Pharmacologic and functional characterization of malignant hyperthermia in the R163C RyR1 knock-in mouse

被引:106
|
作者
Yang, Tanzhong
Riehl, Joyce
Esteve, Eric
Matthaei, Klaus I.
Goth, Samuel
Allen, Paul D.
Pessah, Isaac N.
Lopez, Jose R.
机构
[1] Brigham & Womens Hosp, Dept Anesthesia Perioperat & Pain Med, Boston, MA 02115 USA
[2] Univ Calif Davis, Sch Vet Med, Dept Mol Biosci, Davis, CA 95616 USA
[3] Australian Natl Univ, John Curtin Sch Med Res, Gene Targeting Lab, Canberra, ACT 2600, Australia
[4] Brigham & Womens Hosp, Dept Anesthesia Perioperat & Pain Med, Boston, MA 02115 USA
[5] Inst Venezolano Invest Cient, Ctr Biophys & Bioquim, Caracas 1010A, Venezuela
关键词
D O I
10.1097/00000542-200612000-00016
中图分类号
R614 [麻醉学];
学科分类号
100217 ;
摘要
Background. Malignant hyperthermia is a pharmacogenetic disorder affecting humans, dogs, pigs, and horses. in the majority of human cases and all cases in animals, malignant hyperthermia has been associated with missense mutations in the skeletal ryanodine receptor (RyR1). Methods: The authors used a "knock-in" targeting vector to create mice carrying the RyR1 R163C malignant hyperthermia mutation. Results. Validation of this new mouse model of human malignant hyperthermia susceptibility includes (1) proof of transcription of the R163C allele and expression of ryanodinc receptor protein in R163C heterozygous and R163C homozygous animals; (2) fulminant malignant hyperthermia episodes in R163C heterozygous mice after exposure to 1.25-1.75% halothane or an ambient temperature of 42 degrees C characterized by increased rectal temperature, respiratory rate, and inspiratory effort, with significant blood biochemical changes indicating metabolic acidosis, ending in death and hyperacute rigor mortis; (3) intraperitoneal pretreatment with dantrolene provided 100% protection from the halothane-triggered fulminant malignant hyperthermia episode; (4) significantly increased sensitivity (decreased effective concentration causing 50% of the maximal response) of R163C heterozygous and homozygous myotubes to caffeine, 4-chloro-m-cresol, and K+-induced depolarization; (5) R163C heterozygous and homozygous myotubes have a significantly increased resting intracellular Ca2+ concentration compared with wild type; (6) R163C heterozygous sarcoplasmic reticulum membranes have a twofold higher affinity (K-d = 35.4 nm) for [H-3]ryanodine binding compared with wild type (K-d = 80.1 nm) and a diminished inhibitory regulation by Mg2+. Conclusions: Heterozygous R163C mice represent a valid model for studying the mechanisms that cause the human malignant hyperthermia syndrome.
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收藏
页码:1164 / 1175
页数:12
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