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骨骼肌Ca2+释放通道上高亲和力和低亲和力[3H]ryanodine结合位点的定位

Localization of the high and low affinity [3H]ryanodine binding sites on the skeletal muscle Ca2+ release channel.

作者信息

Callaway C, Seryshev A, Wang J P, Slavik K J, Needleman D H, Cantu C, Wu Y, Jayaraman T, Marks A R, Hamilton S L

机构信息

Department of Molecular Physiology and Biophysics, Baylor College of Medicine, Houston, Texas 77030.

出版信息

J Biol Chem. 1994 Jun 3;269(22):15876-84.

PMID:8195243
Abstract

The Ca2+ release channel of skeletal muscle sarcoplasmic reticulum is modulated in a biphasic manner by the plant alkaloid ryanodine and there are two distinct binding sites on this channel for ryanodine. The Ca2+ release channel is a homotetramer with a subunit of 5037 amino acids. The ability of sarcoplasmic reticulum membranes to bind [3H]ryanodine to the high affinity site is lost upon proteolysis with trypsin. [3H]Ryanodine, however, bound before proteolysis remains bound after trypsin digestion. If the high affinity site is first occupied with [3H]ryanodine and then 100 microM ryanodine is added to occupy the low affinity sites, almost all of [3H]ryanodine bound to the high affinity site remains bound after proteolysis. Proteolysis causes the solubilized Ca2+ release channel containing bound [3H]ryanodine to undergo four discrete shifts in sedimentation (30 S-->28 S-->26 S-->19 S-->14 S). Polypeptides having apparent molecular masses of 76, 66, 56, 45, 37, and 27 kDa can be identified in the 14 S complex. The 76-, 56-, 45-, and 27-kDa polypeptides have been partially sequenced from the NH2 terminus. In addition, the 76-, 66-, and 27-kDa fragments are recognized by an antibody to the last 9 amino acids at the carboxyl terminus of the skeletal muscle ryanodine receptor and the 76-, 66-, and 37-kDa fragments are recognized by an antibody to a peptide matching the sequence 4670-4685. The 56-kDa and the 45-kDa fragments are not Ca2+ release channel fragments. Both high and low affinity ryanodine binding sites are found in the 14 S complex and are, therefore, most likely located between Arg-4475 and the carboxyl terminus.

摘要

骨骼肌肌浆网的Ca2+释放通道受植物生物碱ryanodine的双相调节,该通道上有两个不同的ryanodine结合位点。Ca2+释放通道是由5037个氨基酸亚基组成的同四聚体。用胰蛋白酶进行蛋白水解后,肌浆网膜与[3H]ryanodine结合到高亲和力位点的能力丧失。然而,蛋白水解前结合的[3H]ryanodine在胰蛋白酶消化后仍保持结合状态。如果高亲和力位点首先被[3H]ryanodine占据,然后加入100 microM ryanodine占据低亲和力位点,那么几乎所有结合到高亲和力位点的[3H]ryanodine在蛋白水解后仍保持结合状态。蛋白水解导致含有结合[3H]ryanodine的可溶性Ca2+释放通道在沉降过程中发生四次离散变化(30 S→28 S→26 S→19 S→14 S)。在14 S复合物中可以鉴定出表观分子量为76、66、56、45、37和27 kDa的多肽。已从NH2末端对76、56、45和27 kDa的多肽进行了部分测序。此外,76、66和27 kDa的片段可被针对骨骼肌ryanodine受体羧基末端最后9个氨基酸的抗体识别,76、66和37 kDa的片段可被针对与序列4670 - 4685匹配的肽段的抗体识别。56 kDa和45 kDa的片段不是Ca2+释放通道片段。在14 S复合物中发现了高亲和力和低亲和力的ryanodine结合位点,因此,它们最有可能位于Arg - 4475和羧基末端之间。

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