Hansen O, Jensen J
Institute of Physiology, Aarhus University, Denmark.
Cell Calcium. 1995 Dec;18(6):557-68. doi: 10.1016/0143-4160(95)90017-9.
The conditions of nucleotide binding to native, though partly purified, Ca(2+)-ATPase from SR as well as the stoichiometry of nucleotide and strontium binding and the phosphorylation capacity was reevaluated. Binding of MgADP appeared to be aberrant whereas even high-affinity binding of [14C]-ADP took place in the absence of Mg2+. Also low-affinity ATP binding was possible in the absence of divalent cations. A heterogeneity in ADP binding compatible with a two-component model in the absence of thapsigargin was changed to an apparent homogeneity of low-affinity receptors following a mole:mole interaction of enzyme and thapsigargin. Since the affinity of both components was reduced by thapsigargin, high- as well as low-affinity ADP binding seem to be specific and probably to the substrate receptor proper. Analysis of ADP binding isotherms in the absence of Mg2+ according to a model of two independent populations of sites was compatible with a binding capacity of 8.49 +/- 0.43 nmoles/mg protein corresponding to a molecular mass of 118 +/- 6 kD per ADP site. The same total binding capacity was found for ATP. The phosphorylation capacity corresponded to more than one and less than two approximately P per two 110-kD peptides (formally one approximately P per 154 kD protein). Specific binding of Ca2+ and the congener Sr2+ to SR Ca(2+)-ATPase was compatible with their interaction with a single population of sites. The binding capacity was equal to one divalent cation per nucleotide binding peptide. The binding of one nucleotide and one divalent cation per approximately 110 kD peptide and the absence of cooperativity in divalent cation binding might imply that Ca(2+)-ATPase works as a monomer.
对来自肌浆网(SR)的天然(虽部分纯化)Ca(2+)-ATP酶的核苷酸结合条件,以及核苷酸与锶的结合化学计量比和磷酸化能力进行了重新评估。MgADP的结合似乎异常,而即使在没有Mg2+的情况下,[14C]-ADP也能发生高亲和力结合。在没有二价阳离子的情况下,低亲和力的ATP结合也是可能的。在没有毒胡萝卜素的情况下,与双组分模型相符的ADP结合异质性,在酶与毒胡萝卜素以摩尔比相互作用后,转变为低亲和力受体的明显同质性。由于毒胡萝卜素降低了两种组分的亲和力,高亲和力和低亲和力的ADP结合似乎都是特异性的,可能是与底物受体本身结合。根据两个独立位点群体的模型,在没有Mg2+的情况下对ADP结合等温线的分析表明,结合能力为8.49±0.43纳摩尔/毫克蛋白质,对应于每个ADP位点118±6千道尔顿的分子量。ATP的总结合能力相同。磷酸化能力对应于每两个110-kD肽段有一个以上且少于两个近似的P(形式上每154 kD蛋白质有一个近似的P)。Ca2+和同系物Sr2+与SR Ca(2+)-ATP酶的特异性结合与它们与单个位点群体的相互作用相符。结合能力等于每个核苷酸结合肽段一个二价阳离子。每约110 kD肽段结合一个核苷酸和一个二价阳离子,且二价阳离子结合不存在协同性,这可能意味着Ca(2+)-ATP酶以单体形式起作用。