首页> 美国卫生研究院文献>Biophysical Journal >Photochemistry in dried polymer films incorporating the deionized blue membrane form of bacteriorhodopsin.
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Photochemistry in dried polymer films incorporating the deionized blue membrane form of bacteriorhodopsin.

机译:干燥的聚合物膜中的光化学结合了细菌视紫红质的去离子蓝膜形式。

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摘要

The preparation and photochemical properties of dried deionized blue membrane (dIbR600; lambdamax approximately 600 nm, epsilon approximately 54, 760 cm-1 M-1, f approximately 1.1) in polyvinyl alcohol films are studied. Reversible photoconversion from dIbR600 to the pink membrane (dIbR485; lambdamax approximately 485 nm) is shown to occur in these films under conditions of strong 647-nm laser irradiation. The pink membrane analog, dIbR485, has a molar extinction coefficient of approximately 39,000 cm-1 M-1 (f approximately 1.2). The ratio of pink --> blue and blue --> pink quantum efficiencies is 33 +/- 5. We observe an additional blue-shifted species (dIbR455, lambdamax approximately 455 nm) with a very low oscillator strength (f approximately 0.6, epsilon approximately 26,000 cm-1 M-1). This species is the product of fast thermal decay of dIbR485. Molecular modeling indicates that charge/charge and charge/dipole interactions introduced by the protonation of ASP85 are responsible for lowering the excited-state all-trans --> 9-cis barrier to approximately 6 kcal mol-1 while increasing the corresponding all-trans --> 13-cis barrier to approximately 4 kcal mol-1. Photochemical formation of both 9-cis and 13-cis photoproducts are now competitive, as is observed experimentally. We suggest that dIbR455 may be a 9-cis, 10-s-distorted species that partially divides the chromophore into two localized conjugated segments with a concomitant blue shift and decreased oscillator strength of the lambdamax absorption band.
机译:研究了聚乙烯醇薄膜中干燥的去离子蓝膜(dIbR600; lamaxamax约600 nm,ε约54,760 cm-1 M-1,f约1.1)的制备和光化学性质。从dIbR600到粉红色膜(dIbR485; lambdamax约485 nm)的可逆光转换显示在强647 nm激光照射条件下发生在这些膜中。粉红膜类似物dIbR485的摩尔消光系数约为39,000 cm-1 M-1(f约为1.2)。粉色->蓝色和蓝色->粉色量子效率之比为33 +/-5。我们观察到另一种蓝移物种(dIbR455,lambdamax约为455 nm),其振荡强度非常低(f约为0.6,约26,000 cm-1 M-1)。该物种是dIbR485快速热衰减的产物。分子模型表明,由ASP85的质子化引入的电荷/电荷和电荷/偶极子相互作用可将激发态全反式-> 9-顺式势垒降低至约6 kcal mol-1,同时增加相应的全反式-> 13-顺式势垒约4 kcal mol-1。正如实验观察到的那样,9-顺式和13-顺式光产物的光化学形成现在具有竞争性。我们建议dIbR455可能是一个9顺式,10 s扭曲的物种,它将生色团部分地分为两个局部共轭链段,伴随着蓝移和lambdamax吸收带的振荡强度降低。

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