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首页> 外文期刊>Biochemistry >UV resonance Raman spectra reveal a structural basis for diminished proton and CO2 binding to alpha,alpha-cross-linked hemoglobin.
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UV resonance Raman spectra reveal a structural basis for diminished proton and CO2 binding to alpha,alpha-cross-linked hemoglobin.

机译:紫外共振拉曼光谱揭示了减少质子和二氧化碳与α,α交联的血红蛋白结合的结构基础。

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摘要

UV resonance Raman difference spectra between ligated and deoxyhemoglobin contain tryptophan and tyrosine signals which arise from quaternary H-bonds in the T state, which are broken in the R state. These H-bonds are unaffected by bis(3,5-dibromosalicyl) fumarate cross-linking at the Lys alpha 99 residues, which prevents dissociation of Hb tetramers to dimers. However, when the pH is lowered from 9.0, or when NaCl is added, intensity is diminished for the tyrosine Y8 and tryptophan W3 bands of cross-linked deoxyHb, but not of native deoxyHb. This effect is attributed to weakening of tertiary H-bonds involving Tyr alpha 140 and Trp alpha 14, when the T state salt bridge between Val alpha 1 and Arg alpha 141 is formed via protonation of the terminal amino group and anion binding. The Tyr alpha 140-Val alpha 93 H-bond connects the Arg alpha 141-bearing H helix with the Lys alpha 99-bearing G helix. Weakening of the H-bond reflects a tension between the fumarate linker and the salt-bridge. This tension inhibits protonation of the Val alpha 1 amino terminus, thus accounting for the diminution of both proton [Bohr effect] and CO2 binding in the T state as a result of cross-linking.
机译:连接的和脱氧的血红蛋白之间的紫外共振拉曼差光谱包含色氨酸和酪氨酸信号,这些色氨酸和酪氨酸信号是由处于T状态的四元H键产生的,而这些键在R状态下被破坏。这些氢键不受在Lys alpha 99残基处的富马酸双(3,5-二溴水杨基)酯交联的影响,这可防止Hb四聚体解离为二聚体。但是,当pH值从9.0降低或添加NaCl时,交联脱氧Hb的酪氨酸Y8和色氨酸W3谱带的强度降低,而天然脱氧Hb的强度降低。当通过末端氨基的质子化和阴离子结合形成Val alpha 1和Arg alpha 141之间的T状态盐桥时,此效应归因于涉及Tyr alpha 140和Trp alpha 14的叔H键的减弱。 Tyr alpha 140-Val alpha 93 H键将带有Arg alpha 141的H螺旋与带有Lys alpha 99的G螺旋连接起来。 H键的弱化反映了富马酸酯连接体和盐桥之间的张力。这种张力抑制了Val alpha 1氨基末端的质子化,因此说明了由于交联,质子[玻尔效应]和T状态下的CO2结合都减少了。

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