Crescitelli F
J Gen Physiol. 1979 May;73(5):541-52. doi: 10.1085/jgp.73.5.541.
The 521-pigment extracted out of the retina of the Tokay gecko has the typical stereospecificity of the vertebrate visual pigments. This is true for the pigment in the chloride-depleted, "blue-shifted" state as well as for the normal pigment with added chloride. While in the chloride-deficient state, pigment regeneration occurred with both 11-cis- and 9-cis-retinals and the regenerated photopigments were also in the blue-shifted, chloride-depleted state. As with the native pigment, these regenerated pigments were bathochromically shifted to their normal positions by the addition of chloride. Chloride-deficient opsin by itself also responded to chloride for the pigment regenerated with 11-cis-retinal from such chloride-treated opsin was in the normal 521-position. Regeneration was always rapid, reaching completion in less than 5 min, and was significantly faster than for cow rhodopsin regenerating under the same conditions. This rapid rate was found with or without chloride, with both 11-cis- and 9-cis-retinals and in the presence of the sulfhydryl poison, p-hydroxymercuribenzoate (PMB). Like the native chloride-deficient pigment, the regenerated chloride-depleted photopigments responded to PMB by a blue shift beyond the position of the chloride-deficient state. The addition of chloride to these "poisoned" regenerated pigments caused a bathochromic shift of such magnitude as to indicate a repair of both the PMB and chloride-deficient blue shift. In this discussion the possible implications of these results to phylogenetic considerations are considered as well as to some molecular properties of the 521-pigment.
从蛤蚧视网膜中提取的521色素具有脊椎动物视觉色素典型的立体特异性。无论是处于氯化物缺失的“蓝移”状态的色素,还是添加了氯化物的正常色素,均是如此。在氯化物缺乏状态下,11-顺式视黄醛和9-顺式视黄醛均可使色素再生,且再生的光色素也处于蓝移、氯化物缺失状态。与天然色素一样,添加氯化物后,这些再生色素的吸收峰向红移至正常位置。本身缺乏氯化物的视蛋白在用经氯化物处理的视蛋白与11-顺式视黄醛再生色素时,也对氯化物有反应,因为再生色素处于正常的521位置。再生过程总是很快,不到5分钟即可完成,且明显快于相同条件下牛视紫红质的再生速度。无论有无氯化物,使用11-顺式视黄醛和9-顺式视黄醛,以及在存在巯基毒物对羟基汞苯甲酸(PMB)的情况下,均能发现这种快速再生速度。与天然的缺乏氯化物的色素一样,再生的缺乏氯化物的光色素对PMB的反应是蓝移至超过缺乏氯化物状态的位置。向这些“中毒”的再生色素中添加氯化物会引起如此大的红移,表明PMB和缺乏氯化物引起的蓝移均得到修复。在本讨论中,考虑了这些结果对系统发育的可能影响以及对521色素某些分子特性的影响。