Literature DB >> 18791833

Molecular modeling of the full-length human TRPV1 channel in closed and desensitized states.

G Fernández-Ballester1, A Ferrer-Montiel.   

Abstract

The transient receptor potential vanilloid subtype 1 (TRPV1) is a member of the TRP family gated by vanilloids, heat, and protons. Structurally, TRPV1 subunits have a modular architecture underlying different functionalities, namely stimuli recognition, channel gating, ion selectivity, subunit oligomerization, and regulation by intracellular signaling molecules. Considering modular organization and recent structural information in the ion channel field, we have modeled a full-length TRPV1 by assembly of its major modules: the cytosolic N-terminal, C-terminal, and membrane-spanning region. For N-terminal, we used the ankyrin repeat structure fused with the N-end segment. The membrane domain was modeled with the structure of the eukaryotic, voltage-gated Kv1.2 K+ channel. The C-terminus was cast using the coordinates of HCN channels. The extensive structure-function data available for TRPV1 was used to validate the models in terms of the location of molecular determinants of function in the structure. Additionally, the current information allowed the modeling of the vanilloid receptor in the closed and desensitized states. The closed state shows the N-terminal module highly exposed and accessible to adenosine triphosphate and the C-terminal accessible to phosphoinositides. In contrast, the desensitized state depicts the N-terminal and C-terminal modules close together, compatible with an interaction mediated by Ca2+ -calmodulin complex. These models identify potential previously unrecognized intra- and interdomain interactions that may play an important functional role. Although the molecular models should be taken with caution, they provide a helpful tool that yields testable hypothesis that further our understanding on ion channels work in terms of underlying protein structure.

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Year:  2008        PMID: 18791833     DOI: 10.1007/s00232-008-9123-7

Source DB:  PubMed          Journal:  J Membr Biol        ISSN: 0022-2631            Impact factor:   1.843


  65 in total

1.  Predicting transmembrane protein topology with a hidden Markov model: application to complete genomes.

Authors:  A Krogh; B Larsson; G von Heijne; E L Sonnhammer
Journal:  J Mol Biol       Date:  2001-01-19       Impact factor: 5.469

Review 2.  The TRP channels, a remarkably functional family.

Authors:  Craig Montell; Lutz Birnbaumer; Veit Flockerzi
Journal:  Cell       Date:  2002-03-08       Impact factor: 41.582

3.  Modulation of TRPV1 by nonreceptor tyrosine kinase, c-Src kinase.

Authors:  Xiaochun Jin; Nemat Morsy; John Winston; Pankaj J Pasricha; Kennon Garrett; Hamid I Akbarali
Journal:  Am J Physiol Cell Physiol       Date:  2004-04-14       Impact factor: 4.249

Review 4.  ThermoTRP channels as modular proteins with allosteric gating.

Authors:  Ramon Latorre; Sebastian Brauchi; Gerardo Orta; Cristián Zaelzer; Guillermo Vargas
Journal:  Cell Calcium       Date:  2007-05-17       Impact factor: 6.817

5.  Structural basis for modulation and agonist specificity of HCN pacemaker channels.

Authors:  William N Zagotta; Nelson B Olivier; Kevin D Black; Edgar C Young; Rich Olson; Eric Gouaux
Journal:  Nature       Date:  2003-09-11       Impact factor: 49.962

6.  Structure of TRPV1 channel revealed by electron cryomicroscopy.

Authors:  Vera Y Moiseenkova-Bell; Lia A Stanciu; Irina I Serysheva; Ben J Tobe; Theodore G Wensel
Journal:  Proc Natl Acad Sci U S A       Date:  2008-05-19       Impact factor: 11.205

7.  A modular PIP2 binding site as a determinant of capsaicin receptor sensitivity.

Authors:  Elizabeth D Prescott; David Julius
Journal:  Science       Date:  2003-05-23       Impact factor: 47.728

8.  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

Review 9.  An introduction to TRP channels.

Authors:  I Scott Ramsey; Markus Delling; David E Clapham
Journal:  Annu Rev Physiol       Date:  2006       Impact factor: 19.318

10.  Phosphoinositide 3-kinase binds to TRPV1 and mediates NGF-stimulated TRPV1 trafficking to the plasma membrane.

Authors:  Alexander T Stein; Carmen A Ufret-Vincenty; Li Hua; Luis F Santana; Sharona E Gordon
Journal:  J Gen Physiol       Date:  2006-11       Impact factor: 4.086

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  28 in total

Review 1.  Structure of thermally activated TRP channels.

Authors:  Matthew R Cohen; Vera Y Moiseenkova-Bell
Journal:  Curr Top Membr       Date:  2014       Impact factor: 3.049

2.  Transient receptor potential vanilloid-1 (TRPV1) is a mediator of lung toxicity for coal fly ash particulate material.

Authors:  Cassandra E Deering-Rice; Mark E Johansen; Jessica K Roberts; Karen C Thomas; Erin G Romero; Jeewoo Lee; Garold S Yost; John M Veranth; Christopher A Reilly
Journal:  Mol Pharmacol       Date:  2011-12-09       Impact factor: 4.436

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

Authors:  Stepana Boukalova; Lenka Marsakova; Jan Teisinger; Viktorie Vlachova
Journal:  J Biol Chem       Date:  2010-11-02       Impact factor: 5.157

4.  The Integrity of the TRP Domain Is Pivotal for Correct TRPV1 Channel Gating.

Authors:  Lucia Gregorio-Teruel; Pierluigi Valente; Beiying Liu; Gregorio Fernández-Ballester; Feng Qin; Antonio Ferrer-Montiel
Journal:  Biophys J       Date:  2015-08-04       Impact factor: 4.033

5.  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

6.  Identification of in vivo disulfide conformation of TRPA1 ion channel.

Authors:  Liwen Wang; Teresa L Cvetkov; Mark R Chance; Vera Y Moiseenkova-Bell
Journal:  J Biol Chem       Date:  2011-12-29       Impact factor: 5.157

7.  Zinc inactivates melastatin transient receptor potential 2 channels via the outer pore.

Authors:  Wei Yang; Paul T Manna; Jie Zou; Jianhong Luo; David J Beech; Asipu Sivaprasadarao; Lin-Hua Jiang
Journal:  J Biol Chem       Date:  2011-05-20       Impact factor: 5.157

8.  Identification of a binding motif in the S5 helix that confers cholesterol sensitivity to the TRPV1 ion channel.

Authors:  Giovanni Picazo-Juárez; Silvina Romero-Suárez; Andrés Nieto-Posadas; Itzel Llorente; Andrés Jara-Oseguera; Margaret Briggs; Thomas J McIntosh; Sidney A Simon; Ernesto Ladrón-de-Guevara; León D Islas; Tamara Rosenbaum
Journal:  J Biol Chem       Date:  2011-05-09       Impact factor: 5.157

9.  Molecular architecture and subunit organization of TRPA1 ion channel revealed by electron microscopy.

Authors:  Teresa L Cvetkov; Kevin W Huynh; Matthew R Cohen; Vera Y Moiseenkova-Bell
Journal:  J Biol Chem       Date:  2011-09-09       Impact factor: 5.157

10.  Coarse architecture of the transient receptor potential vanilloid 1 (TRPV1) ion channel determined by fluorescence resonance energy transfer.

Authors:  Víctor De-la-Rosa; Gisela E Rangel-Yescas; Ernesto Ladrón-de-Guevara; Tamara Rosenbaum; León D Islas
Journal:  J Biol Chem       Date:  2013-08-21       Impact factor: 5.157

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