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The ability of actinic light to modify the bacteriorhodopsin photocycle revisited: Heterogeneity vs photocooperativity

机译:再次探讨了光化学光修饰细菌视紫红质光周期的能力:异质性与光合作性

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摘要

In 1995, evidence both for photocooperativity and for heterogeneity as possible explanations for the ability of actinic light to modify the kinetics and pathways of the bacteriorhodopsin (BR) photocycle was reviewed (Shrager, R. I., Hendler, R. W., and Bose, S. (1995) Eur. J. Biochem. 229, 589-595). Because both concepts could be successfully modeled to experimental data and there was suggestive published evidence for both, it was concluded that both photocooperativity and heterogeneity may be involved in the adaptation of the BR photocycle to different levels of actinic light. Since that time, more information has become available and it seemed appropriate to revisit. the original question. In addition to the traditional models based on all intermediates in strict linear sequences, we have considered both homogeneous and heterogeneous models with branches. It is concluded that an explanation based on heterogeneity is more likely to be the true basis for the variation of the properties of the photocycle caused by changes in actinic light intensity. On the basis of new information presented here, it seems that a heterogeneous branched model is more likely than one with separate linear sequences.
机译:1995年,综述了光合作性和异质性的证据,这些证据可能是光化学光改变细菌视紫红质(BR)光循环动力学和途径的能力的解释(Shrager,RI,Hendler,RW,and Bose,S.(1995)。 (Eur.J.Biochem.229,589-595)。因为这两个概念都可以成功地建模为实验数据,并且有暗示的公开证据,所以可以得出结论,光合作性和异质性都可能与BR光循环对不同水平的光化光的适应有关。自那时以来,已有更多信息可供使用,似乎有必要重新访问。原来的问题。除了基于严格线性序列中所有中间体的传统模型之外,我们还考虑了带有分支的同构模型和异构模型。结论是,基于异质性的解释更可能是由光化光强度变化引起的光循环特性变化的真实基础。根据此处提供的新信息,似乎异构分支模型比具有单独线性序列的模型更可能。

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