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子宫肌层质膜囊泡的高亲和力pH依赖性被动钙结合

High-affinity pH-dependent passive Ca binding by myometrial plasma membrane vesicles.

作者信息

Grover A K, Kwan C Y, Daniel E E

出版信息

Am J Physiol. 1983 Jan;244(1):C61-7. doi: 10.1152/ajpcell.1983.244.1.C61.

Abstract

Rat myometrium plasma membrane-(PM) enriched fraction N1 binds calcium passively in a pH-dependent manner at a Ca2+ concentration of 1 microM. The Ca binding increases with increasing pH from 6.27 to 7.47 with a half maximum near 6.8. The difference between binding at 6.27 and 7.07 (the pH-dependent Ca binding) depends on the pH of the reaction medium rather than the pH of the medium in which the membranes had previously been suspended. The pH-dependent Ca binding is not an artifact due to EGTA, the pH buffer used, or soluble protein trapped inside the membrane vesicles. The pH-dependent Ca binding occurs with a dissociation constant value of 0.28 microM and Hill coefficient of 2.37 for Ca2+. The high affinity pH-dependent Ca uptake and the release of Ca2+ from the membranes is virtually complete in 10 s in the presence of 1 microM A23187 but not in its absence. The distribution of the pH-dependent Ca binding in the various rat myometrium subcellular fractions parallels the activity of 5'-nucleotidase in these fractions and not the activities of NADPH-dependent or succinate-dependent cytochrome c reductases. The high affinity and rapid binding and release of Ca at the pH-dependent Ca binding sites in the PM-enriched fraction suggests that the binding and release from these sites may play a key role in excitation-contraction coupling of the smooth muscle.

摘要

大鼠子宫肌层富含质膜(PM)的组分N1在Ca2+浓度为1微摩尔时以pH依赖的方式被动结合钙。随着pH从6.27增加到7.47,钙结合增加,在6.8附近达到最大值的一半。6.27和7.07时的结合差异(pH依赖的钙结合)取决于反应介质的pH,而不是膜先前悬浮其中的介质的pH。pH依赖的钙结合不是由于所用的pH缓冲剂EGTA或膜泡内捕获的可溶性蛋白质造成的假象。pH依赖的钙结合发生时,Ca2+的解离常数为0.28微摩尔,希尔系数为2.37。在存在1微摩尔A23187的情况下,高亲和力的pH依赖的钙摄取和膜中Ca2+的释放实际上在10秒内完成,而在不存在A23187时则不然。pH依赖的钙结合在大鼠子宫肌层各种亚细胞组分中的分布与这些组分中5'-核苷酸酶的活性平行,而与NADPH依赖或琥珀酸依赖的细胞色素c还原酶的活性不平行。富含质膜的组分中pH依赖的钙结合位点处钙的高亲和力、快速结合和释放表明,这些位点的结合和释放可能在平滑肌的兴奋-收缩偶联中起关键作用。

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