Mickelson J R, Gallant E M, Rempel W E, Johnson K M, Litterer L A, Jacobson B A, Louis C F
Department of Veterinary Biology, University of Minnesota, St. Paul 55108.
Am J Physiol. 1989 Oct;257(4 Pt 1):C787-94. doi: 10.1152/ajpcell.1989.257.4.C787.
Pigs heterozygous for the halothane-sensitivity gene exhibit a distinct phenotype with regard to both in vivo and in vitro muscle responses to halothane (E. M. Gallant, J. R. Mickelson, B. D. Roggow, S. K. Donaldson, C. F. Louis, and W. E. Rempel. Am. J. Physiol. 257 (Cell Physiol. 26): C781-C786, 1989). In this paper heavy sarcoplasmic reticulum (SR) preparations were isolated from the muscles of pigs of all three genotypes. The rate of calcium release from SR of pigs homozygous for the halothane-sensitivity gene was approximately twice that of SR from pigs homozygous for the normal allele. Furthermore, in the presence of 6 microM Ca2+, the binding of [3H]ryanodine to SR isolated from the homozygous halothane-sensitive pigs was of a higher affinity than was the binding to SR isolated from the homozygous normal pigs (Kd = 70-90 vs. 265 nM, respectively). The SR from pigs heterozygous for the halothane-sensitivity gene, however, demonstrated intermediate values for the rate of calcium release and the affinity for [3H]ryanodine (Kd = 192 nM). Thus the alterations in heavy SR calcium release and [3H]ryanodine binding in the pigs containing one copy of the halothane-sensitivity gene demonstrate a distinct heterozygote phenotype. These data also suggest that the protein product of this gene is closely associated with, and perhaps identical to, the SR calcium release channel-ryanodine receptor protein.
对于氟烷敏感性基因杂合的猪,在体内和体外肌肉对氟烷的反应方面表现出独特的表型(E.M. 加兰特、J.R. 米克尔森、B.D. 罗格、S.K. 唐纳森、C.F. 路易斯和W.E. 伦佩尔。《美国生理学杂志》257 卷(细胞生理学 26 期):C781 - C786,1989 年)。在本文中,从三种基因型猪的肌肉中分离出了重肌质网(SR)制剂。氟烷敏感性基因纯合的猪的 SR 中钙释放速率约为正常等位基因纯合猪的 SR 的两倍。此外,在 6 microM Ca2+ 存在的情况下,[3H] 兰尼碱与从氟烷敏感纯合猪分离出的 SR 的结合亲和力高于与从正常纯合猪分离出的 SR 的结合亲和力(Kd 分别为 70 - 90 与 265 nM)。然而,对于氟烷敏感性基因杂合的猪的 SR,钙释放速率和对 [3H] 兰尼碱的亲和力表现出中间值(Kd = 192 nM)。因此,在含有一份氟烷敏感性基因的猪中,重 SR 钙释放和 [3H] 兰尼碱结合的改变表现出独特的杂合体表型。这些数据还表明,该基因的蛋白质产物与 SR 钙释放通道 - 兰尼碱受体蛋白密切相关,甚至可能相同。