Das Joydip, Crouch Rosalie K, Ma Jian-xing, Oprian Daniel D, Kono Masahiro
Department of Ophthalmology, Medical University of South Carolina, Charleston, South Carolina 29425, USA.
Biochemistry. 2004 May 11;43(18):5532-8. doi: 10.1021/bi036097u.
In rhodopsin, the 9-methyl group of retinal has previously been identified as being critical in linking the ligand isomerization with the subsequent protein conformational changes that result in the activation of its G protein, transducin. Here, we report studies on the role of this methyl group in the salamander rod and cone pigments. Pigments were generated by combining proteins expressed in COS cells with 11-cis 9-demethyl retinal, where the 9-methyl group on the polyene chain has been deleted. The absorption spectra of all pigments were blue-shifted. The red cone and blue cone/green rod pigments were unstable to hydroxylamine; whereas, the rhodopsin and UV cone pigments were stable. The lack of the 9-methyl group of the chromophore did not affect the ability of the red cone and blue cone/green rod pigments to activate transducin. On the other hand, with the rhodopsin and UV cone pigments, activation was diminished. Interestingly, the red cone pigment containing the retinal analogue remained active longer than the native pigment. Thus, the 9-methyl group of retinal is not important in the activation pathway of the red cone and blue cone/green rod pigments. However, for the red cone pigment, the 9-methyl group of retinal appears to be critical in the deactivation pathway.
在视紫红质中,视网膜的9-甲基基团先前已被确定在将配体异构化与随后导致其G蛋白转导素激活的蛋白质构象变化联系起来方面起着关键作用。在此,我们报告了关于该甲基基团在蝾螈视杆和视锥色素中的作用的研究。通过将COS细胞中表达的蛋白质与11-顺式9-去甲基视网膜结合来生成色素,其中多烯链上的9-甲基基团已被去除。所有色素的吸收光谱均发生蓝移。红色视锥色素和蓝视锥/绿视杆色素对羟胺不稳定;而视紫红质和紫外视锥色素则稳定。发色团缺乏9-甲基基团并不影响红色视锥色素和蓝视锥/绿视杆色素激活转导素的能力。另一方面,对于视紫红质和紫外视锥色素,其激活能力减弱。有趣的是,含有视网膜类似物的红色视锥色素比天然色素保持活性的时间更长。因此,视网膜的9-甲基基团在红色视锥色素和蓝视锥/绿视杆色素的激活途径中并不重要。然而,对于红色视锥色素而言,视网膜的9-甲基基团在失活途径中似乎至关重要。