首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Iron-carbon bond lengths in carbonmonoxy and cyanomet complexes of the monomeric hemoglobin III from Chironomus thummi thummi: a critical comparison between resonance Raman and x-ray diffraction studies.
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Iron-carbon bond lengths in carbonmonoxy and cyanomet complexes of the monomeric hemoglobin III from Chironomus thummi thummi: a critical comparison between resonance Raman and x-ray diffraction studies.

机译:Chiumomus thummi thummi的单体血红蛋白III的碳单氧基和氰基金属配合物中的铁碳键长:共振拉曼光谱和X射线衍射研究之间的关键比较。

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摘要

Soret-excited resonance Raman spectroscopy yields direct information regarding the iron-carbon bonding interactions in the cyanomet and carbonmonoxy complexes of hemoglobin III from Chironomus thummi thummi (CTT III) in solution. By isotope exchange in cyanide (13CN-, C15N-, and 13C15N-) and carbon monoxide (13CO, C18O, and 13C18O), we have assigned the Fe(III)-CN- stretching at 453 cm-1, the Fe(III)-C-N- bending at 412 cm-1, the Fe(II)-CO stretching at 500 cm-1, the Fe(II)-C-O bending at 574 cm-1, and the C-O stretching at 1960 cm-1. The resonance Raman data, in conjunction with those obtained from heme model complexes with well-known Fe-C bond distances, strongly suggest that the Fe(III)-CN- bond (approximately 1.91 A) is longer (hence weaker) than the Fe(II)-CO bond (approximately 1.80 A). This result disagrees with those of x-ray crystallographic studies [Steigemann, W. & Weber, E. (1979) J. Mol. Biol. 127, 309-338] in which the Fe-C bond lengths were reported as 2.2 A in cyanomet and 2.4 A in carbonmonoxy CTT III. Based on Badger's rule and normal mode calculations, the x-ray data would lead to the prediction of 279 cm-1 for the Fe(II)-CO stretching frequency in CTT III . CO, which was not observed. On the other hand, we estimate the Fe-CO bond as approximately equal to 1.82 A, which is very similar to the 1.80-A value in human Hb . CO crystals. Furthermore, we have used isotope shift data to estimate the Fe-C-O angle as 169 +/- 5 degrees, somewhat larger than the 161 degrees value found by Steigemann and Weber. We therefore conclude that there must be errors in the x-ray crystallographic refinement for the ligand geometry in carbonmonoxy and cyanomet CTT III.
机译:索雷特激发的共振拉曼光谱法可直接获得有关溶液中来自Chironomus thummi thummi(CTT III)的血红蛋白III的氰基和碳单氧基复合物中铁-碳键相互作用的直接信息。通过在氰化物(13CN-,C15N-和13C15N-)和一氧化碳(13CO,C18O和13C18O)中进行同位素交换,我们确定了Fe(III)-CN-在453 cm-1处拉伸,Fe(III )-CN-在412 cm-1处弯曲,Fe(II)-CO在500 cm-1处伸展,Fe(II)-CO在574 cm-1处弯曲,CO在1960 cm-1处伸展。共振拉曼数据,以及从具有已知Fe-C键距的血红素模型络合物获得的数据,强烈表明,Fe(III)-CN-键(约1.91 A)比Fe长(因此较弱)。 (II)-CO键(约1.80 A)。该结果与X射线晶体学研究的结果不同[Steigemann,W。&Weber,E。(1979)J.Mol.Biol.215:403-154]。生物学127,309-338],其中在氰基中Fe-C键的长度据报道为2.2 A,在碳单氧CTT III中为2.4A。基于Badger规则和正常模式计算,X射线数据将导致CTT III中Fe(II)-CO拉伸频率的预测值为279 cm-1。 CO,未观察到。另一方面,我们估计Fe-CO键大约等于1.82 A,这与人Hb的1.80-A值非常相似。一氧化碳晶体。此外,我们使用同位素位移数据估计Fe-C-O角为169 +/- 5度,比Steigemann和Weber发现的161度值大一些。因此,我们得出的结论是,对于一氧化碳和氰基CTT III,配体的几何形状在X射线晶体学精修中必定存在错误。

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