Kitagawa T, Nishina Y, Kyogoku Y, Yamano T, Ohishi N, Takai-Suzuki A, Yagi K
Biochemistry. 1979 May 1;18(9):1804-8. doi: 10.1021/bi00576a026.
The resonance Raman spectra of [2-13C]-, [4a-13C]-, [4-13C]-8 [10a-13C]-, [2,4,4a, 10a-13C]-, [5-15N]-, [1,3-15N]-, and [1,3,5-15N]riboflavin bound to egg-white proteins were observed for N(3)-H and N(3)-D forms with spontaneous Raman technique by using the 488.0-nm excitation line of an argon ion laser. The fluorescence of riboflavin was quenched by forming a complex with egg-white riboflavin binding protein. The in-plane displacements of the C(2), C(4a), N(1), N(3), and N(5) atoms during each Raman active vibration were calculated from the observed isotopic frequency shifts. The 1252-cm-1 mode of the N(3)-H form was found to involve large vibrational displacements of the C(2) and N(3) atoms and to be strongly coupled with the N(3)-H bending mode. This line can be used as an indicator for state of N(3)-H...protein interaction. The 1584-cm-1 mode, which is known to be resonance-enhanced upon excitation near the 370-nm absorption band, was accompanied by the displacement of the N(5) atom in particular. The 1355-cm-1 mode was most strongly resonance-enhanced by the 450-nm absorption band and involved the displacements of all carbon atoms of ring III. Both lines can be used as structure probes for elucidating the structure of electronically excited states of isoalloxazine.
利用氩离子激光的488.0nm激发线,采用自发拉曼技术观察了与蛋清蛋白结合的[2-13C]-、[4a-13C]-、[4-13C]-、[10a-13C]-、[2,4,4a,10a-13C]-、[5-15N]-、[1,3-15N]-和[1,3,5-15N]核黄素的共振拉曼光谱,研究了N(3)-H和N(3)-D形式。核黄素通过与蛋清核黄素结合蛋白形成复合物而淬灭荧光。根据观察到的同位素频移计算了每个拉曼活性振动过程中C(2)、C(4a)、N(1)、N(3)和N(5)原子的面内位移。发现N(3)-H形式的1252cm-1模式涉及C(2)和N(3)原子的大振动位移,并与N(3)-H弯曲模式强烈耦合。这条谱线可作为N(3)-H...蛋白质相互作用状态的指示剂。已知在370nm吸收带附近激发时共振增强的1584cm-1模式,尤其伴随着N(5)原子的位移。1355cm-1模式在450nm吸收带的共振增强最为强烈,涉及环III所有碳原子的位移。这两条谱线都可作为结构探针,用于阐明异咯嗪电子激发态的结构。