Robinson P R, Kawamura S, Abramson B, Bownds M D
J Gen Physiol. 1980 Nov;76(5):631-45. doi: 10.1085/jgp.76.5.631.
The light-activated cyclic GMP phosphodiesterase (PDE) of frog photoreceptor membranes has been assayed in isolated outer segments suspended in a low-calcium Ringer's solution. Activation occurs over a range of light intensity that also causes a decrease in the permeability, cyclic GMP levels, and GTP levels of isolated outer segments. At intermediate intensities, PDE activity assumes constant intermediate values determined by the rate of rhodopsin bleaching. Washing causes an increase in maximal enzyme activity. Increasing light intensity from darkness to a level bleaching 5 x 10(3) rhodopsin molecules per outer segment per second shifts the apparent Michaelis constant (Km) from 100 to 900 microM. Maximum enzyme velocity increases at least 10-fold. The component that normally regulates this light-induced increase in the Km of PDE is removed by the customary sucrose flotation procedures. The presence of 10(-3) M Ca++ increases the light sensitivity of PDE, and maximal activation is caused by illumination bleaching only 5 x 10(2) rhodopsin molecules per outer segment per second. Calcium acts by increasing enzyme velocity while having little influence on Km. The effect of calcium appears to require a labile component, sensitive to aging of the outer segment preparation. The decrease in the light sensitivity of PDE that can be observed upon lowering the calcium concentration may be related to the desensitization of the permeability change mechanism that occurs during light adaptation of rod photoreceptors.
青蛙光感受器膜的光激活环鸟苷酸磷酸二酯酶(PDE)已在悬浮于低钙林格氏溶液中的分离外段中进行了测定。在一定范围的光强度下会发生激活,该光强度范围也会导致分离外段的通透性、环鸟苷酸水平和鸟苷三磷酸水平降低。在中等强度下,PDE活性呈现由视紫红质漂白速率决定的恒定中间值。洗涤会导致最大酶活性增加。将光强度从黑暗增加到每秒每个外段漂白5×10³个视紫红质分子的水平,会使表观米氏常数(Km)从100微摩尔变为900微摩尔。最大酶速度至少增加10倍。通常调节这种光诱导的PDE的Km增加的成分可通过常规的蔗糖漂浮程序去除。10⁻³M的Ca²⁺的存在会增加PDE的光敏感性,仅每秒每个外段漂白5×10²个视紫红质分子的光照即可引起最大激活。钙通过增加酶速度起作用,而对Km影响很小。钙的作用似乎需要一个对外部段制剂老化敏感的不稳定成分。降低钙浓度时可观察到的PDE光敏感性降低可能与视杆光感受器光适应过程中发生的通透性变化机制的脱敏有关。