首页> 美国卫生研究院文献>Biophysical Journal >Estimated acid dissociation constants of the Schiff base Asp-85 and Arg-82 during the bacteriorhodopsin photocycle.
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Estimated acid dissociation constants of the Schiff base Asp-85 and Arg-82 during the bacteriorhodopsin photocycle.

机译:细菌视紫红质光循环过程中希夫碱Asp-85和Arg-82的估计酸解离常数。

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摘要

The pK(a) values of D85 in the wild-type and R82Q, as well as R82A recombinant bacteriorhodopsins, and the Schiff base in the D85N, D85T, and D85N/R82Q proteins, have been determined by spectroscopic titrations in the dark. They are used to estimate the coulombic interaction energies and the pK(a) values of the Schiff base, D85, and R82 during proton transfer from the Schiff base to D85, and the subsequent proton release to the bulk in the initial part of the photocycle. The pK(a) of the Schiff base before photoexcitation is calculated to be in effect only 5.3-5.7 pH units higher than that of D85; overcoming this to allow proton transfer to D85 requires about two thirds of the estimated excess free energy retained after absorption of a photon. The proton release on the extracellular surface is from an unidentified residue whose pK(a) is lowered to about 6 after deprotonation of the Schiff base (Zimanyi, L., G. Varo, M. Chang, B. Ni, R. Needleman, and J.K. Lanyi, 1992. Biochemistry. 31:8535-8543). We calculate that the pK(a) of the R82 is 13.8 before photoexcitation, and it is lowered after proton exchange between the Schiff base and D85 only by 1.5-2.3 pH units. Therefore, coulombic interactions alone do not appear to change the pK(a) of R82 as much and D85 only by 1.5-2.3 pH units. Therefore, coulombic interactions alone do not appear to change the pK(a) of R82 as much as required if it were the proton release group.
机译:已通过在黑暗中的光谱滴定确定了野生型和R82Q中的D85,R82A重组细菌视紫红质以及D85N,D85T和D85N / R82Q蛋白中的席夫碱的pK(a)值。它们用于估计质子从席夫碱转移到D85期间的库仑相互作用能和席夫碱,D85和R82的pK(a)值,以及随后的质子在光循环的初始部分释放到主体中。计算出光激发前席夫碱的pK(a)仅比D85高5.3-5.7个pH单位。克服这一问题以允许质子转移到D85,需要吸收光子后保留的估计多余自由能的三分之二。质子在胞外表面上的释放来自未鉴定的残基,其残基在席夫碱去质子化后pK(a)降低至约6(Zimanyi,L.,G.Varo,M.Chang,B.Ni,R.Needleman,和JK Lanyi,1992.Biochemistry.31:8535-8543)。我们计算出,R82的pK(a)在光激发之前为13.8,而在席夫碱和D85之间的质子交换后,其pK(a)仅降低了1.5-2.3 pH单位。因此,单独的库仑相互作用似乎并没有改变R82和D85的pK(a),而仅改变1.5-2.3 pH单位。因此,如果库仑相互作用是质子释放基团,它似乎并不会像要求的那样改变R82的pK(a)。

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