Literature DB >> 21044960

Conserved residues within the putative S4-S5 region serve distinct functions among thermosensitive vanilloid transient receptor potential (TRPV) channels.

Stepana Boukalova1, Lenka Marsakova, Jan Teisinger, Viktorie Vlachova.   

Abstract

The vanilloid transient receptor potential channel TRPV1 is a tetrameric six-transmembrane segment (S1-S6) channel that can be synergistically activated by various proalgesic agents such as capsaicin, protons, heat, or highly depolarizing voltages, and also by 2-aminoethoxydiphenyl borate (2-APB), a common activator of the related thermally gated vanilloid TRP channels TRPV1, TRPV2, and TRPV3. In these channels, the conserved charged residues in the intracellular S4-S5 region have been proposed to constitute part of a voltage sensor that acts in concert with other stimuli to regulate channel activation. The molecular basis of this gating event is poorly understood. We mutated charged residues all along the S4 and the S4-S5 linker of TRPV1 and identified four potential voltage-sensing residues (Arg(557), Glu(570), Asp(576), and Arg(579)) that, when specifically mutated, altered the functionality of the channel with respect to voltage, capsaicin, heat, 2-APB, and/or their interactions in different ways. The nonfunctional charge-reversing mutations R557E and R579E were partially rescued by the charge-swapping mutations R557E/E570R and D576R/R579E, indicating that electrostatic interactions contribute to allosteric coupling between the voltage-, temperature- and capsaicin-dependent activation mechanisms. The mutant K571E was normal in all aspects of TRPV1 activation except for 2-APB, revealing the specific role of Lys(571) in chemical sensitivity. Surprisingly, substitutions at homologous residues in TRPV2 or TRPV3 had no effect on temperature- and 2-APB-induced activity. Thus, the charged residues in S4 and the S4-S5 linker contribute to voltage sensing in TRPV1 and, despite their highly conserved nature, regulate the temperature and chemical gating in the various TRPV channels in different ways.

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Year:  2010        PMID: 21044960      PMCID: PMC3009871          DOI: 10.1074/jbc.M110.145466

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  32 in total

1.  2-aminoethoxydiphenyl borate is a common activator of TRPV1, TRPV2, and TRPV3.

Authors:  Hong-Zhen Hu; Qihai Gu; Chunbo Wang; Craig K Colton; Jisen Tang; Mariko Kinoshita-Kawada; Lu-Yuan Lee; Jackie D Wood; Michael X Zhu
Journal:  J Biol Chem       Date:  2004-06-11       Impact factor: 5.157

2.  The principle of temperature-dependent gating in cold- and heat-sensitive TRP channels.

Authors:  Thomas Voets; Guy Droogmans; Ulrich Wissenbach; Annelies Janssens; Veit Flockerzi; Bernd Nilius
Journal:  Nature       Date:  2004-08-12       Impact factor: 49.962

3.  The capsaicin receptor: a heat-activated ion channel in the pain pathway.

Authors:  M J Caterina; M A Schumacher; M Tominaga; T A Rosen; J D Levine; D Julius
Journal:  Nature       Date:  1997-10-23       Impact factor: 49.962

4.  Clues to understanding cold sensation: thermodynamics and electrophysiological analysis of the cold receptor TRPM8.

Authors:  Sebastian Brauchi; Patricio Orio; Ramon Latorre
Journal:  Proc Natl Acad Sci U S A       Date:  2004-10-18       Impact factor: 11.205

Review 5.  Structure-functional intimacies of transient receptor potential channels.

Authors:  Ramon Latorre; Cristián Zaelzer; Sebastian Brauchi
Journal:  Q Rev Biophys       Date:  2009-08       Impact factor: 5.318

6.  Thermosensitive TRP channel pore turret is part of the temperature activation pathway.

Authors:  Fan Yang; Yuanyuan Cui; KeWei Wang; Jie Zheng
Journal:  Proc Natl Acad Sci U S A       Date:  2010-03-29       Impact factor: 11.205

7.  Molecular basis for species-specific sensitivity to "hot" chili peppers.

Authors:  Sven-Eric Jordt; David Julius
Journal:  Cell       Date:  2002-02-08       Impact factor: 41.582

8.  Functional role of C-terminal cytoplasmic tail of rat vanilloid receptor 1.

Authors:  Viktorie Vlachová; Jan Teisinger; Klára Susánková; Alla Lyfenko; Rüdiger Ettrich; Ladislav Vyklický
Journal:  J Neurosci       Date:  2003-02-15       Impact factor: 6.167

9.  2-aminoethoxydiphenyl borate activates and sensitizes the heat-gated ion channel TRPV3.

