Deterre P, Bigay J, Forquet F, Robert M, Chabre M
Laboratoire de Biophysique Moléculaire et Cellulaire, Unité Associée 520 du Centre National de la Recherche Scientifique, DRF/CENG, Grenoble, France.
Proc Natl Acad Sci U S A. 1988 Apr;85(8):2424-8. doi: 10.1073/pnas.85.8.2424.
The cGMP phosphodiesterase (PDE) of cattle retinal rod outer segments comprises three types of subunits: the two heavy catalytic ones, PDE alpha and PDE beta, each around 85 kDa, and the light inhibitory one, PDE gamma or I (11 kDa). The relative stoichiometry is usually assumed to be 1:1:1. PDE activation in the visual transduction cascade results from removal of the inhibitor by the alpha subunit of transducin (T alpha). The stoichiometric complex T alpha-I, separated from activated PDE, has been isolated and characterized. Analyzing now the activated PDE, we find that it still contains some inhibitor and is resolvable into two species, one with 50% of the inhibitor content of the native enzyme and the other totally devoid of it. The same two species are observed upon activation of PDE by very short tryptic proteolysis, which specifically degrades the inhibitor. This leads us to conclude that the composition of the native enzyme is PDE alpha beta-I2. The two inhibitory subunits are differentially bound, sequentially removable, and exchangeable between the native complex PDE alpha beta-I2 and the fully active PDE alpha beta. The possibility of this exchange precludes as yet an unambiguous estimate of the actual activity of the intermediate complex PDE alpha beta-I. The differential binding and the exchangeability of the inhibitors raises the possibility of a fast, diffusion controlled, switch-off mechanism of PDE activity after a flash, which would shortcut the inactivation resulting from the slow GTPase rate of transducin.
牛视网膜杆状外段的cGMP磷酸二酯酶(PDE)由三种亚基组成:两种重催化亚基,PDEα和PDEβ,每个约85 kDa,以及轻抑制亚基,PDEγ或I(11 kDa)。通常假定相对化学计量比为1:1:1。视觉转导级联中的PDE激活是由转导素(Tα)的α亚基去除抑制剂导致的。已分离并表征了与活化的PDE分离的化学计量复合物Tα-I。现在分析活化的PDE,我们发现它仍然含有一些抑制剂,并且可分解为两种类型,一种含有天然酶50%的抑制剂含量,另一种则完全不含抑制剂。通过非常短的胰蛋白酶蛋白水解激活PDE时也观察到相同的两种类型,这种蛋白水解特异性地降解抑制剂。这使我们得出结论,天然酶的组成是PDEαβ-I2。两个抑制亚基以不同方式结合,可顺序去除,并且在天然复合物PDEαβ-I2和完全活性的PDEαβ之间可交换。这种交换的可能性使得目前还无法对中间复合物PDEαβ-I的实际活性进行明确估计。抑制剂的差异结合和可交换性增加了在闪光后PDE活性存在快速、扩散控制的关闭机制的可能性,这将缩短由转导素缓慢的GTPase速率导致的失活过程。