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钠钙交换体亲水环中钙离子结合位点之间的协同相互作用。

Cooperative interaction between Ca2+ binding sites in the hydrophilic loop of the Na(+)-Ca2+ exchanger.

作者信息

Levitsky D O, Fraysse B, Leoty C, Nicoll D A, Philipson K D

机构信息

Laboratory of General Physiology, URA CNRS 1340, University of Nantes, France.

出版信息

Mol Cell Biochem. 1996 Jul-Aug;160-161:27-32. doi: 10.1007/BF00240027.

Abstract

A high affinity Ca(2+)-binding domain which is located in a middle portion of the large intracellular loop of the Na(+)-Ca2+ exchanger contains two highly acidic sequences, each characterized by three consecutive aspartic acid residues (Levitsky DO, Nicoll DA, and Philipson KD (1994) J Biol Chem 269: 22847-22852). This portion of the protein provides secondary Ca2+ regulation of the exchanger activity. To determine number of Ca2+ binding sites participating in formation of the high affinity domain, we isolated polypeptides of different lengths encompassing the domain and measured 45Ca2+ binding. The fusion proteins containing the high affinity domain were obtained in a Ca(2+)-bound form and as evidenced by shifts in there mobility in SDS-polyacrylamide gels after EGTA treatment. The Ca2+ binding curves obtained after equilibrium dialysis reached saturation at 1 microM free Ca2+, Kd value being approx. 0.4 microM. The Ca2+ binding occurred in a highly cooperative manner. Upon saturation, the amount of Ca2+ ion bound varied from 1.3-2.1 mol per mol protein. Proteins with an aspartate in each acidic sequence mutated lacked the positive cooperativity, had lower Ca2+ affinity and bound two to three times less Ca2+. Na(+)-Ca2+ exchangers of tissues other than heart though different from the cardiac exchanger by molecular weight most likely possess a similar Ca2+ binding site. It is concluded that, by analogy with Ca2+ binding proteins of EF-type, the high Ca(2+)-affinity domain of the Na(+)-Ca2+ exchanger is comprised of at least two binding sites interacting cooperatively.

摘要

位于钠钙交换体大的细胞内环中间部分的高亲和力钙结合结构域包含两个高度酸性序列,每个序列的特征是有三个连续的天冬氨酸残基(列维茨基DO、尼科尔DA和菲利普森KD(1994年)《生物化学杂志》269卷:22847 - 22852页)。该蛋白质的这一部分对交换体活性进行二级钙调节。为了确定参与高亲和力结构域形成的钙结合位点数量,我们分离了包含该结构域的不同长度的多肽,并测量了45Ca2 +结合情况。含有高亲和力结构域的融合蛋白以钙结合形式获得,并且通过EGTA处理后其在SDS - 聚丙烯酰胺凝胶中的迁移率变化得以证明。平衡透析后获得的钙结合曲线在游离钙浓度为1微摩尔时达到饱和,解离常数约为0.4微摩尔。钙结合以高度协同的方式发生。饱和时,每摩尔蛋白质结合的钙离子量在1.3 - 2.1摩尔之间变化。每个酸性序列中天冬氨酸发生突变的蛋白质缺乏正协同性,具有较低的钙亲和力,结合的钙少两到三倍。除心脏外的其他组织的钠钙交换体虽然分子量与心脏交换体不同,但很可能具有类似的钙结合位点。结论是,类似于EF型钙结合蛋白,钠钙交换体的高钙亲和力结构域由至少两个协同相互作用的结合位点组成。

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