Subramaniam S, Greenhalgh D A, Khorana H G
Department of Biology, Massachusetts Institute of Technology, Cambridge 02139.
J Biol Chem. 1992 Dec 25;267(36):25730-3.
In bacteriorhodopsin Asp85 has been proposed to function both as a negative counterion to the Schiff base and as proton acceptor in the early stages of the photocycle. To test this proposal further, we have replaced Asp85 by His. The rationale for this replacement is that although His can function as a proton acceptor, it cannot provide a negative charge at residue 85 to serve as a counterion to the protonated Schiff base. We show here that the absorption spectrum of the D85H mutant is highly sensitive to the pH of the external medium. From spectroscopic titrations, we have determined the apparent pK for deprotonation of the Schiff base to be 8.8 +/- 0.1 and the apparent pK for protonation of the His85 side chain to be approximately 3.5. Between pH 3.5 and 8.8, where the Schiff base is protonated, and the His side chain is deprotonated, the D85H mutant is completely inactive in proton transport. Time-resolved studies show that there is no detectable formation of an M-like intermediate in the photocycle of the D85H mutant. These experiments show that the presence of a neutral proton-accepting moiety at residue 85 is not sufficient for carrying out light-driven proton transport. The requirements at residue 85 are therefore for a group that serves both as a negatively charged counterion and as a proton acceptor.
在细菌视紫红质中,有人提出天冬氨酸85既作为席夫碱的负抗衡离子,又在光循环的早期阶段作为质子受体。为了进一步验证这一观点,我们用组氨酸取代了天冬氨酸85。进行这种取代的基本原理是,虽然组氨酸可以作为质子受体,但它不能在85位残基处提供负电荷作为质子化席夫碱的抗衡离子。我们在此表明,D85H突变体的吸收光谱对外部介质的pH值高度敏感。通过光谱滴定,我们确定席夫碱去质子化的表观pK值为8.8±0.1,组氨酸85侧链质子化的表观pK值约为3.5。在pH值为3.5至8.8之间,此时席夫碱质子化,组氨酸侧链去质子化,D85H突变体在质子转运方面完全无活性。时间分辨研究表明,在D85H突变体的光循环中没有可检测到的M样中间体形成。这些实验表明,85位残基处存在中性质子接受部分不足以进行光驱动的质子转运。因此,85位残基的要求是一个既作为带负电荷的抗衡离子又作为质子受体的基团。