首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Protonation state of Asp (Glu)-85 regulates the purple-to-blue transition in bacteriorhodopsin mutants Arg-82----Ala and Asp-85----Glu: the blue form is inactive in proton translocation.
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Protonation state of Asp (Glu)-85 regulates the purple-to-blue transition in bacteriorhodopsin mutants Arg-82----Ala and Asp-85----Glu: the blue form is inactive in proton translocation.

机译:Asp(Glu)-85的质子化状态调节细菌视紫红质突变体Arg-82 ---- Ala和Asp-85 ---- Glu的紫色到蓝色过渡:蓝色形式在质子移位中没有活性。

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摘要

Previous studies with site-specific mutants of bacteriorhodopsin have demonstrated that replacement of Asp-85 or Arg-82 affects the absorption spectrum. Between pH 5.5 and 7, the Asp-85----Glu and Arg-82----Ala mutants exist in a pH-dependent equilibrium between purple (lambda max approximately 550/540 nm) and blue (lambda max approximately 600/590 nm) forms of the pigment. Measurement of proton transport as a function of wavelength in reconstituted vesicles shows that proton-pumping activities for the above mutants reside exclusively in their respective purple species. For both mutants, formation of the blue form with decreasing pH is accompanied by loss of proton transport activity. The Asp-85----Asn mutant displays a blue chromophore (lambda max approximately 588 nm), is inactive in proton translocation from pH 5 to 7.5, and shows no transition to the purple form. In contrast, the Asp-212----Asn mutant is purple (lambda max approximately 555 nm) and shows no transition to a blue chromophore with decreasing pH. The experiments suggest that (i) the pKa of the purple-to-blue transition is directly influenced by the pKa of the carboxylate at residue 85 and (ii) the relative strengths of interaction between the protonated Schiff base, Asp-85, Asp-212, and Arg-82 make a major contribution to the regulation of color and function of bacteriorhodopsin.
机译:先前对细菌视紫红质的位点特异性突变体的研究表明,替换Asp-85或Arg-82会影响吸收光谱。在pH 5.5到7之间,Asp-85 ---- Glu和Arg-82 ---- Ala突变体以紫色(λ最大约为550/540 nm)和蓝色(λ最大约为600)之间的pH依赖平衡存在。 / 590nm)形式的颜料。在重构的囊泡中质子转运作为波长的函数的测量表明,上述突变体的质子泵浦活性仅存在于它们各自的紫色物种中。对于这两个突变体,随着pH降低形成蓝色形式会伴随质子转运活性的丧失。 Asp-85 ---- Asn突变体显示蓝色发色团(λ最大约588 nm),质子从pH 5到7.5的质子移位无活性,并且没有转变为紫色形式。相比之下,Asp-212 ---- Asn突变体是紫色的(λ最大值约为555 nm),并且在pH降低的情况下未显示向蓝色生色团的转变。实验表明(i)紫色到蓝色过渡的pKa直接受到残基85处羧酸盐的pKa的影响,并且(ii)质子化席夫碱,Asp-85,Asp-的质子化相互作用的相对强度212和Arg-82对细菌视紫红质的颜色和功能的调节起主要作用。

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