Fodor S P, Gebhard R, Lugtenburg J, Bogomolni R A, Mathies R A
Chemistry Department, University of California, Berkeley 94720.
J Biol Chem. 1989 Nov 5;264(31):18280-3.
Sensory rhodopsin I (SR-I) is a retinal-containing pigment which functions as a phototaxis receptor in Halobacterium halobium. We have obtained resonance Raman vibrational spectra of the native membrane-bound form of SR587 and used these data to determine the structure of its retinal prosthetic group. The similar frequencies and intensities of the skeletal fingerprint modes in SR587, bacteriorhodopsin (BR568), and halorhodopsin (HR578) as well as the position of the dideuterio rocking mode when SR-I is regenerated with 12,14-D2 retinal (915 cm-1) demonstrate that the retinal chromophore has an all-trans configuration. The shift of the C = N stretching mode from 1628 cm-1 in H2O to 1620 cm-1 in D2O demonstrates that the chromophore in SR587 is bound to the protein by a protonated Schiff base linkage. The small shift of the 1195 cm-1 C14-C15 stretching mode in D2O establishes that the protonated Schiff base bond has an anti configuration. The low value of the Schiff base stretching frequency together with its small 8 cm-1 shift in D2O indicates that the Schiff base proton is weakly hydrogen bonded to its protein counterion. This suggests that the red shift in the absorption maximum of SR-I (587 nm) compared with HR (578 nm) and BR (568 nm) is due to a reduction of the electrostatic interaction between the protonated Schiff base group and its protein counterion.
感官视紫红质I(SR-I)是一种含视黄醛的色素,在嗜盐菌中作为趋光性受体发挥作用。我们获得了SR587天然膜结合形式的共振拉曼振动光谱,并利用这些数据确定了其视黄醛辅基的结构。SR587、细菌视紫红质(BR568)和嗜盐视紫红质(HR578)中骨架指纹模式的频率和强度相似,以及当用12,14-D2视黄醛(915 cm-1)再生SR-I时双氘摇摆模式的位置,表明视黄醛发色团具有全反式构型。C = N伸缩模式从H2O中的1628 cm-1移至D2O中的1620 cm-1,表明SR587中的发色团通过质子化席夫碱键与蛋白质结合。D2O中1195 cm-1 C14-C15伸缩模式的小位移表明质子化席夫碱键具有反式构型。席夫碱伸缩频率较低,以及其在D2O中的8 cm-1小位移,表明席夫碱质子与其蛋白质抗衡离子形成弱氢键。这表明与HR(578 nm)和BR(568 nm)相比,SR-I最大吸收峰的红移是由于质子化席夫碱基与其蛋白质抗衡离子之间静电相互作用的减弱。