首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Replacement of aspartic acid-96 by asparagine in bacteriorhodopsin slows both the decay of the M intermediate and the associated proton movement.
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Replacement of aspartic acid-96 by asparagine in bacteriorhodopsin slows both the decay of the M intermediate and the associated proton movement.

机译:在细菌视紫红质中用天冬酰胺取代天冬氨酸96既减慢了M中间体的衰变速度又减慢了相关的质子运动。

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摘要

The photocycle, electrical charge translocation, and release and uptake of protons from the aqueous phase and release and uptake of protons from the aqueous phase were investigated for bacteriorhodopsin mutants with aspartic acid-96 replaced by asparagine or glutamic acid. At neutral pH the main effect of the Asp-96----Asn mutation is to slow by 2 orders of magnitude the decay of the M intermediate and the concomitant charge displacement associated with the reprotonation of the Schiff base from the cytoplasmic side of the membrane. The proton uptake measured with the indicator dye pyranine is likewise slowed without affecting the stoichiometry of proton pumping. The corresponding results for the Asp-96----Glu mutant, on the other hand, are very close to those for the wild-type protein. These results provide a kinetic explanation for the fact that at pH 7 and saturating light intensities the steady-state proton pumping is almost abolished in the Asp-96----Asn mutant but is close to normal in the Asp-96----Glu mutant. Thus, the pump is simply turning over much more slowly in the Asp-96----Asn mutant. The time constants of the decay of M and the associated charge translocation increase strongly with increasing pH for the Asp-96----Asn mutant but are virtually pH-independent for the Asp-96----Glu mutant and wild-type bacteriorhodopsin. At pH 5 the M decay of the Asp-96----Asn mutant is as fast as for wild type. These results suggest that Asp-96 serves as an internal proton donor in the proton-uptake pathway from the cytoplasm to the Schiff base.
机译:研究了天冬氨酸-96被天冬酰胺或谷氨酸替代的细菌视紫红质突变体的光循环,电荷转移,质子从水相的释放和摄取以及质子从水相的释放和摄取。在中性pH值下,Asp-96-Asn突变的主要作用是将M中间体的衰减以及与席夫碱从质子面质子化的伴随的电荷位移减慢2个数量级。膜。用指示剂染料吡喃测定的质子吸收同样被减慢而不会影响质子泵送的化学计量。另一方面,Asp-96 ---- Glu突变体的相应结果与野生型蛋白的结果非常接近。这些结果为以下事实提供了动力学解释:在pH 7和饱和光强度下,Asp-96 ---- Asn突变体中的稳态质子泵浦几乎被取消,但在Asp-96中接近正常。 -Glu突变体。因此,在Asp-96 ---- Asn突变体中,泵的运转速度要慢得多。 Asp-96 ---- Asn突变体的M衰变的时间常数和相关的电荷易位随pH的增加而强烈增加,而Asp-96 ---- Glu突变体和野生型的pH却几乎与pH无关细菌视紫红质。在pH 5时,Asp-96 ---- Asn突变体的M衰减与野生型一样快。这些结果表明,Asp-96在从细胞质到席夫碱的质子吸收途径中充当内部质子供体。

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