• Je něco špatně v tomto záznamu ?

Cytoplasmic Inter-Subunit Interface Controls Use-Dependence of Thermal Activation of TRPV3 Channel

L. Macikova, L. Vyklicka, I. Barvik, AI. Sobolevsky, V. Vlachova,

. 2019 ; 20 (16) : . [pub] 20190816

Jazyk angličtina Země Švýcarsko

Typ dokumentu časopisecké články

Perzistentní odkaz   https://www.medvik.cz/link/bmc20006025

Grantová podpora
R01 CA206573, R01 NS083660, R01 NS107253 NIH HHS - United States
74417 and 406119 Grant Agency of Charles University
R01 NS083660 NINDS NIH HHS - United States
R01 CA206573 NCI NIH HHS - United States
A.I.S. Irma T. Hirschl Career Scientist Award
19-03777S Grantová Agentura České Republiky

The vanilloid transient receptor potential channel TRPV3 is a putative molecular thermosensor widely considered to be involved in cutaneous sensation, skin homeostasis, nociception, and pruritus. Repeated stimulation of TRPV3 by high temperatures above 50 °C progressively increases its responses and shifts the activation threshold to physiological temperatures. This use-dependence does not occur in the related heat-sensitive TRPV1 channel in which responses decrease, and the activation threshold is retained above 40 °C during activations. By combining structure-based mutagenesis, electrophysiology, and molecular modeling, we showed that chimeric replacement of the residues from the TRPV3 cytoplasmic inter-subunit interface (N251-E257) with the homologous residues of TRPV1 resulted in channels that, similarly to TRPV1, exhibited a lowered thermal threshold, were sensitized, and failed to close completely after intense stimulation. Crosslinking of this interface by the engineered disulfide bridge between substituted cysteines F259C and V385C (or, to a lesser extent, Y382C) locked the channel in an open state. On the other hand, mutation of a single residue within this region (E736) resulted in heat resistant channels. We propose that alterations in the cytoplasmic inter-subunit interface produce shifts in the channel gating equilibrium and that this domain is critical for the use-dependence of the heat sensitivity of TRPV3.

Citace poskytuje Crossref.org

000      
00000naa a2200000 a 4500
001      
bmc20006025
003      
CZ-PrNML
005      
20200518132252.0
007      
ta
008      
200511s2019 sz f 000 0|eng||
009      
AR
024    7_
$a 10.3390/ijms20163990 $2 doi
035    __
$a (PubMed)31426314
040    __
$a ABA008 $b cze $d ABA008 $e AACR2
041    0_
$a eng
044    __
$a sz
100    1_
$a Macikova, Lucie $u Department of Cellular Neurophysiology, Institute of Physiology Czech Academy of Sciences, 142 20 Prague, Czech Republic. Department of Physiology, Faculty of Science, Charles University, 128 00 Prague, Czech Republic.
245    10
$a Cytoplasmic Inter-Subunit Interface Controls Use-Dependence of Thermal Activation of TRPV3 Channel / $c L. Macikova, L. Vyklicka, I. Barvik, AI. Sobolevsky, V. Vlachova,
520    9_
$a The vanilloid transient receptor potential channel TRPV3 is a putative molecular thermosensor widely considered to be involved in cutaneous sensation, skin homeostasis, nociception, and pruritus. Repeated stimulation of TRPV3 by high temperatures above 50 °C progressively increases its responses and shifts the activation threshold to physiological temperatures. This use-dependence does not occur in the related heat-sensitive TRPV1 channel in which responses decrease, and the activation threshold is retained above 40 °C during activations. By combining structure-based mutagenesis, electrophysiology, and molecular modeling, we showed that chimeric replacement of the residues from the TRPV3 cytoplasmic inter-subunit interface (N251-E257) with the homologous residues of TRPV1 resulted in channels that, similarly to TRPV1, exhibited a lowered thermal threshold, were sensitized, and failed to close completely after intense stimulation. Crosslinking of this interface by the engineered disulfide bridge between substituted cysteines F259C and V385C (or, to a lesser extent, Y382C) locked the channel in an open state. On the other hand, mutation of a single residue within this region (E736) resulted in heat resistant channels. We propose that alterations in the cytoplasmic inter-subunit interface produce shifts in the channel gating equilibrium and that this domain is critical for the use-dependence of the heat sensitivity of TRPV3.
650    _2
$a cytoplazma $x metabolismus $7 D003593
650    _2
$a HEK293 buňky $7 D057809
650    _2
$a vysoká teplota $7 D006358
650    _2
$a lidé $7 D006801
650    _2
$a simulace molekulární dynamiky $7 D056004
650    _2
$a mutace $7 D009154
650    _2
$a proteinové domény $7 D000072417
650    _2
$a podjednotky proteinů $x chemie $x genetika $x metabolismus $7 D021122
650    _2
$a kationtové kanály TRPV $x chemie $x genetika $x metabolismus $7 D050916
655    _2
$a časopisecké články $7 D016428
700    1_
$a Vyklicka, Lenka $u Department of Cellular Neurophysiology, Institute of Physiology Czech Academy of Sciences, 142 20 Prague, Czech Republic.
700    1_
$a Barvik, Ivan $u Division of Biomolecular Physics, Institute of Physics, Faculty of Mathematics and Physics, Charles University, 121 16 Prague, Czech Republic.
700    1_
$a Sobolevsky, Alexander I $u Department of Biochemistry and Molecular Biophysics, Columbia University, New York, NY 10032, USA.
700    1_
$a Vlachova, Viktorie $u Department of Cellular Neurophysiology, Institute of Physiology Czech Academy of Sciences, 142 20 Prague, Czech Republic. viktorie.vlachova@fgu.cas.cz.
773    0_
$w MED00176142 $t International journal of molecular sciences $x 1422-0067 $g Roč. 20, č. 16 (2019)
856    41
$u https://pubmed.ncbi.nlm.nih.gov/31426314 $y Pubmed
910    __
$a ABA008 $b sig $c sign $y a $z 0
990    __
$a 20200511 $b ABA008
991    __
$a 20200518132252 $b ABA008
999    __
$a ok $b bmc $g 1524883 $s 1096081
BAS    __
$a 3
BAS    __
$a PreBMC
BMC    __
$a 2019 $b 20 $c 16 $e 20190816 $i 1422-0067 $m International journal of molecular sciences $n Int J Mol Sci $x MED00176142
GRA    __
$a R01 CA206573, R01 NS083660, R01 NS107253 $p NIH HHS $2 United States
GRA    __
$a 74417 and 406119 $p Grant Agency of Charles University
GRA    __
$a R01 NS083660 $p NINDS NIH HHS $2 United States
GRA    __
$a R01 CA206573 $p NCI NIH HHS $2 United States
GRA    __
$a A.I.S. $p Irma T. Hirschl Career Scientist Award
GRA    __
$a 19-03777S $p Grantová Agentura České Republiky
LZP    __
$a Pubmed-20200511

Najít záznam

Citační ukazatele

Nahrávání dat ...

Možnosti archivace

Nahrávání dat ...