Iwamoto Masayuki, Furutani Yuji, Sudo Yuki, Shimono Kazumi, Kandori Hideki, Kamo Naoki
Laboratory of Biophysical Chemistry, Graduate School of Pharmaceutical Sciences, Hokkaido University, Sapporo 060-0812, Japan.
Biophys J. 2002 Aug;83(2):1130-5. doi: 10.1016/S0006-3495(02)75236-3.
Pharaonis phoborhodopsin (ppR; also pharaonis sensory rhodopsin II, psRII) is a receptor of the negative phototaxis of Natronobacterium pharaonis. By spectroscopic titration of D193N and D193E mutants, the pK(a) of the Schiff base was evaluated. Asp193 corresponds to Glu204 of bacteriorhodopsin (bR). The pK(a) of the Schiff base (SBH(+)) of D193N was approximately 10.1-10.0 (at XH(+)) and approximately 11.4-11.6 (at X) depending on the protonation state of a certain residue (designated by X) and independent of Cl(-), whereas those of the wild type and D193E were >12. The pK(a) values of XH(+) were approximately 11.8-11.2 at the state of SB, 10.5 at SBH(+) state in the presence of Cl(-), and 9.6 at SBH(+) without Cl(-). These imply the presence of a long-range interaction in the extracellular channel. Asp193 was suggested to be deprotonated in the present dodecyl-maltoside (DDM) solubilized wild-type ppR, which is contrary to Glu204 of bR. In the absence of salts, the irreversible denaturation of D193N (but not the wild type and D193E) occurred via a metastable state, into which the addition of Cl(-) reversed the intact pigment. This suggests that the negative charge at residue 193, which can be substituted by Cl(-), is necessary to maintain the proper conformation in the DDM-solubilized ppR.
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)是法老嗜盐菌负趋光性的受体。通过对D193N和D193E突变体进行光谱滴定,评估了席夫碱的pK(a)。Asp193对应于细菌视紫红质(bR)的Glu204。D193N的席夫碱(SBH(+))的pK(a)约为10.1 - 10.0(在XH(+)时)和约11.4 - 11.6(在X时),这取决于某个残基(由X表示)的质子化状态且与Cl(-)无关,而野生型和D193E的pK(a)大于12。在SB状态下,XH(+)的pK(a)值约为11.8 - 11.2,在存在Cl(-)的SBH(+)状态下为10.5,在不存在Cl(-)的SBH(+)状态下为9.6。这些表明在细胞外通道中存在长程相互作用。有人提出在目前用十二烷基麦芽糖苷(DDM)增溶的野生型ppR中Asp193是去质子化的,这与bR的Glu204相反。在没有盐的情况下,D193N(但不是野生型和D193E)通过亚稳态发生不可逆变性,向其中添加Cl(-)可使完整色素恢复。这表明193位残基上可被Cl(-)取代的负电荷对于维持DDM增溶的ppR中的正确构象是必要的。