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法老嗜盐菌视紫红质(感官视紫红质II)的带电残基在其与转导蛋白相互作用中的作用

Role of charged residues of pharaonis phoborhodopsin (sensory rhodopsin II) in its interaction with the transducer protein.

作者信息

Sudo Yuki, Iwamoto Masayuki, Shimono Kazumi, Kamo Naoki

机构信息

Laboratory of Biophysical Chemistry, Graduate School of Pharmaceutical Sciences, Hokkaido University, Sapporo 060-0812, Japan.

出版信息

Biochemistry. 2004 Nov 2;43(43):13748-54. doi: 10.1021/bi048803c.

Abstract

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.

摘要

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。

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