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Gaugement of the inner space of the apomyoglobins heme binding site by a single free diffusing proton. II. Interaction with a bulk proton.

机译:单个游离扩散质子对肌红蛋白血红素结合位点内部空间的测量。二。与散装质子的相互作用。

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摘要

The reaction mechanism and the dynamic aspects of protonation of a defined moiety located inside an aqueous cavity in a protein were monitored by time resolved spectroscopy using the pyranine apomyoglobin complex as a model (Shimoni, Tsfadia, Nachliel, and Gutman, 1993, Biophys. J. 64:472-479). The reaction was synchronized by a short laser pulse and the reprotonation of the ground state pyranine anion (phi O-) was monitored, in the microsecond time scale, by its transient absorption at 457 nm. The observed signal was reconstructed by a numeric solution of nonlinear, coupled differential equations which account for the direct reaction of phi O- with bulk proton and by proton transfer from the nearby amino acids: His 64, Asp 44, Asp 60, and Glu 59. A unique combination of rate constant was obtained which quantitates the contribution of each pathway to the overall relaxation process. In the first phase of the dynamics phi O- abstracts a proton from the nearby protonated histidine. The bulk proton interacts preferentially with the cluster of three carboxylates and immediately shuttled to the deprotonated histidine. The high proximity of the reactive groups and the strong electrostatic forces operating inside the heme binding cavity render the rate of proton transfer in the site ultrafast.
机译:通过时间分辨光谱法,使用吡喃嘌呤肌红蛋白复合物作为模型,通过时间分辨光谱法监测蛋白质中位于水腔内的确定部分的反应机理和质子化的动力学方面(Shimoni,Tsfadia,Nachliel,和Gutman,1993,Biophys.J。 64:472-479)。通过短激光脉冲使反应同步,并通过在457 nm处的瞬态吸收在微秒时间内对基态吡喃阴离子(phi O-)的质子化进行监测。通过非线性耦合微分方程的数值解重构了观测到的信号,该方程解解了phi O-与本体质子的直接反应以及质子从附近氨基酸的质子转移:His 64,Asp 44,Asp 60和Glu 59获得了速率常数的独特组合,该组合定量了每种途径对整个松弛过程的贡献。在动力学的第一阶段,phi O-从附近的质子化组氨酸中提取质子。大量质子优先与三个羧酸盐簇相互作用,并立即穿梭到去质子化的组氨酸上。反应性基团的高度接近性和在血红素结合腔内部起作用的强静电力使质子在该部位的转移速率超快。

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