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视网膜视杆细胞光激活磷酸二酯酶激活和失活动力学的钙依赖性

Calcium dependence of the activation and inactivation kinetics of the light-activated phosphodiesterase of retinal rods.

作者信息

Barkdoll A E, Pugh E N, Sitaramayya A

机构信息

Department of Psychology, University of Pennsylvania, Philadelphia 19104.

出版信息

J Gen Physiol. 1989 Jun;93(6):1091-108. doi: 10.1085/jgp.93.6.1091.

Abstract

The Ca2+ dependence of the kinetics and light sensitivity of light-activated phosphodiesterase was studied with a pH assay in toad and bovine rod disk membranes (RDM), and in a reconstituted system containing GTP-binding protein, phosphodiesterase and rhodopsin kinase. Three statistics, peak hydrolytic velocity, turnoff time, and time to peak velocity, were measured. ATP decreased phosphodiesterase light sensitivity nearly 10-fold and accelerated the dim-flash kinetics of cGMP hydrolysis when compared to those with GTP alone. CA2+ reversed all of the effects of ATP, Ca2+ increased peak velocity, turnoff time, and time to peak velocity, to the values obtained with GTP alone. The Ca2+ dependence of peak velocity and turnoff time can be characterized as hyperbolic saturation functions with a K0.5 for Ca2+ of 1.0-1.5 mM in toad RDM. In bovine RDM the Ca2+ dependence of peak velocity and turnoff time has a K0.5 of 0.1 mM Ca2+. The Ca2+ dependence in the reconstituted system is similar to that in bovine RDM for peak velocity (K0.5 = 0.1 mM Ca2+) but differs for turnoff time (K0.5 = 2.5 mM Ca2+). We tested the hypothesis that a soluble modulator, normally required to confer submicromolar Ca2+ sensitivity, was too dilute in our assay by comparing data obtained at one RDM concentration with those obtained at 10-fold higher RDM, and therefore a constituent protein, concentration. We observe no difference and present a formal analysis of these data that excludes the hypothesis that the soluble modulator binds its target protein with Kd less than 5 microM. The lack of submicromolar Ca2+ dependence of any of the steps in the cGMP cascade that underlie cGMP phosphodiesterase activation and inactivation in vitro argues against Ca2+ regulation of these steps having a significant role in the light adaptation of the intact rod.

摘要

利用pH测定法,在蟾蜍和牛视杆外段膜(RDM)以及含有GTP结合蛋白、磷酸二酯酶和视紫红质激酶的重组系统中,研究了光激活磷酸二酯酶的动力学和光敏感性对Ca2+的依赖性。测量了三个参数:峰值水解速度、关闭时间和达到峰值速度的时间。与单独使用GTP相比,ATP使磷酸二酯酶的光敏感性降低了近10倍,并加速了cGMP水解的暗光闪烁动力学。Ca2+逆转了ATP的所有作用,Ca2+增加了峰值速度、关闭时间和达到峰值速度的时间,使其达到单独使用GTP时获得的值。在蟾蜍RDM中,峰值速度和关闭时间对Ca2+的依赖性可表征为双曲线饱和函数,Ca2+的K0.5为1.0 - 1.5 mM。在牛RDM中,峰值速度和关闭时间对Ca2+的依赖性的K0.5为0.1 mM Ca2+。重组系统中对Ca2+的依赖性在峰值速度方面与牛RDM相似(K0.5 = 0.1 mM Ca2+),但在关闭时间方面有所不同(K0.5 = 2.5 mM Ca2+)。我们通过比较在一种RDM浓度下获得的数据与在高10倍的RDM浓度(即组成蛋白浓度)下获得的数据,检验了这样一种假设,即一种通常需要赋予亚微摩尔Ca2+敏感性的可溶性调节剂在我们的测定中过于稀释。我们没有观察到差异,并对这些数据进行了形式分析,排除了可溶性调节剂以小于5 microM的Kd与其靶蛋白结合的假设。体外cGMP级联反应中任何步骤对亚微摩尔Ca2+的缺乏依赖性,而这些步骤是cGMP磷酸二酯酶激活和失活的基础,这表明Ca2+对这些步骤的调节在完整视杆的光适应中没有重要作用。

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