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首页> 外文期刊>The Journal of biological chemistry >Probing Protonation/Deprotonation of Tyrosine Residues in Cytochrome ba3 Oxidase from Thermus thermophilus by Time-resolved Step-scan Fourier Transform Infrared Spectroscopy
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Probing Protonation/Deprotonation of Tyrosine Residues in Cytochrome ba3 Oxidase from Thermus thermophilus by Time-resolved Step-scan Fourier Transform Infrared Spectroscopy

机译:通过时间分辨的阶梯扫描傅里叶变换红外光谱法从热嗜热素中探测细胞色素BA3氧化酶酪氨酸残留物的质子化/剥夺

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Elucidating the properties of the heme Fe-CuB binuclear center and the dynamics of the protein response in cytochrome c oxidase is crucial to understanding not only the dioxygen activation and bond cleavage by the enzyme but also the events related to the release of the produced water molecules. The time-resolved step-scan FTIR difference spectra show the ν7a(CO) of the protonated form of Tyr residues at 1247 cm?1 and that of the deprotonated form at 1301 cm?1. By monitoring the intensity changes of the 1247 and 1301 cm?1 modes as a function of pH, we measured a pKa of 7.8 for the observed tyrosine. The FTIR spectral changes associated with the tyrosine do not belong to Tyr-237 but are attributed to the highly conserved in heme-copper oxidases Tyr-136 and/or Tyr-133 residue (Koutsoupakis, K., Stavrakis, S., Pinakoulaki, E., Soulimane, T., and Varotsis, C. (2002) J. Biol. Chem. 277, 32860–32866). The oxygenation of CO by the mixed-valence form of the enzyme revealed the formation of the ~607 nm P (Fe(IV)=O) species in the pH 6–9 range and the return to the oxidized form without the formation of the 580 nm F form. The data indicate that Tyr-237 is not involved in the proton transfer pathway in the oxygenation of CO by the mixed-valence form of the enzyme. The implication of these results with respect to the role of Tyr-136 and Tyr-133 in proton transfer/gating along with heme a3 ring D propionate-H2O-ring A propionate-Asp-372 site to the exit/output proton channel (H2O pool) is discussed.
机译:阐明血红素Fe-Cub Binuclear中心的性质和细胞色素C氧化酶中蛋白质反应的动力学对于理解不仅对酶的二恶英活化和键切割而感到关键,而且对产生的水分子释放有关的事件。时间分辨的步骤扫描FTIR差异光谱显示在1247cm = 1的1247cm-1的质子化形式的ζ7a(co),并在1301cm oth 130厘米中的质子化形式。通过监测1247和1301厘米的强度变化作为pH的函数,我们测量了观察到的酪氨酸的7.8的PKA。与酪氨酸相关的FTIR光谱变化不属于Tyr-237,但归因于血红素氧化酶Tyr-136和/或Tyr-133残基(Koutsoupakis,K.,Stavrakis,S.,Pinakouraki, E.,Soulimane,T.和Varotsis,C.(2002)J. Biol。化学。277,32860-32866)。通过酶的混合级形式的CO氧合揭示了pH 6-9范围内的〜607nm P(Fe(IV)= O)物种,并返回到氧化形式的情况下没有形成580 nm f形式。数据表明Tyr-237不参与通过酶的混合价形式的CO的氧合中的质子转移途径。这些结果对Tyr-136和Tyr-133在质子转移/门控的作用以及血红素A3环D丙酸盐-H2O-RONG丙酸盐-ASP-372位点到出口/输出质子通道(H2O博彩)被讨论。

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