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S100A1与骨骼肌的Ca2+释放通道(雷诺丁受体)的相互作用。

Interaction of S100A1 with the Ca2+ release channel (ryanodine receptor) of skeletal muscle.

作者信息

Treves S, Scutari E, Robert M, Groh S, Ottolia M, Prestipino G, Ronjat M, Zorzato F

机构信息

Istituto di Patologia Generale, Università di Ferrara, Via Borsari 46, 44100 Ferrara, Italy.

出版信息

Biochemistry. 1997 Sep 23;36(38):11496-503. doi: 10.1021/bi970160w.

Abstract

In the present report we studied the interaction between the skeletal muscle ryanodine receptor and the ubiquitous S100A1 Ca2+ binding protein. S100A1 did not affect equilibrium [3H]ryanodine binding to purified rabbit skeletal muscle terminal cisternae at 100 microM free [Ca2+]. At nanomolar free [Ca2+], however, S100A1 activated by 40 +/- 6.7% (mean +/- SE, n = 5) the [3H]ryanodine binding activity; the half-maximal concentration for stimulation of [3H]ryanodine binding was approximately 70 nM, a value well below the estimated S100A1 concentration in skeletal muscle fibers. Scatchard analysis of [3H]ryanodine binding performed in the presence of 100 microM EGTA indicates that S100A1 increases the apparent affinity of the receptor for ryanodine (Kd = 191 vs 383 nM in the presence and in the absence of 100 nM S100A1, respectively). The effect of S100A1 was also tested on the single-channel gating properties of the purified ryanodine receptor after reconstitution into a lipid planar bilayer. Currents carried by purified ryanodine receptor channels were modulated by both cis Ca2+ and ruthenium red. In the presence of nanomolar [Ca2+], S100A1 activated the channel by increasing (6.0 +/- 2.8)-fold (mean +/- SE, n = 3) the normalized open probability. The interaction between S100A1 and the purified RYR was verified using the optical biosensor BIAcore: we show that the two proteins interact directly both at millimolar and at nanomolar calcium concentrations. We next mapped the regions of the skeletal muscle RYR involved in the interaction with S100A1 by performing ligand overlays on a panel RYR of fusion proteins in the presence of 100 nM S100A1. Our results indicate that the skeletal muscle RYR contains three potential S100A1 binding domains. Binding of S100A1 to the RYR fusion proteins occurred at both nanomolar and millimolar free [Ca2+]. S100A1 binding domain 1 binds the ligand in the presence of 1 mM free [Ca2+] or 1 mM EGTA. Maximal binding to S100A1#2 was achieved in the presence of 1 mM free [Ca2+]. The S100A1#3 domain, which overlaps with calcium-dependent calmodulin binding domain 3 (CaM 3), exhibits weak and strong S100A1 binding activity in the presence of either millimolar or nanomolar Ca2+, respectively. The interaction between S100A1 and the purified RYR complex was also investigated by affinity chromatography: in the presence of nanomolar Ca2+, we observed binding of native RYR complex to S100A1-conjugated Sepharose. This interaction could be inhibited by the presence of RYR polypeptides encompassing S100A1 binding sites S100A1#1, S100A1#2, and S100A1#3.

摘要

在本报告中,我们研究了骨骼肌兰尼碱受体与普遍存在的S100A1钙结合蛋白之间的相互作用。在游离钙离子浓度为100微摩尔时,S100A1不影响[3H]兰尼碱与纯化的兔骨骼肌终末池的平衡结合。然而,在纳摩尔级游离钙离子浓度下,S100A1使[3H]兰尼碱结合活性激活了40±6.7%(平均值±标准误,n = 5);刺激[3H]兰尼碱结合的半数最大浓度约为70纳摩尔,该值远低于骨骼肌纤维中估计的S100A1浓度。在100微摩尔乙二醇双四乙酸存在下对[3H]兰尼碱结合进行的Scatchard分析表明,S100A1增加了受体对兰尼碱的表观亲和力(分别在存在和不存在100纳摩尔S100A1时,解离常数Kd = 191纳摩尔和383纳摩尔)。还测试了S100A1对纯化的兰尼碱受体重构到脂质平面双层后的单通道门控特性的影响。纯化的兰尼碱受体通道携带的电流受顺式钙离子和钌红的调节。在纳摩尔级钙离子存在下,S100A1通过将标准化开放概率提高(6.0±2.8)倍(平均值±标准误,n = 3)来激活通道。使用光学生物传感器BIAcore验证了S100A1与纯化的兰尼碱受体(RYR)之间的相互作用:我们表明这两种蛋白质在毫摩尔级和纳摩尔级钙浓度下均直接相互作用。接下来,我们通过在100纳摩尔S100A1存在下对一组RYR融合蛋白进行配体覆盖,绘制了骨骼肌RYR中与S100A1相互作用的区域。我们的结果表明,骨骼肌RYR包含三个潜在的S100A1结合结构域。S100A1与RYR融合蛋白的结合在纳摩尔级和毫摩尔级游离钙离子浓度下均会发生。S100A1结合结构域1在存在1毫摩尔游离钙离子或1毫摩尔乙二醇双四乙酸时结合配体。在存在1毫摩尔游离钙离子时,与S100A1#2的结合达到最大值。与钙依赖性钙调蛋白结合结构域3(CaM 3)重叠的S100A1#3结构域,在分别存在毫摩尔级或纳摩尔级钙离子时,表现出弱和强的S100A1结合活性。还通过亲和色谱研究了S100A1与纯化的RYR复合物之间的相互作用:在纳摩尔级钙离子存在下,我们观察到天然RYR复合物与S100A1偶联的琼脂糖结合。这种相互作用可被包含S100A1结合位点S100A1#1、S100A1#2和S100A1#3的RYR多肽的存在所抑制。

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