Shamoo A E, Lockwich T, Cao C J
Department of Biological Chemistry, University of Maryland, School of Medicine, Baltimore, 21201.
Mol Cell Biochem. 1990 Dec 20;99(2):67-74. doi: 10.1007/BF00230335.
Europium luminescence from europium bound to sarcoplasmic reticulum (Ca2+ + Mg2+)-ATPase indicates that there are two high affinity calcium binding sites. Furthermore, the two calcium ions at the binding sites are highly coordinated by the protein as the number of H2O molecules surrounding the Ca2+ ions are 3 and 0.5. In the presence of ATP, calcium ions are occluded even further down to 2 and zero H2O molecules, respectively. The Ca2+ - Ca2+ intersite distance is estimated to be 8-9 A and the average distance from the Ca2+ sites to CrATP is about 18 A. Digestion of the (Ca2+ + Mg2+)-ATPase at the T2 site (Arg 198) causes uncoupling of Ca2(+)-transport from ATPase activity while calcium occlusion due to E1-P formation remains unchanged. Further tryptic digestion beyond T2 and in the presence of ATP diminishes Ca2+ occlusion to zero while 50% of the ATPase hydrolytic activity remains. Tryptic digestion beyond T2 and in the absence of ATP diminishes ATPase hydrolytic activity to 50% of normal while Ca2+ occlusion remains intact. These data are consistent with a mechanism in which the functional enzyme must be in the dimeric form for occlusion and calcium uptake to occur, but each monomer can hydrolyze ATP.
与肌浆网(Ca2+ + Mg2+)-ATP酶结合的铕发出的铕荧光表明存在两个高亲和力钙结合位点。此外,结合位点上的两个钙离子与蛋白质高度配位,因为围绕Ca2+离子的水分子数分别为3和0.5。在ATP存在的情况下,钙离子进一步被封闭,水分子数分别降至2和零。Ca2+ - Ca2+位点间距离估计为8 - 9埃,Ca2+位点到CrATP的平均距离约为18埃。在T2位点(精氨酸198)对(Ca2+ + Mg2+)-ATP酶进行消化会导致Ca2+运输与ATP酶活性解偶联,而由于E1 - P形成导致的钙封闭保持不变。在T2位点之后并在ATP存在的情况下进一步进行胰蛋白酶消化会使Ca2+封闭降至零,而ATP酶水解活性仍保留50%。在T2位点之后且在无ATP的情况下进行胰蛋白酶消化会使ATP酶水解活性降至正常的50%,而Ca2+封闭保持完整。这些数据与一种机制一致,即功能性酶必须以二聚体形式存在才能发生封闭和钙摄取,但每个单体都能水解ATP。