Jeng A Y, Ryan T E, Shamoo A E
Proc Natl Acad Sci U S A. 1978 May;75(5):2125-9. doi: 10.1073/pnas.75.5.2125.
A protein was isolated from calf heart inner mitochondrial membrane with the aid of an electron paramagnetic resonance assay based on the relative binding properties of Ca2+, Mn2+, and Mg2+ to the protein. The molecular weight of this protein has been estimated to be about 3000 by urea/sodium dodecyl sulfate gel electrophoresis and amino acid analysis. The protein is shown to have two classes of binding sites for Ca2+ by flow dialysis studies and can extract Ca2+ into an organic phase. The selectivity sequence of this protein determined from the organic solvent extraction experiments shows that it favors divalent cations over monovalent cations. Also, the relative selectivity sequence for divalent cations is Ca2+, Sr2+ greater than Mn2+ greater than Mg2+. Ruthenium red and La3+ are shown to inhibit the protein-mediated extraction of Ca2+ into the organic solvent. The calcium translocation in a Pressman cell by this protein is selectively driven by a hydrogen ion gradient. Control experiments indicate that the Ca2+ trnsport properties of the protein are not due to the contaminating phospholipids. It appears that we have isolated from the inner mitochondrial membrane a calcium carrier, which we have named "calciphorin."
借助基于Ca2+、Mn2+和Mg2+与该蛋白质的相对结合特性的电子顺磁共振测定法,从牛心线粒体内膜中分离出一种蛋白质。通过尿素/十二烷基硫酸钠凝胶电泳和氨基酸分析,估计该蛋白质的分子量约为3000。通过流动透析研究表明,该蛋白质对Ca2+有两类结合位点,并且可以将Ca2+提取到有机相中。从有机溶剂萃取实验确定的该蛋白质的选择性序列表明,它对二价阳离子的偏好高于一价阳离子。此外,二价阳离子的相对选择性序列为Ca2+、Sr2+大于Mn2+大于Mg2+。钌红和La3+可抑制该蛋白质介导的Ca2+向有机溶剂中的萃取。该蛋白质在普雷斯曼电池中的钙转运由氢离子梯度选择性驱动。对照实验表明,该蛋白质的Ca2+转运特性并非由于污染的磷脂所致。看来我们已经从线粒体内膜中分离出一种钙载体,我们将其命名为“钙转运蛋白”。