    Kuntian Luo
    Baohua Liu
    Zhenkun Lou
    Robert W. Mutter
    Jian Yuan
    Nature Communications, 11
  • [44] RAD54 promotes alternative lengthening of telomeres by mediating branch migration
    Mason-Osann, Emily
    Terranova, Katherine
    Lupo, Nicholas
    Lock, Ying Jie
    Carson, Lisa M.
    Flynn, Rachel Litman
    EMBO REPORTS, 2020, 21 (06)
  • [45] The Rad52-Rad59 complex interacts with Rad51 and replication protein A
    Davis, AP
    Symington, LS
    DNA REPAIR, 2003, 2 (10) : 1127 - 1134
  • [46] Characterization of strand exchange activity of yeast Rad51 protein
    Namsaraev, E
    Berg, P
    MOLECULAR AND CELLULAR BIOLOGY, 1997, 17 (09) : 5359 - 5368
  • [47] Mouse Rad54 affects DNA conformation and DNA-damage-induced Rad51 foci formation
    Tan, TLR
    Essers, J
    Citterio, E
    Swagemakers, SMA
    de Wit, J
    Benson, FE
    Hoeijmakers, JHJ
    Kanaar, R
    CURRENT BIOLOGY, 1999, 9 (06) : 325 - 328
  • [48] Conformational changes modulate the activity of human RAD51 protein
    Liu, YL
    Stasiak, AZ
    Mcllwraith, MJ
    Stasiak, A
    West, SC
    JOURNAL OF MOLECULAR BIOLOGY, 2004, 337 (04) : 817 - 827
  • [49] An archaeal Rad54 protein remodels DNA and stimulates DNA strand exchange by RadA
    Haseltine, Cynthia A.
    Kowalczykowski, Stephen C.
    NUCLEIC ACIDS RESEARCH, 2009, 37 (08) : 2757 - 2770
  • [50] Nap1 stimulates homologous recombination by RAD51 and RAD54 in higher-ordered chromatin containing histone H1
    Shinichi Machida
    Motoki Takaku
    Masae Ikura
    Jiying Sun
    Hidekazu Suzuki
    Wataru Kobayashi
    Aiko Kinomura
    Akihisa Osakabe
    Hiroaki Tachiwana
    Yasunori Horikoshi
    Atsuhiko Fukuto
    Ryo Matsuda
    Kiyoe Ura
    Satoshi Tashiro
    Tsuyoshi Ikura
    Hitoshi Kurumizaka
    Scientific Reports, 4