Centro di Studio del Consiglio Nazionale delle Ricerche sulla Biologia Cellulare e Molecolare delle Piante, Dipartimento di Biologia, Università di Milano, Via Celoria 26, 20133 Milano, Italy.
Plant Physiol. 1992 Mar;98(3):1196-201. doi: 10.1104/pp.98.3.1196.
In this work, we exploited the capability of the plasma membrane Ca-ATPase to utilize ITP as a substrate to study its characteristics in plasma membrane vesicles purified from radish (Raphanus sativus L.) seedlings. The majority of the ITPase activity of plasma membrane was Ca(2+)-dependent. The Ca(2+)-dependent ITPase activity was Mg(2+)-dependent and was stimulated by the calcium ionophore A23187. It was inhibited by erythrosin B (concentration giving 50% inhibition, 50 nanomolar) and by vanadate (concentration giving 50% inhibition, 3 micromolar) and displayed a broad pH optimum around pH 7.2 to 7.5. Both the hydrolytic and the transport activity of the plasma membrane Ca-ATPase were half-saturated by Ca(2+) in the micromolar concentration range. No major effect of EGTA on the saturation kinetics of the enzyme was observed. The affinity of the plasma membrane Ca-ATPase for Ca(2+) was about fourfold higher at pH 7.5 than at pH 6.9. The Ca(2+)-dependent ITPase activity was stimulated about twofold by polyoxyethylene 20 cetyl ether, although it was inhibited by Triton X-100 and by lysolecithin.
在这项工作中,我们利用质膜 Ca-ATP 酶利用 ITP 作为底物的能力,研究了从萝卜(Raphanus sativus L.)幼苗中纯化的质膜囊泡中的质膜 Ca-ATP 酶的特性。质膜中大多数 ITP 酶活性依赖于 Ca2+。依赖于 Ca2+的 ITP 酶活性依赖于 Mg2+,并被钙离子载体 A23187 刺激。它被红紫菌素 B(抑制 50%的浓度,50 纳摩尔)和钒酸盐(抑制 50%的浓度,3 微摩尔)抑制,并在 pH7.2 到 7.5 左右显示出广泛的 pH 最佳值。质膜 Ca-ATP 酶的水解和转运活性在微摩尔浓度范围内被 Ca2+对半饱和。观察到 EGTA 对酶饱和度动力学的主要影响。质膜 Ca-ATP 酶对 Ca2+的亲和力在 pH7.5 时比在 pH6.9 时高约四倍。多氧乙烯 20 鲸蜡醚刺激 Ca2+依赖的 ITP 酶活性增加约两倍,尽管它被 Triton X-100 和溶血卵磷脂抑制。