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一氧化碳结合的单体昆虫血红蛋白的共振拉曼光谱研究。变构转变引起铁-轴向配体键相互变化的直接证据。

Resonance Raman investigation of CO-ligated monomeric insect hemoglobins. Direct evidence for reciprocal changes in iron-axial ligand bonds induced by allosteric transitions.

作者信息

Gersonde K, Kerr E, Yu N T, Parish D W, Smith K M

出版信息

J Biol Chem. 1986 Jul 5;261(19):8678-85.

PMID:3722166
Abstract

The resonance Raman spectra of the two affinity states of the CO-ligated monomeric insect hemoglobins, Chironomus thummi thummi (CTT) III ad IV, have been investigated. We have identified (via 54Fe/57Fe and 13C18O/12C16O isotope exchange) the Fe-N epsilon(His) stretching mode at approximately 317 cm-1. This stretching mode changes from 329 (pH 5.5) to 317 cm-1 (pH 9.5) reflecting the pH-induced t in equilibrium with r conformational transition. The Fe-CO stretching mode is also pH-sensitive changing from 483 (pH 5.2) to 485 cm-1 (pH 9.2) in 57Fe CTT III . 13C18O complex. However the C-O stretching mode is pH-insensitive. The nonallosteric monomeric insect hemoglobin CTT I does not exhibit a pH-dependence of these vibrational modes. pH-Induced effects were also observed for a vinyl bending mode at 379 cm-1 (pH 9.5) in CTT III deuterated at the beta-carbons of the vinyls in position 2 and 4. It shifts to 390 cm-1 at pH 5.5. The other vinyl vibration at 573 cm-1 exhibits intensity enhancement via through-space coupling with the Fe-C-O bending mode. Our resonance Raman data provide the first direct evidence that the trans-effect is operative as a trigger mechanism for ligand-binding in monomeric allosteric insect hemoglobins. In going from the low-affinity to the high-affinity state, the Fe-N epsilon(His) bond becomes weaker, whereas the Fe-CO bond becomes stronger.

摘要

对与一氧化碳结合的单体昆虫血红蛋白Chironomus thummi thummi(CTT)III和IV的两种亲和状态的共振拉曼光谱进行了研究。我们已经(通过54Fe/57Fe和13C18O/12C16O同位素交换)确定了在约317 cm-1处的Fe-Nε(His)伸缩模式。这种伸缩模式从329 cm-1(pH 5.5)变为317 cm-1(pH 9.5),反映了pH诱导的t与r构象转变的平衡。Fe-CO伸缩模式也对pH敏感,在57Fe CTT III. 13C18O复合物中从483 cm-1(pH 5.2)变为485 cm-1(pH 9.2)。然而,C-O伸缩模式对pH不敏感。非别构单体昆虫血红蛋白CTT I没有表现出这些振动模式的pH依赖性。在2和4位乙烯基的β-碳处氘代的CTT III中,还观察到在379 cm-1(pH 9.5)处的乙烯基弯曲模式的pH诱导效应。在pH 5.5时它移至390 cm-1。在573 cm-1处的另一种乙烯基振动通过与Fe-C-O弯曲模式的空间耦合表现出强度增强。我们的共振拉曼数据提供了第一个直接证据,表明反式效应作为单体别构昆虫血红蛋白中配体结合的触发机制起作用。从低亲和力状态转变为高亲和力状态时,Fe-Nε(His)键变弱,而Fe-CO键变强。

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