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Role of Conserved Residues and F322 in the Extracellular Vestibule of the Rat P2X7 Receptor in Its Expression, Function and Dye Uptake Ability
M. Rupert, A. Bhattacharya, VT. Stillerova, M. Jindrichova, A. Mokdad, E. Boué-Grabot, H. Zemkova
Language English Country Switzerland
Document type Journal Article
Grant support
18-05413S
The Czech Science Foundation
LQ1604
Ministry of Education, Youth and Sports of the Czech Republic
NLK
Free Medical Journals
from 2000
Freely Accessible Science Journals
from 2000
PubMed Central
from 2007
Europe PubMed Central
from 2007
ProQuest Central
from 2000-03-01
Open Access Digital Library
from 2000-01-01
Open Access Digital Library
from 2007-01-01
Health & Medicine (ProQuest)
from 2000-03-01
ROAD: Directory of Open Access Scholarly Resources
from 2000
PubMed
33182845
DOI
10.3390/ijms21228446
Knihovny.cz E-resources
- MeSH
- Bacterial Proteins chemistry genetics metabolism MeSH
- Ion Channel Gating MeSH
- HEK293 Cells MeSH
- Protein Interaction Domains and Motifs MeSH
- Kinetics MeSH
- Conserved Sequence MeSH
- Rats MeSH
- Humans MeSH
- Luminescent Proteins chemistry genetics metabolism MeSH
- Models, Molecular MeSH
- Mutagenesis, Site-Directed MeSH
- Mutant Proteins chemistry genetics metabolism MeSH
- Protein Domains MeSH
- Receptors, Purinergic P2X7 chemistry genetics metabolism MeSH
- Recombinant Fusion Proteins chemistry genetics metabolism MeSH
- Amino Acid Sequence MeSH
- Static Electricity MeSH
- Amino Acid Substitution MeSH
- Animals MeSH
- Check Tag
- Rats MeSH
- Humans MeSH
- Animals MeSH
- Publication type
- Journal Article MeSH
Activation of the P2X7 receptor results in the opening of a large pore that plays a role in immune responses, apoptosis, and many other physiological and pathological processes. Here, we investigated the role of conserved and unique residues in the extracellular vestibule connecting the agonist-binding domain with the transmembrane domain of rat P2X7 receptor. We found that all residues that are conserved among the P2X receptor subtypes respond to alanine mutagenesis with an inhibition (Y51, Q52, and G323) or a significant decrease (K49, G326, K327, and F328) of 2',3'-O-(benzoyl-4-benzoyl)-ATP (BzATP)-induced current and permeability to ethidium bromide, while the nonconserved residue (F322), which is also present in P2X4 receptor, responds with a 10-fold higher sensitivity to BzATP, much slower deactivation kinetics, and a higher propensity to form the large dye-permeable pore. We examined the membrane expression of conserved mutants and found that Y51, Q52, G323, and F328 play a role in the trafficking of the receptor to the plasma membrane, while K49 controls receptor responsiveness to agonists. Finally, we studied the importance of the physicochemical properties of these residues and observed that the K49R, F322Y, F322W, and F322L mutants significantly reversed the receptor function, indicating that positively charged and large hydrophobic residues are important at positions 49 and 322, respectively. These results show that clusters of conserved residues above the transmembrane domain 1 (K49-Y51-Q52) and transmembrane domain 2 (G326-K327-F328) are important for receptor structure, membrane expression, and channel gating and that the nonconserved residue (F322) at the top of the extracellular vestibule is involved in hydrophobic inter-subunit interaction which stabilizes the closed state of the P2X7 receptor channel.
1st Faculty of Medicine Charles University 12108 Prague Czech Republic
Centre National de la Recherche Scientifique UMR 5293 F 33000 Bordeaux France
Institute des Maladies Neurodégénératives University de Bordeaux UMR 5293 F 33000 Bordeaux France
Institute of Physiology Czech Academy of Sciences 14220 Prague Czech Republic
References provided by Crossref.org
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