Structure-function relationships of the calcium binding sites of the sarcoplasmic reticulum Ca(2+)-ATPase.

J P Andersen, B Vilsen
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Abstract

Site-directed mutagenesis studies of the structure and function of the Ca2+ binding sites of the sarcoplasmic reticulum Ca(2+)-ATPase are reviewed. The Ca2+ binding properties of six mutants with alterations to amino acid residues with oxygen-containing side chains in the membrane segments M4, M5, M6, and M8 were investigated. The mutations to Glu309 in M4, Glu771 in M5, Asn796, Thr799, and Asp800 in M6 all disrupted Ca2+ occlusion, suggesting that the side chains of these residues donate oxygen ligands to Ca2+ binding at the high-affinity sites and/or are involved in conformational changes that occlude the sites. Alanine substitution of Glu908 in transmembrane segment M8 did not prevent Ca2+ occlusion, thereby excluding this residue from playing a central role in Ca2+ coordination. Titrations of Ca2+ activation of phosphorylation from ATP and of inhibition by Ca2+ of phosphorylation from Pi allowed us to assign Ca2+ liganding residues separately to the two high-affinity Ca2+ sites. Hence, residues Glu771 and Thr799 are associated with the site binding the first calcium ion in the sequential mechanism ("site 1"), whereas Glu309 and Asn796 are associated with the site binding the second calcium ion ("site 2"), and Asp800 donates Ca2+ ligands to both sites. On this basis we discuss two possible structural models for the Ca2+ sites.

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肌浆网Ca(2+)- atp酶钙结合位点的结构-功能关系
对肌浆网Ca(2+)- atp酶Ca2+结合位点的结构和功能的定点诱变研究进行了综述。研究了6个膜段M4、M5、M6和M8中含氧侧链氨基酸残基改变的突变体的Ca2+结合特性。M4中的Glu309, M5中的Glu771, M6中的Asn796, Thr799和Asp800的突变都破坏了Ca2+的封闭,这表明这些残基的侧链在高亲和力位点为Ca2+结合提供氧配体和/或参与了封闭位点的构象变化。gl908在跨膜段M8中的丙氨酸取代不能阻止Ca2+闭塞,从而排除了该残基在Ca2+协调中发挥核心作用。Ca2+激活ATP磷酸化和Ca2+抑制Pi磷酸化的滴定使我们能够将Ca2+配体残基分别分配到两个高亲和力的Ca2+位点。因此,在序列机制中,残基Glu771和Thr799与结合第一个钙离子的位点(“位点1”)相关,而Glu309和Asn796与结合第二个钙离子的位点(“位点2”)相关,Asp800向两个位点提供Ca2+配体。在此基础上,我们讨论了Ca2+位点的两种可能的结构模型。
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