Cohen A I, Blazynski C
Department of Ophthalmology, Washington University School of Medicine, St. Louis, Missouri 63110.
J Gen Physiol. 1988 Dec;92(6):731-46. doi: 10.1085/jgp.92.6.731.
We used an apparatus in which pieces of dark-adapted amphibian retinas (Rana pipiens, Bufo marinus) obtained under infrared illumination were exposed to precise intervals of 500-nm illuminations, and then frozen by contact of their outer segment surface with a liquid helium-cooled copper mirror. Sections of the frozen outer segment layer were obtained in a cryostat and then assayed for total extractable cyclic 3',5'-guanosine monophosphate (cGMP). Significant losses of cGMP with respect to the dark level were evident as early as 60 ms after light onset. With dim subsecond illuminations these losses were surprisingly large, which suggests a previously underestimated magnification in the cGMP cascade, or a transient substantial inhibition of guanylate cyclase activity in combination with increased cyclic GMP phosphodiesterase activity. Within the subsecond period, significant losses that were proportional to light intensity (2-log-unit range) and duration (60-550 ms) were generally not evident. However, losses significantly proportional to these factors became evident with durations of 1 s or longer. When pieces of retina were first illuminated (10 or 60 ms), then held in darkness for increasing periods before freezing, we observed a continuous loss of cGMP during the early postillumination dark period, followed by a recovery of the total cGMP level. The times for recovery to the preillumination level appear to be significantly longer than times reported for the recovery of the photoreceptor membrane potential after similar light exposures.
我们使用了一种装置,在红外照明下获取的暗适应两栖动物视网膜(豹蛙、海蟾蜍)碎片被暴露于精确间隔的500纳米光照下,然后通过其外段表面与液氦冷却的铜镜接触进行冷冻。在低温恒温器中获取冷冻外段层的切片,然后测定总可提取环鸟苷酸(cGMP)。早在光照开始后60毫秒,cGMP相对于暗水平就出现了显著损失。对于昏暗的亚秒级光照,这些损失惊人地大,这表明cGMP级联反应中的放大倍数此前被低估,或者鸟苷酸环化酶活性受到短暂的实质性抑制,同时环鸟苷酸磷酸二酯酶活性增加。在亚秒级时间段内,与光强度(2对数单位范围)和持续时间(60 - 550毫秒)成比例的显著损失通常不明显。然而,当持续时间为1秒或更长时,与这些因素显著成比例的损失变得明显。当视网膜碎片先被光照(10或60毫秒),然后在黑暗中保持不同时长再进行冷冻时,我们观察到在光照后早期的黑暗时间段内cGMP持续损失,随后总cGMP水平恢复。恢复到光照前水平的时间似乎明显长于在类似光照暴露后报道的光感受器膜电位恢复时间。