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细菌视紫红质的质子释放基团在低pH值下控制其光循环最后一步的速率。

The proton release group of bacteriorhodopsin controls the rate of the final step of its photocycle at low pH.

作者信息

Balashov S P, Lu M, Imasheva E S, Govindjee R, Ebrey T G, Othersen B, Chen Y, Crouch R K, Menick D R

机构信息

Center for Biophysics and Computational Biology, University of Illinois at Urbana-Champaign 61801, USA.

出版信息

Biochemistry. 1999 Feb 16;38(7):2026-39. doi: 10.1021/bi981926a.

Abstract

The factors determining the pH dependence of the formation and decay of the O photointermediate of the bacteriorhodopsin (bR) photocycle were investigated in the wild-type (WT) pigment and in the mutants of Glu-194 and Glu-204, key residues of the proton release group (PRG) in bR. We have found that in the WT the rate constant of O --> bR transition decreases 30-fold upon decreasing the pH from 6 to 3 with a pKa of about 4.3. D2O slows the rise and decay of the O intermediate in the WT at pH 3.5 by a factor of 5.5. We suggest that the rate of the O --> bR transition (which reflects the rate of deprotonation of the primary proton acceptor Asp-85) at low pH is controlled by the deprotonation of the PRG. To test this hypothesis, we studied the E194D mutant. We show that the pKa of the PRG in the ground state of the E194D mutant, when Asp-85 is protonated, is increased by 1.2 pK units compared to that of the WT. We found a similar increase in the pKa of the rate constant of the O --> bR transition in E194D. This provides further evidence that the rate of the O --> bR transition is controlled by the PRG. In a further test, the E194Q mutation, which disables the PRG and slows proton release, almost completely eliminates the pH dependence of O decay at pHs below 6. A second phenomenon we investigated was that in the WT at neutral and alkaline pH the fraction of the O intermediate decreases with pKa 7.5. A similar pH dependence is observed in the mutants in which the PRG is disabled, E194Q and E204Q, suggesting that the decrease in the fraction of the O intermediate with pKa ca. 7.5 is not controlled by the PRG. We propose that the group with pKa 7.5 is Asp-96. The slowing of the reprotonation of Asp-96 at high pH is the cause of the decrease in the rate of the N --> O transition, leading to the decrease in the fraction of O.

摘要

研究了决定细菌视紫红质(bR)光循环中O光中间体形成和衰变的pH依赖性的因素,研究对象包括野生型(WT)色素以及bR中质子释放基团(PRG)的关键残基Glu-194和Glu-204的突变体。我们发现,在野生型中,随着pH从6降至3,O→bR转变的速率常数下降30倍,pKa约为4.3。重水使野生型在pH 3.5时O中间体的上升和衰变减慢5.5倍。我们认为,低pH下O→bR转变的速率(反映初级质子受体Asp-85的去质子化速率)受PRG的去质子化控制。为了验证这一假设,我们研究了E194D突变体。我们发现,当Asp-85质子化时,E194D突变体基态下PRG的pKa比野生型增加了1.2个pK单位。我们在E194D中发现O→bR转变速率常数的pKa也有类似增加。这进一步证明了O→bR转变的速率受PRG控制。在进一步的测试中,E194Q突变使PRG失活并减缓质子释放,几乎完全消除了pH低于6时O衰变的pH依赖性。我们研究的第二个现象是,在野生型中,在中性和碱性pH下,O中间体的比例以pKa 7.5下降。在PRG失活的突变体E194Q和E-204Q中也观察到类似的pH依赖性,这表明O中间体比例以约7.5的pKa下降不受PRG控制。我们提出pKa为7.5的基团是Asp-96。高pH下Asp-96的再质子化减慢是N→O转变速率下降的原因,导致O比例下降。

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