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Probing the photoreaction mechanism of phytochrome through analysis of resonance Raman vibrational spectra of recombinant analogues.

机译:通过分析重组类似物的共振拉曼振动光谱,探索植物色素的光反应机理。

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摘要

Resonance Raman spectra of native and recombinant analogues of oat phytochrome have been obtained and analyzed in conjunction with normal mode calculations. On the basis of frequency shifts observed upon methine bridge deuteration and vinyl and C(15)-methine bridge saturation of the chromophore, intense Raman lines at 805 and 814 cm(-)(1) in P(r) and P(fr), respectively, are assigned as C(15)-hydrogen out-of-plane (HOOP) wags, lines at 665 cm(-)(1) in P(r) and at 672 and 654 cm(-)(1) in P(fr) are assigned as coupled C=C and C-C torsions and in-plane ring twisting modes, and modes at approximately 1300 cm(-)(1) in P(r) are coupled N-H and C-H rocking modes. The empirical assignments and normal mode calculations support proposals that the chromophore structures in P(r) and P(fr) are C(15)-Z,syn and C(15)-E,anti, respectively. The intensities of the C(15)-hydrogen out-of-plane, C=C and C-C torsional, and in-plane ring modes in both P(r) and P(fr) suggest that the initial photochemistry involves simultaneous bond rotations at the C(15)-methine bridge coupled to C(15)-H wagging and D-ring rotation. The strong nonbonded interactions of the C- and D-ring methyl groups in the C(15)-E,anti P(fr) chromophore structure indicated by the intense 814 cm(-1) C(15) HOOP mode suggest that the excited state of P(fr) and its photoproduct states are strongly coupled.
机译:燕麦光敏色素的天然和重组类似物的共振拉曼光谱已获得,并结合正常模式计算进行了分析。根据次甲基桥氘化以及生色团的乙烯基和C(15)-次甲基桥饱和时观察到的频移,P(r)和P(fr)中在805和814 cm(-)(1)处出现强烈的拉曼谱线分别指定为P(r)中665 cm(-)(1)和672和654 cm(-)(1)中的C(15)-氢平面外(HOOP)摇摆P(fr)被指定为耦合的C = C和CC扭转以及面内环形扭曲模式,而P(r)中大约1300 cm(-)(1)处的模式为NH和CH摇摆模式。经验分配和法向模态计算支持以下建议:P(r)和P(fr)中的发色团结构分别为C(15)-Z,syn和C(15)-E,anti。在P(r)和P(fr)中,C(15)-氢面外,C = C和CC扭转以及面内环模的强度表明,初始光化学涉及同时的键旋转C(15)-次甲基桥耦合到C(15)-H摆动和D环旋转。强烈的814 cm(-1)C(15)HOOP模式指示的C(15)-E,抗P(fr)生色团结构中的C和D环甲基强烈的非键相互作用P(fr)的态与它的光积态强耦合。

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