Hurley J B, Stryer L
J Biol Chem. 1982 Sep 25;257(18):11094-9.
Retinal rod outer segments contain a phosphodiesterase specific for cyclic GMP. This enzyme is virtually inactive in the dark. Photoexcitation of rhodopsin results in the formation of hundreds of molecules of GTP-transducin, which in turn activate many molecules of phosphodiesterase. The phosphodiesterase is also known to be activated by the proteolytic action of trypsin. We have investigated the nature of the inhibitory constraint on the catalytic activity of the phosphodiesterase in the dark state. Phosphodiesterase purified by hexylagarose chromatography followed by gel filtration high pressure liquid chromatography consists of three kinds of subunits: alpha (88 kilodaltons), beta (84 kilodaltons), and gamma (11 kilodaltons). Three lines of evidence show that the phosphodiesterase in the dark state is inhibited by its gamma subunit. First, inhibitor activity copurifies with the catalytic activity of this enzyme. Second, trypsin degrades the gamma subunit, resulting in a concomitant increase in catalytic activity. The high pressure liquid chromatography elution position of trypsin-activated phosphodiesterase suggests that it is an alpha beta complex. Third, nearly all of the catalytic activity of trypsin-activated phosphodiesterase can be inhibited by the addition of gamma subunit purified either by heat treatment or by gel filtration at pH 2.1. The addition of gamma subunit to trypsin-activated phosphodiesterase decreases its Vmax from 1.2 mmol of cyclic GMP hydrolyzed/min/mg to less than 1% of this value with relatively little change in the value of Km. The gamma subunit has high affinity for trypsin-activated phosphodiesterase. The dissociation constant of this complex is 0.13 nM. These experiments show that the phosphodiesterase in the dark state has very little catalytic activity because of the inhibitory constraint imposed by its gamma subunit.
视网膜视杆细胞外段含有一种对环鸟苷酸具有特异性的磷酸二酯酶。这种酶在黑暗中几乎没有活性。视紫红质的光激发导致数百个鸟苷三磷酸 - 转导蛋白分子的形成,进而激活许多磷酸二酯酶分子。已知磷酸二酯酶也可被胰蛋白酶的蛋白水解作用激活。我们研究了黑暗状态下对磷酸二酯酶催化活性的抑制性限制的本质。通过己基琼脂糖层析,然后进行凝胶过滤高压液相色谱法纯化的磷酸二酯酶由三种亚基组成:α(88千道尔顿)、β(84千道尔顿)和γ(11千道尔顿)。三条证据表明,黑暗状态下的磷酸二酯酶受到其γ亚基的抑制。首先,抑制活性与该酶的催化活性共纯化。其次,胰蛋白酶降解γ亚基,导致催化活性随之增加。胰蛋白酶激活的磷酸二酯酶的高压液相色谱洗脱位置表明它是一种αβ复合物。第三,几乎所有胰蛋白酶激活的磷酸二酯酶的催化活性都可被添加通过热处理或在pH 2.1下凝胶过滤纯化的γ亚基所抑制。向胰蛋白酶激活的磷酸二酯酶中添加γ亚基会使其Vmax从每分钟每毫克水解1.2毫摩尔环鸟苷酸降至该值的不到1%,而Km值变化相对较小。γ亚基对胰蛋白酶激活的磷酸二酯酶具有高亲和力。该复合物的解离常数为0.13 nM。这些实验表明,黑暗状态下的磷酸二酯酶由于其γ亚基施加的抑制性限制而几乎没有催化活性。