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蝾螈视杆细胞中光激活和暗激活的磷酸二酯酶调节

Light and dark active phosphodiesterase regulation in salamander rods.

作者信息

Cobbs W H

机构信息

Department of Biochemistry and Biophysics, University of Pennsylvania School of Medicine, Philadelphia 19104-6089.

出版信息

J Gen Physiol. 1991 Sep;98(3):575-614. doi: 10.1085/jgp.98.3.575.

Abstract

We studied the activation of 3',5'-cyclic guanosine monophosphate (cGMP) phosphodiesterase (PDE) by using a cell-permeant enzyme inhibitor. Rods of Ambystoma tigrinum held in a suction electrode were jumped into a stream of 3-isobutyl-1-methylxanthine (IBMX), 0.01-1 mM. Initial transient light-sensitive currents fit the notion that dark and light-activated forms of PDE contributed independently to metabolic activity and were equivalently inhibited by IBMX (apparent Ki 30 microns). Inhibition developed within 50 ms, producing a step decrease of enzyme velocity, which could be offset by activation with flashes or steps of light. The dark PDE activity was equivalent to light activation of enzyme by 1,000 isomerization rod-1s-1, sufficient to hydrolyze the free cGMP pool (1/e) in 0.6 s. Steady light activated PDE in linear proportion to isomerization rate, the range from darkness to current saturation amounting to a 10-fold increase. The conditions for simultaneous onset of inhibitor and illumination to produce no net change of membrane current defined the apparent lifetime of light-activated PDE, TPDE* = 0.9 s, which was independent of both background illumination and current over the range 0-3 x 10(5) isomerization s-1, from 50 to 0 pA. Adaptation was a function of current rather than isomerization: jumps with different proportions of IBMX concentration to steady light intensity produced equal currents, and followed the same course of adaptation in maintained light, despite a 10-fold difference of illumination. Judged from the delay between IBMX- and light-induced currents, the dominant feedback regulatory site comes after PDE on the signal path. The dark active PDE affects the hydrolytic flux and cytoplasmic diffusion of cGMP, as well as the proportional range of the cGMP activity signal in response to light.

摘要

我们通过使用一种可透过细胞的酶抑制剂来研究3',5'-环鸟苷单磷酸(cGMP)磷酸二酯酶(PDE)的激活情况。将虎纹钝口螈的视杆细胞置于吸力电极中,然后跃入含有0.01 - 1 mM 3-异丁基-1-甲基黄嘌呤(IBMX)的溶液流中。初始的瞬时光敏电流符合这样的观点,即PDE的暗激活形式和光激活形式独立地对代谢活性产生贡献,并且被IBMX等效抑制(表观Ki为30 μM)。抑制作用在50毫秒内产生,导致酶活性呈阶梯式下降,而闪光或光阶跃激活可以抵消这种下降。暗PDE活性相当于酶被1000个异构化/视杆细胞·秒 - 1的光激活,足以在0.6秒内水解游离的cGMP池(1/e)。稳定光照下激活的PDE与异构化速率成线性比例,从黑暗到电流饱和的范围相当于增加了10倍。抑制剂和光照同时开始且膜电流无净变化的条件定义了光激活PDE的表观寿命,TPDE* = 0.9秒,在0 - 3×10⁵异构化/秒 - 1、50 - 0 pA的范围内,它与背景光照和电流均无关。适应是电流的函数而非异构化的函数:不同比例的IBMX浓度跃迁至稳定光强度产生相等的电流,并且在持续光照下遵循相同的适应过程,尽管光照相差10倍。从IBMX诱导电流和光诱导电流之间的延迟判断,主要的反馈调节位点位于信号通路中PDE之后。暗激活的PDE影响cGMP的水解通量和细胞质扩散,以及cGMP活性信号响应光的比例范围。

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Control of light-sensitive current in salamander rods.蝾螈视杆细胞中光敏电流的控制
J Physiol. 1988 Sep;403:439-71. doi: 10.1113/jphysiol.1988.sp017258.

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