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正常和恶性高热易感性肌肉肌浆网兰尼碱受体的钙调蛋白敏感性

Calmodulin sensitivity of the sarcoplasmic reticulum ryanodine receptor from normal and malignant-hyperthermia-susceptible muscle.

作者信息

O'Driscoll S, McCarthy T V, Eichinger H M, Erhardt W, Lehmann-Horn F, Herrmann-Frank A

机构信息

Department of Applied Physiology, University of Ulm, Germany.

出版信息

Biochem J. 1996 Oct 15;319 ( Pt 2)(Pt 2):421-6. doi: 10.1042/bj3190421.

Abstract

Ca2+ release from sarcoplasmic reticulum (SR) of malignant-hyperthermia-susceptible (MHS) muscle is hypersensitive to Ca2+ and caffeine. To determine if an abnormal calmodulin (CaM) regulation of the SR Ca(2+)-release-channel-ryanodine-receptor complex (RYR1) contributes to this hypersensitivity, we investigated the effect of CaM on high-affinity [3H]ryanodine binding to isolated SR vesicles from normal and MHS pig skeletal muscle. CaM modulated [3H]ryanodine binding in a Ca(2+)-dependent manner. In the presence of maximally activating Ca2+ concentrations, CaM inhibited [3H]ryanodine binding with no differences between normal and MHS vesicles. In the absence of Ca2+, however, CaM activated [3H]ryanodine binding with a 2-fold-higher potency in MHS vesicles. Significant differences between normal and MHS tissue were observed for CaM concentrations between 50 nM and 10 microM. A polyclonal antibody raised against the central region of RYR1 specifically inhibited this activating effect of CaM without affecting the inhibition by CaM. This indicates that the central region of RYR1 is a potential binding domain for CaM in the absence of Ca2+. It is suggested that in vivo an enhanced CaM sensitivity of RYR1 might contribute to the abnormal high release of Ca2+ from the SR of MHS muscle.

摘要

恶性高热易感(MHS)肌肉肌浆网(SR)的Ca2+释放对Ca2+和咖啡因高度敏感。为了确定钙调蛋白(CaM)对SR Ca(2+)释放通道-兰尼碱受体复合物(RYR1)的异常调节是否导致这种高敏感性,我们研究了CaM对从正常和MHS猪骨骼肌分离的SR囊泡上高亲和力[3H]兰尼碱结合的影响。CaM以Ca(2+)依赖的方式调节[3H]兰尼碱结合。在最大激活Ca2+浓度存在的情况下,CaM抑制[3H]兰尼碱结合,正常和MHS囊泡之间无差异。然而,在没有Ca2+的情况下,CaM激活[3H]兰尼碱结合,在MHS囊泡中的效力高2倍。在50 nM至10 microM的CaM浓度下,观察到正常和MHS组织之间存在显著差异。针对RYR1中央区域产生的多克隆抗体特异性抑制CaM的这种激活作用,而不影响CaM的抑制作用。这表明RYR1的中央区域在没有Ca2+的情况下是CaM的潜在结合结构域。有人提出,在体内RYR1对CaM敏感性的增强可能导致MHS肌肉SR中Ca2+的异常高释放。

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