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天冬氨酸残基85、96、115或212的替换会影响细菌视紫红质释放和摄取质子的量子产率及动力学。

Replacement of aspartic residues 85, 96, 115, or 212 affects the quantum yield and kinetics of proton release and uptake by bacteriorhodopsin.

作者信息

Marinetti T, Subramaniam S, Mogi T, Marti T, Khorana H G

机构信息

Biophysics Laboratory, Rockefeller University, New York, NY 10021.

出版信息

Proc Natl Acad Sci U S A. 1989 Jan;86(2):529-33. doi: 10.1073/pnas.86.2.529.

Abstract

Recently, a number of aspartic acid mutants of bacteriorhodopsin have been shown to be defective in steady-state proton transport. Here we report time-resolved measurements of light-induced proton release and uptake for these mutants. Proton transfers between the protein and the aqueous phase were directly monitored by measuring changes in the bulk conductivity of a micellar solution of bacteriorhodopsin. For the Asp-96----Asn mutant, proton uptake was slowed by greater than 1 order of magnitude with no observable effect on the release step. For Asp-85----Asn, H+ uptake occurred with normal kinetics, but the yield was significantly lower compared with either the Asp-96----Asn mutant or wild type, especially at pH 6. Substitution of glutamate for Asp-85 or Asp-96 had smaller but detectable effects on the kinetics and quantum yield of proton movements. Both asparagine and glutamate substitutions of aspartates at positions 115 and 212 lowered the proton quantum yields. Of these, only the Asp-115----Asn mutant showed an effect on the proton release step, and only the Asp-212----Glu mutation decreased the proton uptake rate. These experiments imply an obligatory role for Asp-96 in H+ uptake in the normal operation of the bacteriorhodopsin proton pump. The results also indicate that the amino acid substitutions affect the kinetics of either H+ release or H+ uptake, but not both. This implies that the two steps occur independently of each other after initiation of the photocycle.

摘要

最近,已证明细菌视紫红质的一些天冬氨酸突变体在稳态质子转运方面存在缺陷。在此,我们报告了对这些突变体光诱导质子释放和摄取的时间分辨测量结果。通过测量细菌视紫红质胶束溶液的总体电导率变化,直接监测蛋白质与水相之间的质子转移。对于Asp-96→Asn突变体,质子摄取减慢超过1个数量级,而对释放步骤没有可观察到的影响。对于Asp-85→Asn,H⁺摄取以正常动力学发生,但与Asp-96→Asn突变体或野生型相比,产率显著降低,尤其是在pH 6时。用谷氨酸替代Asp-85或Asp-96对质子移动的动力学和量子产率有较小但可检测到的影响。天冬氨酸在115和212位被天冬酰胺和谷氨酸替代均降低了质子量子产率。其中,只有Asp-115→Asn突变体对质子释放步骤有影响,只有Asp-212→Glu突变降低了质子摄取速率。这些实验表明,在细菌视紫红质质子泵的正常运作中,Asp-96在H⁺摄取中起必不可少的作用。结果还表明,氨基酸替代影响H⁺释放或H⁺摄取的动力学,但不是两者都受影响。这意味着在光循环启动后,这两个步骤彼此独立发生。

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