The structural and functional characterization of human RecQ4 reveals insights into its helicase mechanism

被引:0
|
作者
Sebastian Kaiser
Florian Sauer
Caroline Kisker
机构
[1] Rudolf-Virchow-Center for Experimental Biomedicine,
[2] Institute of Structural Biology,undefined
来源
关键词
D O I
暂无
中图分类号
学科分类号
摘要
RecQ4 is a member of the RecQ helicase family, an evolutionarily conserved class of enzymes, dedicated to preserving genomic integrity by operating in telomere maintenance, DNA repair and replication. While reduced RecQ4 activity is associated with cancer predisposition and premature aging, RecQ4 upregulation is related to carcinogenesis and metastasis. Within the RecQ family, RecQ4 assumes an exceptional position, lacking several characteristic RecQ domains. Here we present the crystal structure of human RecQ4, encompassing the conserved ATPase core and a novel C-terminal domain that lacks resemblance to the RQC domain observed in other RecQ helicases. The new domain features a zinc-binding site and two distinct types of winged-helix domains, which are not involved in canonical DNA binding or helicase activity. Based on our structural and functional analysis, we propose that RecQ4 exerts a helicase mechanism, which may be more closely related to bacterial RecQ helicases than to its human family members.
引用
收藏
相关论文
共 50 条
  • [1] The structural and functional characterization of human RecQ4 reveals insights into its helicase mechanism
    Kaiser, Sebastian
    Sauer, Florian
    Kisker, Caroline
    NATURE COMMUNICATIONS, 2017, 8
  • [2] RecQ4: the second replicative helicase?
    Capp, Christopher
    Wu, Jianhong
    Hsieh, Tao-shih
    CRITICAL REVIEWS IN BIOCHEMISTRY AND MOLECULAR BIOLOGY, 2010, 45 (03) : 233 - 242
  • [3] The Human RecQ4 Helicase Contains a Functional RecQ C-terminal Region (RQC) That Is Essential for Activity
    Mojumdar, Aditya
    De March, Matteo
    Marino, Francesca
    Onesti, Silvia
    JOURNAL OF BIOLOGICAL CHEMISTRY, 2017, 292 (10) : 4176 - 4184
  • [4] Yeast Hrq1 shares structural and functional homology with the disease-linked human RecQ4 helicase
    Rogers, Cody M.
    Wang, Joseph Che-Yen
    Noguchi, Hiroki
    Imasaki, Tsuyoshi
    Takagi, Yuichiro
    Bochman, Matthew L.
    NUCLEIC ACIDS RESEARCH, 2017, 45 (09) : 5217 - 5230
  • [5] Tumor suppressor p53 represses transcription of RECQ4 helicase
    Sagar Sengupta
    Akira Shimamoto
    Minori Koshiji
    Remy Pedeux
    Marek Rusin
    Elisa A Spillare
    Jiang Cheng Shen
    L Eric Huang
    Noralane M Lindor
    Yasuhiro Furuichi
    Curtis C Harris
    Oncogene, 2005, 24 : 1738 - 1748
  • [6] Tumor suppressor p53 represses transcription of RECQ4 helicase
    Sengupta, S
    Shimamoto, A
    Koshiji, M
    Pedeux, R
    Rusin, M
    Spillare, EA
    Shen, JC
    Huang, LE
    Lindor, NM
    Furuichi, Y
    Harris, CC
    ONCOGENE, 2005, 24 (10) : 1738 - 1748
  • [7] Insights into the RecQ helicase mechanism revealed by the structure of the helicase domain of human RECQL5
    Newman, Joseph A.
    Aitkenhead, Hazel
    Savitsky, Pavel
    Gileadi, Opher
    NUCLEIC ACIDS RESEARCH, 2017, 45 (07) : 4231 - 4243
  • [8] Conserved helicase domain of human RecQ4 is required for strand annealing-independent DNA unwinding
    Rossi, Marie L.
    Ghosh, Avik K.
    Kulikowicz, Tomasz
    Croteau, Deborah L.
    Bohr, Vilhelm A.
    DNA REPAIR, 2010, 9 (07) : 796 - 804
  • [9] Hrq1, a homolog of the human RecQ4 helicase, acts catalytically and structurally to promote genome integrity
    Bochman, Matthew
    van Kessel, Katherine
    Paeschke, Katrin
    FASEB JOURNAL, 2014, 28 (01):
  • [10] Recognition and coacervation of G-quadruplexes by a multifunctional disordered region in RECQ4 helicase
    Papageorgiou, Anna C.
    Pospisilova, Michaela
    Cibulka, Jakub
    Ashraf, Raghib
    Waudby, Christopher A.
    Kaderavek, Pavel
    Maroz, Volha
    Kubicek, Karel
    Prokop, Zbynek
    Krejci, Lumir
    Tripsianes, Konstantinos
    NATURE COMMUNICATIONS, 2023, 14 (01)