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平滑肌中质膜钙泵转运能力的评估。

Assessment of transport capacity of plasmalemmal Ca2+ pump in smooth muscle.

作者信息

Lucchesi P A, Cooney R A, Mangsen-Baker C, Honeyman T W, Scheid C R

机构信息

Department of Physiology, University of Massachusetts Medical School, Worcester 01655.

出版信息

Am J Physiol. 1988 Aug;255(2 Pt 1):C226-36. doi: 10.1152/ajpcell.1988.255.2.C226.

Abstract

In resting smooth muscle, a variety of Ca2+ extrusion processes offset the inward Ca2+ leak. Biochemical studies suggest that the plasmalemmal Ca2+ pump dominates this process; however, this contention could not be proven without a reliable estimate of the inward Ca2+ leak that must be opposed by active transport. Recent studies using dispersed cells from the toad stomach provided such an estimate; thus we examined the capacity of the plasmalemmal Ca2+ pump in this tissue. Membranes were prepared using nitrogen cavitation, high-salt extraction, and flotation on discontinuous sucrose gradients. These membrane vesicles were enriched 16- to 24-fold for plasma membrane markers and exhibited an ATP-dependent uptake of 45Ca that was insensitive to azide or oxalate but sensitive to orthovanadate inhibition and calmodulin stimulation. 45Ca accumulated in the presence of ATP was rapidly released by Ca2+ ionophore but not by caffeine, inositol 1,4,5-trisphosphate, or GTP. Uptake exhibited a high affinity for Ca2+ (Km 0.2 microM) and a high-transport capacity, producing greater than 12,000-fold gradient for Ca2+ and a transmembrane flux rate greater than that observed in resting smooth muscle cells. Thus this enzyme is capable of maintaining steady-state Ca2+ levels in smooth muscle.

摘要

在静息的平滑肌中,多种Ca2+外排过程可抵消内向Ca2+泄漏。生化研究表明,质膜Ca2+泵在这一过程中起主导作用;然而,若没有对必须由主动转运来对抗的内向Ca2+泄漏进行可靠估计,这一论点就无法得到证实。最近使用蟾蜍胃分散细胞进行的研究提供了这样一个估计值;因此,我们研究了该组织中质膜Ca2+泵的能力。使用氮气空化、高盐提取以及在不连续蔗糖梯度上进行浮选来制备膜。这些膜囊泡中质膜标志物富集了16至24倍,并表现出对45Ca的ATP依赖性摄取,该摄取对叠氮化物或草酸盐不敏感,但对原钒酸盐抑制和钙调蛋白刺激敏感。在ATP存在下积累的45Ca可被Ca2+离子载体迅速释放,但不能被咖啡因、肌醇1,4,5-三磷酸或GTP释放。摄取对Ca2+表现出高亲和力(Km为0.2 microM)和高转运能力,产生大于12000倍的Ca2+梯度,且跨膜通量率高于静息平滑肌细胞中观察到的通量率。因此,这种酶能够维持平滑肌中的Ca2+稳态水平。

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