Unraveling the Allosteric Mechanism of Serine Protease Inhibition by an Antibody

被引:51
|
作者
Ganesan, Rajkumar [1 ]
Eigenbrot, Charles [1 ,2 ]
Wu, Yan [2 ]
Liang, Wei-Ching [2 ]
Shia, Steven [1 ]
Lipari, Michael T. [1 ]
Kirchhofer, Daniel [1 ]
机构
[1] Genentech Inc, Dept Prot Engn, San Francisco, CA 94080 USA
[2] Genentech Inc, Dept Antibody Engn, San Francisco, CA 94080 USA
基金
美国国家卫生研究院;
关键词
HEPATOCYTE GROWTH-FACTOR; FACTOR ACTIVATOR; CONFORMATIONAL-CHANGES; ENHANCEMENT; SUBSTRATE; DOMAIN; SPECIFICITY; EXPRESSION; DISCOVERY; PRECURSOR;
D O I
10.1016/j.str.2009.09.014
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
Recent structural studies have outlined the mechanism of protease inhibition by active site-directed antibodies. However, the molecular basis of allosteric inhibition by antibodies has been elusive. Here we report the 2.35 angstrom resolution structure of the trypsin-like serine protease hepatocyte growth factor activator (HGFA) in complex with the allosteric antibody Ab40, a potent inhibitor of HGFA catalytic activity. The antibody binds at the periphery of the substrate binding cleft and imposes a conformational change on the entire 99-loop (chymotrypsinogen numbering). The altered conformation of the 99-loop is incompatible with substrate binding due to the partial collapse of subsite S2 and the reorganization of subsite S4. Remarkably, a single residue deletion of Ab40 abolished inhibition of HGFA activity, commensurate with the reversal of the 99-loop conformation to its "competent" state. The results define an "allosteric switch" mechanism as the basis of protease inhibition by an allosteric antibody.
引用
收藏
页码:1614 / 1624
页数:11
相关论文
共 50 条
  • [41] Inhibition of the serine protease chymotrypsin by silanediol-based structures
    Singh, Swapnil
    Sieburth, Scott McN.
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2009, 238
  • [42] Inhibition of serine protease activity at reperfusion attenuates reperfusion injury
    Reeves, JG
    Mykytenko, J
    Jiang, R
    Schmarkey, LS
    Wang, NP
    Kin, H
    Zatta, AJ
    Zhao, ZQ
    Vinten-Johansen, J
    JOURNAL OF MOLECULAR AND CELLULAR CARDIOLOGY, 2005, 38 (05) : 830 - 830
  • [43] Transesterification of monophenyl phosphonamidates - chemical modelling of serine protease inhibition
    Mucha, A
    Kafarski, P
    TETRAHEDRON, 2002, 58 (29) : 5855 - 5863
  • [44] The Mechanism of Caseinolytic Protease (ClpP) Inhibition
    Gersch, Malte
    Gut, Felix
    Korotkov, Vadim S.
    Lehmann, Johannes
    Boettcher, Thomas
    Rusch, Marion
    Hedberg, Christian
    Waldmann, Herbert
    Klebe, Gerhard
    Sieber, Stephan A.
    ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2013, 52 (10) : 3009 - 3014
  • [45] MECHANISM OF POLYAMINE INHIBITION OF A LEAF PROTEASE
    BALESTRERI, E
    CIONI, P
    ROMAGNOLI, A
    BERNINI, S
    FISSI, A
    FELICIOLI, R
    ARCHIVES OF BIOCHEMISTRY AND BIOPHYSICS, 1987, 255 (02) : 460 - 463
  • [46] CHICKEN KIDNEY D-SERINE DEHYDRATASE - ALLOSTERIC REGULATION MECHANISM
    BEDINO, S
    ITALIAN JOURNAL OF BIOCHEMISTRY, 1973, 22 (5-6): : 232 - 243
  • [47] Inhibitory Mechanism of an Allosteric Antibody Targeting the Glucagon Receptor
    Mukund, Susmith
    Shang, Yonglei
    Clarke, Holly J.
    Madjidi, Azadeh
    Corn, Jacob E.
    Kates, Lance
    Kolumam, Ganesh
    Chiang, Vicky
    Luis, Elizabeth
    Murray, Jeremy
    Zhang, Yingnan
    Hoetzel, Isidro
    Koth, Christopher M.
    Allan, Bernard B.
    JOURNAL OF BIOLOGICAL CHEMISTRY, 2013, 288 (50) : 36168 - 36178
  • [48] Switching between allosteric and dimerization inhibition of HIV-1 protease
    Bowman, MJ
    Byrne, S
    Chmielewski, J
    CHEMISTRY & BIOLOGY, 2005, 12 (04): : 439 - 444
  • [49] A comparison of staphostatin B with standard mechanism serine protease inhibitors
    Filipek, R
    Potempa, J
    Bochtler, M
    JOURNAL OF BIOLOGICAL CHEMISTRY, 2005, 280 (15) : 14669 - 14674
  • [50] Serine protease inhibitors (serpins): Where mechanism meets medicine
    Rubin, H
    NATURE MEDICINE, 1996, 2 (06) : 632 - 633