Sudo Yuki, Iwamoto Masayuki, Shimono Kazumi, Kamo Naoki
Laboratory of Biophysical Chemistry, Graduate School of Pharmaceutical Sciences, Hokkaido University, Sapporo 060-0812, Japan.
Biophys J. 2002 Jul;83(1):427-32. doi: 10.1016/S0006-3495(02)75180-1.
pharaonis Phoborhodopsin (ppR; also pharaonis sensory rhodopsin II, psRII) is a retinal protein in Natronobacterium pharaonis and is a receptor of negative phototaxis. It forms a complex with its transducer, pHtrII, in membranes and transmits light signals by protein-protein interaction. Tyr-199 is conserved completely in phoborhodopsins among a variety of archaea, but it is replaced by Val (for bacteriorhodopsin) and Phe (for sensory rhodopsin I). Previously, we (Sudo, Y., M. Iwamoto, K. Shimono, and N. Kamo, submitted for publication) showed that analysis of flash-photolysis data of a complex between D75N and the truncated pHtrII (t-Htr) give a good estimate of the dissociation constant K(D) in the dark. To investigate the importance of Tyr-199, K(D) of double mutants of D75N/Y199F or D75N/Y199V with t-Htr was estimated by flash-photolysis and was approximately 10-fold larger than that of D75N, showing the significant contribution of Tyr-199 to binding. The K(D) of the D75N/t-Htr complex increased with decreasing pH, and the data fitted well with the Henderson-Hasselbach equation with a single pK(a) of 3.86 +/- 0.02. This suggests that certain deprotonated carboxyls at the surface of the transducer (possibly Asp-102, Asp-104, and Asp-106) are needed for the binding.
法老嗜盐菌视紫红质(ppR;也称为法老嗜盐菌感官视紫红质II,psRII)是嗜盐栖热放线菌中的一种视网膜蛋白,是负趋光性的受体。它在膜中与其转导蛋白pHtrII形成复合物,并通过蛋白质-蛋白质相互作用传递光信号。在各种古生菌的嗜盐菌视紫红质中,Tyr-199完全保守,但在细菌视紫红质中被Val取代,在感官视紫红质I中被Phe取代。此前,我们(Sudo,Y.,M. Iwamoto,K. Shimono和N. Kamo,已提交发表)表明,对D75N与截短的pHtrII(t-Htr)之间复合物的闪光光解数据进行分析,可以很好地估计黑暗中的解离常数K(D)。为了研究Tyr-199的重要性,通过闪光光解估计了D75N/Y199F或D75N/Y199V与t-Htr的双突变体的K(D),其比D75N的K(D)大约大10倍,表明Tyr-199对结合有显著贡献。D75N/t-Htr复合物的K(D)随pH降低而增加,数据与亨德森-哈塞尔巴赫方程拟合良好,单一pK(a)为3.86±0.02。这表明转导蛋白表面某些去质子化的羧基(可能是Asp-102、Asp-104和Asp-106)对于结合是必需的。