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Uv-visible spectroscopy of bacteriorhodopsin mutants: substitution of Arg-82, Asp-85, Tyr-185, and Asp-212 results in abnormal light-dark adaptation.

机译:细菌视紫红质突变体的紫外可见光谱:Arg-82,Asp-85,Tyr-185和Asp-212的取代导致异常的明暗适应。

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摘要

The light-dark adaptation reactions of a set of bacteriorhodopsin (bR) mutants that affect function and color of the chromophore were examined by using visible absorption spectroscopy. The absorbance spectra of the mutants Arg-82 in equilibrium Ala (Gln), Asp-85 in equilibrium Ala (Asn, Glu), Tyr-185 in equilibrium Phe, and Asp-212 in equilibrium Ala (Asn, Glu) were measured at different pH values during and after illumination. None of these mutants exhibited a normal dark-light adaptation, which in wild-type bR causes a red shift of the visible absorption maximum from 558 nm (dark-adapted bR) to 568 nm (light-adapted bR). Instead a reversible light reaction occurs in the Asp-85 and Asp-212 mutants from a blue form with lambda max near 600 nm to a pink form with lambda max near 480 nm. This light-induced shift explains the appearance of a reversed light adaptation previously observed for the Asp-212 mutants. In the case of the Tyr-185 and Arg-82 mutants, light causes a purple-to-blue transformation similar to the effect of lowering the pH. However, the blue forms observed in these mutants are not identical to those formed by acid titration or deionization of wild-type bR. It is suggested that in all of these mutants, the chromophore has lost the ability to undergo the normal 13-cis, 15-syn to all-trans, 15-anti light-driven isomerization, which occurs in native bR. Instead these mutants may have as stable forms all-trans,syn and 13-cis,anti chromophores, which are not allowed in native bR, except transiently.
机译:使用可见吸收光谱法检查了一组细菌视紫红质(bR)突变体的光暗适应反应,这些突变体会影响生色团的功能和颜色。测定了在平衡Ala(Gln)中的突变体Arg-82,在平衡Ala(Asn,Glu)中的Asp-85,在平衡Phe中的Tyr-185和在平衡Ala(Asn,Glu)中的Asp-212的吸收光谱。照明期间和照明之后的pH值不同。这些突变体均未显示出正常的暗光适应性,这在野生型bR中导致可见光吸收最大值从558 nm(暗适应性bR)到568 nm(光照适应性bR)发生红移。取而代之的是,Asp-85和Asp-212突变体发生可逆的光反应,从λ最大在600 nm附近的蓝色形式变为粉红色在λ最大在480 nm附近的形式。这种光诱导的位移解释了先前对Asp-212突变体观察到的逆光适应的出现。在Tyr-185和Arg-82突变体的情况下,光会导致紫色到蓝色的转化,类似于降低pH的效果。但是,在这些突变体中观察到的蓝色形式与通过酸滴定或将野生型bR去离子化而形成的蓝色形式不同。提示在所有这些突变体中,生色团都丧失了发生于天然bR中的正常13-顺式,15-syn转化为全反式,15-反光驱动的异构化的能力。取而代之的是,这些突变体可以具有稳定形式的全反式,顺式和13-顺式反生色团,在天然bR中是不允许的,除非是短暂的。

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