Sudo Yuki, Iwamoto Masayuki, Shimono Kazumi, Kamo Naoki
Laboratory of Biophysical Chemistry, Graduate School of Pharmaceutical Sciences, Hokkaido University, Sapporo 060-0812, Japan.
Biochemistry. 2004 Nov 2;43(43):13748-54. doi: 10.1021/bi048803c.
pharaonis phoborhodopsin (ppR; also called pharaonis sensory rhodopsin II, NpSRII) is a receptor for negative phototaxis in Natronomonas (Natronobacterium) pharaonis. In membranes, it forms a 2:2 complex with its transducer protein, pHtrII, which transmits light signals into the cytoplasmic space through protein-protein interactions. We previously found that a specific deprotonated carboxyl of ppR or pHtrII strengthens their binding [Sudo, Y., et al. (2002) Biophys. J. 83, 427-432]. In this study we aim to identify this carboxyl group. Since the D75N mutant has only one photointermediate (ppR(O)(-)(like)) whose existence spans the millisecond time range, the analysis of its decay rate is simple. We prepared various D75N mutants such as D75N/D214N, D75N/K157Q/R162Q/R164Q (D75N/3Gln), D75N/D193N, and D75N/D193E, among which only D75N/D193N did not show pH dependence with regard to the ppR(O)(-)(like) decay rate and K(D) value for binding, implying that the carboxyl group in question is from Asp-193. The pK(a) of this group decreased to below 2 when a complex was formed. Therefore, we conclude that Asp-193(p)()(pR) is connected to the distant transducer-ppR binding surface via hydrogen bonds, thereby modulating its pK(a). In addition, we discuss the importance of Arg-162(p)()(pR) with respect to the binding activity.
法老嗜盐菌视紫红质(ppR;也称为法老嗜盐菌感觉视紫红质II,NpSRII)是嗜盐栖热菌(嗜盐栖热杆菌)中负趋光性的受体。在膜中,它与其转导蛋白pHtrII形成2:2复合物,该复合物通过蛋白质-蛋白质相互作用将光信号传递到细胞质空间。我们之前发现,ppR或pHtrII的一个特定去质子化羧基会增强它们之间的结合[Sudo, Y., 等人(2002年)《生物物理学杂志》83卷,427 - 432页]。在本研究中,我们旨在确定这个羧基。由于D75N突变体只有一种光中间体(ppR(O)(-)(类似物)),其存在跨越毫秒时间范围,因此对其衰减速率的分析很简单。我们制备了各种D75N突变体,如D75N/D214N、D75N/K157Q/R162Q/R164Q(D75N/3Gln)、D75N/D193N和D75N/D193E,其中只有D75N/D193N在ppR(O)(-)(类似物)衰减速率和结合的解离常数(K(D))值方面未表现出pH依赖性,这意味着所讨论的羧基来自Asp - 193。当形成复合物时,该基团的pK(a)降至2以下。因此,我们得出结论,Asp - 193(p)(pR)通过氢键连接到远处的转导蛋白 - ppR结合表面,从而调节其pK(a)。此外,我们讨论了Arg - 162(p)(pR)对结合活性的重要性。