Authors:  Man-Kyo Chung; Hyosang Lee; Atsuko Mizuno; Makoto Suzuki; Michael J Caterina
Journal:  J Neurosci       Date:  2004-06-02       Impact factor: 6.167

10.  Molecular determinants of vanilloid sensitivity in TRPV1.

Authors:  Narender R Gavva; Lana Klionsky; Yusheng Qu; Licheng Shi; Rami Tamir; Steve Edenson; T J Zhang; Vellarkad N Viswanadhan; Attila Toth; Larry V Pearce; Todd W Vanderah; Frank Porreca; Peter M Blumberg; Jack Lile; Yax Sun; Ken Wild; Jean-Claude Louis; James J S Treanor
Journal:  J Biol Chem       Date:  2004-03-02       Impact factor: 5.157

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  30 in total

1.  Role of amino-terminal half of the S4-S5 linker in type 1 ryanodine receptor (RyR1) channel gating.

Authors:  Takashi Murayama; Nagomi Kurebayashi; Toshiharu Oba; Hideto Oyamada; Katsuji Oguchi; Takashi Sakurai; Yasuo Ogawa
Journal:  J Biol Chem       Date:  2011-08-23       Impact factor: 5.157

2.  Conserved gating elements in TRPC4 and TRPC5 channels.

Authors:  Andreas Beck; Tilman Speicher; Christof Stoerger; Thomas Sell; Viviane Dettmer; Siti A Jusoh; Ammar Abdulmughni; Adolfo Cavalié; Stephan E Philipp; Michael X Zhu; Volkhard Helms; Ulrich Wissenbach; Veit Flockerzi
Journal:  J Biol Chem       Date:  2013-05-15       Impact factor: 5.157

3.  Decrypting the Heat Activation Mechanism of TRPV1 Channel by Molecular Dynamics Simulation.

Authors:  Han Wen; Wenjun Zheng
Journal:  Biophys J       Date:  2018-01-09       Impact factor: 4.033

4.  C-terminal acidic cluster is involved in Ca2+-induced regulation of human transient receptor potential ankyrin 1 channel.

Authors:  Lucie Sura; Vlastimil Zíma; Lenka Marsakova; Anna Hynkova; Ivan Barvík; Viktorie Vlachova
Journal:  J Biol Chem       Date:  2012-03-29       Impact factor: 5.157

5.  Membrane Protein Properties Revealed through Data-Rich Electrostatics Calculations.

Authors:  Frank V Marcoline; Neville Bethel; Christopher J Guerriero; Jeffrey L Brodsky; Michael Grabe
Journal:  Structure       Date:  2015-06-25       Impact factor: 5.006

6.  Structural insights into TRPV2 activation by small molecules.

Authors:  Ruth A Pumroy; Anna D Protopopova; Tabea C Fricke; Iris U Lange; Ferdinand M Haug; Phuong T Nguyen; Pamela N Gallo; Bárbara B Sousa; Gonçalo J L Bernardes; Vladimir Yarov-Yarovoy; Andreas Leffler; Vera Y Moiseenkova-Bell
Journal:  Nat Commun       Date:  2022-04-28       Impact factor: 17.694

Review 7.  What do we know about the transient receptor potential vanilloid 2 (TRPV2) ion channel?

Authors:  Alex Perálvarez-Marín; Pau Doñate-Macian; Rachelle Gaudet
Journal:  FEBS J       Date:  2013-05-28       Impact factor: 5.542

8.  Tyrosine Residue in the TRPV1 Vanilloid Binding Pocket Regulates Deactivation Kinetics.

Authors:  Rakesh Kumar; Adina Hazan; Arijit Basu; Nomi Zalcman; Henry Matzner; Avi Priel
Journal:  J Biol Chem       Date:  2016-05-03       Impact factor: 5.157

9.  The core domain as the force sensor of the yeast mechanosensitive TRP channel.

Authors:  Zhenwei Su; Andriy Anishkin; Ching Kung; Yoshiro Saimi
Journal:  J Gen Physiol       Date:  2011-12       Impact factor: 4.086

10.  Integrative binding sites within intracellular termini of TRPV1 receptor.

Authors:  Lenka Grycova; Blanka Holendova; Ladislav Bumba; Jan Bily; Michaela Jirku; Zdenek Lansky; Jan Teisinger
Journal:  PLoS One       Date:  2012-10-31       Impact factor: 3.240

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