Action of Pasteurella multocida toxin on Gαq is persistent and independent of interaction with G-protein-coupled receptors

被引:19
|
作者
Orth, Joachim H. C.
Lang, Simona
Preuss, Inga
Milligan, Graeme
Aktories, Klaus
机构
[1] Univ Freiburg, Inst Expt & Klin Pharmakol & Toxikol, D-79104 Freiburg, Germany
[2] Univ Glasgow, Inst Biomed & Life Sci, Div Biochem & Mol Biol, Mol Pharmacol Grp, Glasgow G12 8QQ, Lanark, Scotland
关键词
heterotrimeric G protein; G alpha(q); pasteurella multocida toxin; GTPase cycle; GPCR; adrenoceptor;
D O I
10.1016/j.cellsig.2007.06.016
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Pasteurella multocida toxin (PMT) activates G alpha(q) and facilitates stimulation of inositol phosphate accumulation induced by agonists via G(q)-coupled membrane receptors. Here, we studied the effects of PMT on agonist-induced GTP gamma S binding to G(q) in cell membranes and a role of G-protein-coupled receptors in the action of PMT. Pre-treatment of Swiss 3T3 cells with PMT increased bombesin or vasopressin-induced GTP gamma S-binding in cell membranes by about 50 to 150%. Increase in agonist-stimulated GTP gamma S-binding caused by PMT pretreatment was specific for G alpha(q), and not observed with G alpha(11). PMT-induced effects on GTP gamma S-binding were persistent after removing the toxin or in the presence of anti-PMT antibody. Stimulation of agonist-induced GTP gamma S-binding by PMT was independent of phosphorylation of the C-terminal tyrosine356 of Got,. Activation of phospholipase C by PMT occurred via G alpha(q) which was fused to the alpha(1b)-adrenoceptor and also with a C-terminally deleted G alpha(q), which is not able to interact with G protein-coupled membrane receptors. The data indicate that activation of G alpha(q) by PMT is persistent and independent of a functional interaction of G(q) with G-protein-coupled receptors. (c) 2007 Elsevier Inc. All rights reserved.
引用
下载
收藏
页码:2174 / 2182
页数:9
相关论文
共 50 条
  • [1] Action of Pasteurella multocida toxin depends on the helical domain of Gαq
    Orth, JHC
    Lang, S
    Aktories, K
    JOURNAL OF BIOLOGICAL CHEMISTRY, 2004, 279 (33) : 34150 - 34155
  • [2] G-protein-independent signaling by G-protein-coupled receptors
    Heuss, C
    Gerber, U
    TRENDS IN NEUROSCIENCES, 2000, 23 (10) : 469 - 475
  • [3] Pharmacological chaperone action on G-protein-coupled receptors
    Bernier, V
    Bichet, DG
    Bouvier, M
    CURRENT OPINION IN PHARMACOLOGY, 2004, 4 (05) : 528 - 533
  • [4] G-protein-coupled receptors
    Bergsma, DJ
    Wilson, S
    BIOFUTUR, 1999, (191) : 26 - 27
  • [5] Selective Membrane Redistribution and Depletion of Gαq-Protein by Pasteurella multocida Toxin
    Clemons, Nathan C.
    Luo, Shuhong
    Ho, Mengfei
    Wilson, Brenda A.
    TOXINS, 2016, 8 (08):
  • [6] Genetic variation in G-protein-coupled receptors - consequences for G-protein-coupled receptors as drug targets
    Tang, CM
    Insel, PA
    EXPERT OPINION ON THERAPEUTIC TARGETS, 2005, 9 (06) : 1247 - 1265
  • [7] Interaction of G-protein-coupled receptors with synaptic scaffolding proteins
    Kreienkamp, HJ
    Soltau, M
    Richter, D
    Böckers, T
    BIOCHEMICAL SOCIETY TRANSACTIONS, 2002, 30 : 464 - 468
  • [8] Heterotrimeric G protein activation by G-protein-coupled receptors
    Oldham, William M.
    Hamm, Heidi E.
    NATURE REVIEWS MOLECULAR CELL BIOLOGY, 2008, 9 (01) : 60 - 71
  • [9] Heterotrimeric G protein activation by G-protein-coupled receptors
    William M. Oldham
    Heidi E. Hamm
    Nature Reviews Molecular Cell Biology, 2008, 9 : 60 - 71
  • [10] G-protein-coupled receptors at a glance
    Kroeze, WK
    Sheffler, DJ
    Roth, BL
    JOURNAL OF CELL SCIENCE, 2003, 116 (24) : 4867 - 4869