Tong J, McCarthy T V, MacLennan D H
Banting and Best Department of Medical Research, University of Toronto, Toronto, Ontario M5G 1L6, Canada.
J Biol Chem. 1999 Jan 8;274(2):693-702. doi: 10.1074/jbc.274.2.693.
Malignant hyperthermia (MH) and central core disease (CCD) mutations were introduced into full-length rabbit Ca2+ release channel (RYR1) cDNA, which was then expressed transiently in HEK-293 cells. Resting Ca2+ concentrations were higher in HEK-293 cells expressing homotetrameric CCD mutant RyR1 than in cells expressing homotetrameric MH mutant RyR1. Cells expressing homotetrameric CCD or MH mutant RyR1 exhibited lower maximal peak amplitudes of caffeine-induced Ca2+ release than cells expressing wild type RyR1, suggesting that MH and CCD mutants might be "leaky." In cells expressing homotetrameric wild type or mutant RyR1, the amplitude of 10 mM caffeine-induced Ca2+ release was correlated significantly with the amplitude of carbachol- or thapsigargin-induced Ca2+ release, indicating that maximal drug-induced Ca2+ release depends on the size of the endoplasmic reticulum Ca2+ store. The content of endogenous sarco(endo)plasmic reticulum Ca2+-ATPase isoform 2b (SERCA2b), measured by enzyme-linked immunosorbent assay, 45Ca2+ uptake, and confocal microscopy, was increased in HEK-293 cells expressing wild type or mutant RyR1, supporting the view that endoplasmic reticulum Ca2+ storage capacity is increased as a compensatory response to an enhanced Ca2+ leak. When heterotetrameric (1:1) combinations of MH/CCD mutant and wild type RyR1 were expressed together with SERCA1 to enhance Ca2+ reuptake, the amplitude of Ca2+ release in response to low concentrations of caffeine and halothane was higher than that observed in cells expressing wild type RyR1 and SERCA1. In Ca2+-free medium, MH/CCD mutants were more sensitive to caffeine than wild type RyR1, indicating that caffeine hypersensitivity observed with a variety of MH/CCD mutant RyR1 proteins is not dependent on extracellular Ca2+ concentration.
将恶性高热(MH)和中央轴空病(CCD)突变引入全长兔Ca2+释放通道(RYR1)cDNA,然后在HEK-293细胞中瞬时表达。表达同四聚体CCD突变型RyR1的HEK-293细胞中的静息Ca2+浓度高于表达同四聚体MH突变型RyR1的细胞。表达同四聚体CCD或MH突变型RyR1的细胞比表达野生型RyR1的细胞表现出更低的咖啡因诱导的Ca2+释放最大峰值幅度,这表明MH和CCD突变体可能是“渗漏的”。在表达同四聚体野生型或突变型RyR1的细胞中,10 mM咖啡因诱导的Ca2+释放幅度与卡巴胆碱或毒胡萝卜素诱导的Ca2+释放幅度显著相关,表明最大药物诱导的Ca2+释放取决于内质网Ca2+储存库的大小。通过酶联免疫吸附测定、45Ca2+摄取和共聚焦显微镜测量,表达野生型或突变型RyR1的HEK-293细胞中内源性肌浆网Ca2+-ATP酶同工型2b(SERCA2b)的含量增加,支持内质网Ca2+储存能力作为对增强的Ca2+渗漏的补偿反应而增加的观点。当MH/CCD突变体和野生型RyR1的异四聚体(1:1)组合与SERCA1一起表达以增强Ca2+再摄取时,低浓度咖啡因和氟烷诱导的Ca2+释放幅度高于表达野生型RyR1和SERCA1的细胞。在无Ca2+培养基中,MH/CCD突变体对咖啡因比野生型RyR1更敏感,表明多种MH/CCD突变型RyR1蛋白观察到咖啡因超敏反应不依赖于细胞外Ca2+浓度。