Structural Mechanism of GAF-Regulated σ54 Activators from Aquifex aeolicus

被引:15
作者
Batchelor, Joseph D.
Lee, Peter S.
Wang, Andrew C.
Doucleff, Michaeleen
Wemmer, David E.
机构
[1] Univ Calif Berkeley, Grad Grp Biophys, Berkeley, CA 94720 USA
[2] Univ Calif Berkeley, Dept Chem, Berkeley, CA 94720 USA
[3] Univ Calif Berkeley, Lawrence Berkeley Natl Lab, Phys Biosci Div, Berkeley, CA 94720 USA
基金
美国国家卫生研究院;
关键词
transcriptional activator; sigma-54; enhancer-binding protein; structural activation mechanism; signal transduction; CHROMOPHORE-BINDING DOMAIN; X-RAY-STRUCTURE; CRYSTAL-STRUCTURE; TRANSCRIPTIONAL ACTIVATOR; RECEIVER DOMAIN; CGMP BINDING; AAA+ ATPASE; PHOSPHODIESTERASE; 2A; STATIONARY-PHASE; GLOBAL REGULATOR;
D O I
10.1016/j.jmb.2012.10.017
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 sigma subunits of bacterial RNA polymerase occur in many variant forms and confer promoter specificity to the holopolymerase. Members of the sigma(54) family of a subunits require the action of a 'transcriptional activator' protein to open the promoter and initiate transcription. The activator proteins undergo regulated assembly from inactive dimers to hexamers that are active ATPases. These contact sigma(54) directly and, through ATP hydrolysis, drive a conformational change that enables promoter opening. sigma(54) activators use several different kinds of regulatory domains to respond to a wide variety of intracellular signals. One common regulatory module, the GAF domain, is used by sigma(54) activators to sense small-molecule ligands. The structural basis for GAF domain regulation in sigma(54) activators has not previously been reported. Here, we present crystal structures of GAF regulatory domains for Aquifex aeolicus sigma(54) activators NifA-like homolog (Nlh)2 and Nlh2 in three functional states-an 'open', ATPase-inactive state; a 'closed', ATPase-inactive state; and a 'closed', ligand-bound, ATPase-active state. We also present small-angle X-ray scattering data for Nlh2-linked GAF-ATPase domains in the inactive state. These GAF domain dimers regulate sigma(54) activator proteins by holding the ATPase domains in an inactive dimer conformation. Ligand binding of Nlh1 dramatically remodels the GAF domain dimer interface, disrupting the contacts with the ATPase domains. This mechanism has strong parallels to the response to phosphorylation in some two-component regulated sigma(54) activators. We describe a structural mechanism of GAF-mediated enzyme regulation that appears to be conserved among humans, plants, and bacteria. (C) 2012 Elsevier Ltd. All rights reserved.
引用
收藏
页码:156 / 170
页数:15
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共 86 条
  • [1] PHENIX: a comprehensive Python']Python-based system for macromolecular structure solution
    Adams, Paul D.
    Afonine, Pavel V.
    Bunkoczi, Gabor
    Chen, Vincent B.
    Davis, Ian W.
    Echols, Nathaniel
    Headd, Jeffrey J.
    Hung, Li-Wei
    Kapral, Gary J.
    Grosse-Kunstleve, Ralf W.
    McCoy, Airlie J.
    Moriarty, Nigel W.
    Oeffner, Robert
    Read, Randy J.
    Richardson, David C.
    Richardson, Jane S.
    Terwilliger, Thomas C.
    Zwart, Peter H.
    [J]. ACTA CRYSTALLOGRAPHICA SECTION D-STRUCTURAL BIOLOGY, 2010, 66 : 213 - 221
  • [2] Regulatory potential, phyletic distribution and evolution of ancient, intracellular small-molecule-binding domains
    Anantharaman, V
    Koonin, EV
    Aravind, L
    [J]. JOURNAL OF MOLECULAR BIOLOGY, 2001, 307 (05) : 1271 - 1292
  • [3] The signaling helix: a common functional theme in diverse signaling proteins
    Anantharaman, Vivek
    Balaji, S.
    Aravind, L.
    [J]. BIOLOGY DIRECT, 2006, 1 (1)
  • [4] The GAF domain: an evolutionary link between diverse phototransducing proteins
    Aravind, L
    Ponting, CP
    [J]. TRENDS IN BIOCHEMICAL SCIENCES, 1997, 22 (12) : 458 - 459
  • [5] Crystal Structure of SpoVT, the Final Modulator of Gene Expression during Spore Development in Bacillus subtilis
    Asen, Iris
    Djuranovic, Sergej
    Lupas, Andrei N.
    Zeth, Kornelius
    [J]. JOURNAL OF MOLECULAR BIOLOGY, 2009, 386 (04) : 962 - 975
  • [6] THE CCP4 SUITE - PROGRAMS FOR PROTEIN CRYSTALLOGRAPHY
    BAILEY, S
    [J]. ACTA CRYSTALLOGRAPHICA SECTION D-BIOLOGICAL CRYSTALLOGRAPHY, 1994, 50 : 760 - 763
  • [7] Receiver Domains Control the Active-State Stoichiometry of Aquifex aeolicus σ54 Activator NtrC4, as Revealed by Electrospray Ionization Mass Spectrometry
    Batchelor, Joseph D.
    Sterling, Harry J.
    Hong, Eunmi
    Williams, Evan R.
    Wemmer, David E.
    [J]. JOURNAL OF MOLECULAR BIOLOGY, 2009, 393 (03) : 634 - 643
  • [8] Structure and Regulatory Mechanism of Aquifex aeolicus NtrC4: Variability and Evolution in Bacterial Transcriptional Regulation
    Batchelor, Joseph D.
    Doucleff, Michaeleen
    Lee, Chul-Jin
    Matsubara, Koshi
    De Carlo, Sacha
    Heideker, Johanna
    Lamers, Meindert H.
    Pelton, Jeffrey G.
    Wemmer, David E.
    [J]. JOURNAL OF MOLECULAR BIOLOGY, 2008, 384 (05) : 1058 - 1075
  • [9] ROLE OF THE NIFA GENE-PRODUCT IN THE REGULATION OF NIF EXPRESSION IN KLEBSIELLA-PNEUMONIAE
    BUCHANANWOLLASTON, V
    CANNON, MC
    BEYNON, JL
    CANNON, FC
    [J]. NATURE, 1981, 294 (5843) : 776 - 778
  • [10] FACTOR STIMULATING TRANSCRIPTION BY RNA POLYMERASE
    BURGESS, RR
    TRAVERS, AA
    DUNN, JJ
    BAUTZ, EKF
    [J]. NATURE, 1969, 221 (5175) : 43 - &