TY - JOUR
T1 - Anesthetics inhibit membrane receptor coupling to the Gq/11 heterotrimeric G protein in airway smooth muscle
AU - Nakayama, Tetsuzo
AU - Hayashi, Masao
AU - Warner, David O.
AU - Jones, Keith A.
N1 - Funding Information:
Received from the Department of Anesthesiology, Mayo Foundation, Rochester, Minnesota. Submitted for publication January 10, 2005. Accepted for publication April 5, 2005. Supported in part by grant Nos. HL-45532 and HL-54757 from the National Institutes of Health, Bethesda, Maryland, and grants from Mayo Foundation, Rochester, Minnesota.
PY - 2005/8
Y1 - 2005/8
N2 - Background: Some anesthetics relax airway smooth muscle in part by inhibiting acetylcholine-induced increases in Ca2+ sensitivity, an effect associated with inhibition of guanosine nucleotide exchange at the α subunit of the Gq/11 (Gαq/11) heterotrimeric G protein. This study tested the hypothesis that these anesthetic effects are not unique to the muscarinic receptor but are a general property of the heptahelical receptors that increase Ca2+ sensitivity in airway smooth muscle. Methods: Anesthetic effects on agonist-induced increases in Ca2+ sensitivity were measured in porcine airway smooth muscle strips permeabilized with S. aureus α-toxin. Anesthetic effects on basal (without agonist stimulation) and agonist-promoted Gαq/11 guanosine nucleotide exchange were determined in crude membranes prepared from porcine airway smooth muscle. The nonhydrolyzable, radioactive form of guanosine 5′-triphosphate was used as the reporter for nucleotide exchange at Gαq/11. Results: Acetylcholine, endothelin-1, and histamine caused a concentration-dependent increase in Ca2+ sensitivity. Halothane (0.67 ± 0.07 HIM) and hexanol (10 mM) significantly inhibited the increase in Ca2+ sensitivity induced by each agonist. Each agonist also caused a time- and concentration-dependent increase in Gαq/11 nucleotide exchange. Neither anesthetic had an effect on basal Gαq/11 nucleotide exchange, whereas halothane and hexanol significantly inhibited the increase in Gαq/11 nucleotide exchange promoted by each agonist. Conclusion: These data suggest that inhibition of agonist-promoted guanosine nucleotide exchange at Gαq/11 by some anesthetics may be a general property of heptahelical receptors involved cellular processes mediated by Gαq/11, including muscarinic, endothelin-1, and histamine receptor activation of Ca2+ sensitivity.
AB - Background: Some anesthetics relax airway smooth muscle in part by inhibiting acetylcholine-induced increases in Ca2+ sensitivity, an effect associated with inhibition of guanosine nucleotide exchange at the α subunit of the Gq/11 (Gαq/11) heterotrimeric G protein. This study tested the hypothesis that these anesthetic effects are not unique to the muscarinic receptor but are a general property of the heptahelical receptors that increase Ca2+ sensitivity in airway smooth muscle. Methods: Anesthetic effects on agonist-induced increases in Ca2+ sensitivity were measured in porcine airway smooth muscle strips permeabilized with S. aureus α-toxin. Anesthetic effects on basal (without agonist stimulation) and agonist-promoted Gαq/11 guanosine nucleotide exchange were determined in crude membranes prepared from porcine airway smooth muscle. The nonhydrolyzable, radioactive form of guanosine 5′-triphosphate was used as the reporter for nucleotide exchange at Gαq/11. Results: Acetylcholine, endothelin-1, and histamine caused a concentration-dependent increase in Ca2+ sensitivity. Halothane (0.67 ± 0.07 HIM) and hexanol (10 mM) significantly inhibited the increase in Ca2+ sensitivity induced by each agonist. Each agonist also caused a time- and concentration-dependent increase in Gαq/11 nucleotide exchange. Neither anesthetic had an effect on basal Gαq/11 nucleotide exchange, whereas halothane and hexanol significantly inhibited the increase in Gαq/11 nucleotide exchange promoted by each agonist. Conclusion: These data suggest that inhibition of agonist-promoted guanosine nucleotide exchange at Gαq/11 by some anesthetics may be a general property of heptahelical receptors involved cellular processes mediated by Gαq/11, including muscarinic, endothelin-1, and histamine receptor activation of Ca2+ sensitivity.
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U2 - 10.1097/00000542-200508000-00013
DO - 10.1097/00000542-200508000-00013
M3 - Article
C2 - 16052112
AN - SCOPUS:23044444240
SN - 0003-3022
VL - 103
SP - 296
EP - 305
JO - Anesthesiology
JF - Anesthesiology
IS - 2
ER -