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骨骼肌肌浆网的雷诺丁受体-Ca2+释放通道复合物。关于协同偶联的带负电荷同四聚体的证据。

The ryanodine receptor-Ca2+ release channel complex of skeletal muscle sarcoplasmic reticulum. Evidence for a cooperatively coupled, negatively charged homotetramer.

作者信息

Lai F A, Misra M, Xu L, Smith H A, Meissner G

机构信息

Department of Biochemistry, University of North Carolina School of Medicine, Chapel Hill 27599.

出版信息

J Biol Chem. 1989 Oct 5;264(28):16776-85.

PMID:2550460
Abstract

The subunit structure of the rabbit skeletal muscle ryanodine receptor-Ca2+ release channel complex was examined following solubilization of heavy sarcoplasmic reticulum membranes in two zwitterionic detergents, 3-[(3-cholamidopropyl)dimethylammonio]-1-propanesulfonic acid (Chaps) and Zwittergent 3-14. High and low affinity [3H]ryanodine binding was retained upon solubilization of the complex in Chaps but was lost in Zwittergent 3-14. The purified complex migrated as a single peak with an apparent sedimentation coefficient of approximately 30 and approximately 9 S upon density gradient centrifugation and with isoelectric points of 3.7 and 3.9 upon two-dimensional gel electrophoresis in Chaps and Zwittergent 3-14, respectively. Electron microscopy of negatively stained samples indicated that the distinct four-leaf clover structure of the ryanodine receptor observed in Chaps disappeared following Zwittergent treatment of the 30 S complex and instead showed smaller, round particles. Ferguson plot analysis following sodium dodecyl sulfate-polyacrylamide gel electrophoresis of partial and fully cross-linked and incompletely denatured complexes suggested a stoichiometry of four Mr approximately 400,000 peptides/30 S ryanodine receptor oligomer. [3H]Ryanodine binding to the membrane-bound receptor in 50 microM--1 mM free Ca2+ revealed the presence of both high affinity (KD = 8 nM, Hill coefficient (nH) = 0.9) and low affinity (nH approximately 0.45) sites with a ratio of 1:3. Reduction in free Ca2+ to less than or equal to 0.1 microM or trypsin digestion of the membranes resulted in loss of high affinity but not low affinity ryanodine binding (Hill KD = 5,000 nM, nH = 0.9). Addition of 20 mM caffeine to the nanomolar Ca2+ medium decreased the Hill KD to 1,000 nM without changing the Hill coefficient. Occupation of the low affinity sites altered the rate of [3H]ryanodine dissociation from the high affinity sites. Single channel recordings of the purified ryanodine receptor channel incorporated into planar lipid bilayers also indicated the existence of high and low affinity sites for ryanodine, occupation of which resulted in formation of a subconducting and completely closed state of the channel, respectively. These results are compatible with a subunit structural model of the 30 S ryanodine receptor-Ca2+ release channel complex which comprises a homotetramer of negatively charged and allosterically coupled polypeptides of Mr approximately 400,000.

摘要

在两种两性离子去污剂3-[(3-胆酰胺丙基)二甲基铵]-1-丙烷磺酸(Chaps)和两性离子去污剂3-14中溶解重肌质网膜后,研究了兔骨骼肌雷诺丁受体 - Ca²⁺释放通道复合物的亚基结构。该复合物在Chaps中溶解后保留了高亲和力和低亲和力的[³H]雷诺丁结合,但在两性离子去污剂3-14中溶解时则丧失了这种结合。纯化后的复合物在密度梯度离心中以单一峰迁移,其表观沉降系数在Chaps和两性离子去污剂3-14中分别约为30 S和9 S,在二维凝胶电泳中的等电点分别为3.7和3.9。对负染样品的电子显微镜观察表明,在Chaps中观察到的雷诺丁受体独特的四叶苜蓿结构在两性离子去污剂处理30 S复合物后消失,取而代之的是较小的圆形颗粒。对部分和完全交联以及未完全变性的复合物进行十二烷基硫酸钠 - 聚丙烯酰胺凝胶电泳后的弗格森图分析表明,化学计量比为四个Mr约400,000的肽/30 S雷诺丁受体寡聚体。在50 μM - 1 mM游离Ca²⁺中,[³H]雷诺丁与膜结合受体的结合显示存在高亲和力(KD = 8 nM,希尔系数(nH)= 0.9)和低亲和力(nH约为0.45)位点,比例为1:3。将游离Ca²⁺降低至小于或等于0.1 μM或对膜进行胰蛋白酶消化导致高亲和力但不是低亲和力的雷诺丁结合丧失(希尔KD = 5,000 nM,nH = 0.9)。在纳摩尔Ca²⁺培养基中加入20 mM咖啡因可将希尔KD降低至1,000 nM,而不改变希尔系数。低亲和力位点的占据改变了[³H]雷诺丁从高亲和力位点解离的速率。整合到平面脂质双分子层中的纯化雷诺丁受体通道的单通道记录也表明存在雷诺丁的高亲和力和低亲和力位点,占据这些位点分别导致通道形成亚传导状态和完全关闭状态。这些结果与30 S雷诺丁受体 - Ca²⁺释放通道复合物的亚基结构模型相符,该模型由Mr约400,000的带负电荷且变构偶联的多肽同四聚体组成。

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