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通过带有标记酪氨酸和组氨酸的红外光谱揭示的反硝化副球菌细胞色素c氧化酶P(M)中间体的结构和化学变化。

Structural and chemical changes of the P(M) intermediate of paracoccus denitrificans cytochrome c oxidase revealed by IR spectroscopy with labeled tyrosines and histidine.

作者信息

Iwaki Masayo, Puustinen Anne, Wikström Mårten, Rich Peter R

机构信息

Glynn Laboratory of Bioenergetics, Department of Biology, University College London, UK.

出版信息

Biochemistry. 2006 Sep 12;45(36):10873-85. doi: 10.1021/bi061114b.

Abstract

Structural and chemical changes in the P(M) intermediate of Paracoccus denitrificans cytochrome c oxidase have been investigated by attenuated total reflection-Fourier transform infrared spectroscopy. Prior studies of P(M) minus oxidized (O) IR difference spectra of unlabeled, universally (15)N-labeled and ring-d(4)-tyrosine-labeled proteins (Iwaki, M., Puustinen, A., Wikström, M., and Rich, P. R. (2004) Biochemistry 43, 14370-14378). provided a basis for band assignments to changes in metal centers and the covalently linked His-Tyr ligand of Cu(B) and highlighted a structural alteration of the protonated Glu278 in the P(M) intermediate. This work has been extended to equivalent measurements on enzymes with (13)C(9)(15)N-labeled and ring-(13)C(6)-labeled tyrosine and with (13)C(6)(15)N(3)-labeled histidine. Histidine labeling allows the assignment of troughs at 1104 and 973 cm(-1) in reduced minus O spectra to histidine changes, whereas tyrosine labeling moves otherwise obscured tyrosine bandshifts to 1454-1437 and 1287-1284 cm(-1). P(M) minus O spectra reveal bands at 1506, 1311, and 1094 cm(-1) in the oxidized state that are replaced by a band at 1519 cm(-1) in P(M). These bands shift with both tyrosine- and histidine-labeling, providing evidence for their assignment to the covalent His-Tyr and for its chemical change in P(M). Comparisons of isotope effects on the amide I regions in P(M) minus O spectra demonstrate that amide carbonyl bonds of tyrosine and histidine are major contributors. This suggests a structural alteration in P(M) that is centered on the His276-Pro277-Glu278-Val279-Tyr280 pentapeptide formed by the His-Tyr covalent linkage. This structural change is proposed to mediate the perturbation of the IR band of the protonated Glu278 headgroup.

摘要

利用衰减全反射傅里叶变换红外光谱法研究了反硝化副球菌细胞色素c氧化酶的P(M)中间体的结构和化学变化。先前对未标记、普遍(15)N标记和环-d(4)-酪氨酸标记的蛋白质的P(M)减去氧化态(O)红外差示光谱的研究(岩木,M.,普斯蒂宁,A.,维克斯特伦,M.,和里奇,P.R.(2004年)《生物化学》43,14370 - 14378)。为将谱带归属到金属中心的变化以及Cu(B)的共价连接的His - Tyr配体上提供了基础,并突出了P(M)中间体中质子化的Glu278的结构改变。这项工作已扩展到对用(13)C(9)(15)N标记和环-(13)C(6)-标记酪氨酸以及用(13)C(6)(15)N(3)-标记组氨酸的酶进行等效测量。组氨酸标记使得在还原态减去O光谱中1104和973 cm(-1)处的谷可以归属为组氨酸的变化,而酪氨酸标记将原本模糊的酪氨酸谱带位移到1454 - 1,437和1287 - 1,284 cm(-1)。P(M)减去O光谱显示在氧化态下1506、1311和1094 cm(-1)处有谱带,在P(M)中被1519 cm(-1)处的一个谱带所取代。这些谱带随着酪氨酸和组氨酸标记而位移,为将它们归属为共价His - Tyr以及其在P(M)中的化学变化提供了证据。对P(M)减去O光谱中酰胺I区域的同位素效应的比较表明,酪氨酸和组氨酸的酰胺羰基键是主要贡献者。这表明P(M)中的结构改变以由His - Tyr共价连接形成的His276 - Pro277 - Glu278 - Val279 - Tyr280五肽为中心。这种结构变化被认为介导了质子化的Glu278头部基团的红外谱带的扰动。

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