Okada T, Matsuda T, Kandori H, Fukada Y, Yoshizawa T, Shichida Y
Department of Biophysics, Faculty of Science, Kyoto University, Japan.
Biochemistry. 1994 Apr 26;33(16):4940-6. doi: 10.1021/bi00182a024.
Through low-temperature absorption and circular dichroism (CD) spectroscopies, and G-protein (transducin) binding experiments, we have investigated molecular properties of the meta II intermediate of iodopsin, a cone visual pigment present in chicken red-sensitive cones. The meta II intermediate of iodopsin (metaiodopsin II, lambda max = 390 nm) displayed a positive CD band at about 390 nm and a large negative CD band below 300 nm. It dissociated into all-trans-retinal and the protein moiety. A long-lived intermediate corresponding to the meta III intermediate of rhodopsin was not observed in iodopsin, under our experimental conditions. Decay of metaiodopsin II was significantly suppressed in the presence of transducin, but not in the presence of both transducin and GTP, indicating that metaiodopsin II can interact with transducin and activate it. Both metaiodopsin II and metarhodopsin II displayed a large negative CD band below 300 nm. This fact suggested that during the formation of both meta II intermediates, some aromatic amino acid residues and/or a disulfide bond are rearranged, which may be important for expression of catalytic activity for exchange of GDP to GTP on transducin. On the other hand, metaiodopsin II decayed more than 10 times faster than metarhodopsin II. This fact may be one of the reasons why cones are less photosensitive than rods.
通过低温吸收光谱、圆二色(CD)光谱以及G蛋白(转导蛋白)结合实验,我们研究了视碘紫红质的间II中间体的分子特性,视碘紫红质是存在于鸡红色敏感视锥细胞中的一种视锥视觉色素。视碘紫红质的间II中间体(变视紫红质II,λmax = 390 nm)在约390 nm处显示出一个正CD带,在300 nm以下有一个大的负CD带。它分解为全反式视黄醛和蛋白质部分。在我们的实验条件下,视碘紫红质中未观察到对应于视紫红质间III中间体的长寿命中间体。在转导蛋白存在的情况下,变视紫红质II的衰变被显著抑制,但在转导蛋白和GTP都存在的情况下则没有,这表明变视紫红质II可以与转导蛋白相互作用并激活它。变视紫红质II和变视紫红质II在300 nm以下都显示出一个大的负CD带。这一事实表明,在两种间II中间体的形成过程中,一些芳香族氨基酸残基和/或二硫键发生了重排,这可能对于在转导蛋白上催化GDP与GTP交换的活性表达很重要。另一方面,变视紫红质II的衰变速度比变视紫红质II快10倍以上。这一事实可能是视锥细胞比视杆细胞光敏性低的原因之一。