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基于紫外共振拉曼光谱法研究细胞色素c结构及色氨酸-59的氢/氘交换对离子强度的依赖性

Ionic strength dependence of cytochrome c structure and Trp-59 H/D exchange from ultraviolet resonance Raman spectroscopy.

作者信息

Liu G Y, Grygon C A, Spiro T G

机构信息

Department of Chemistry, Princeton University, New Jersey 08544-1009.

出版信息

Biochemistry. 1989 Jun 13;28(12):5046-50. doi: 10.1021/bi00438a022.

DOI:10.1021/bi00438a022
PMID:2548599
Abstract

Ultraviolet resonance Raman spectra are reported for cytochrome c (cyt c) in FeII and FeIII oxidation states at low (0.005 M) and high (0.9-1.5 M) ionic strength. With 200-nm excitation the amide band intensities are shown to remain constant, establishing that redox state and ionic strength have no influence on the alpha-helical content. The tyrosine 830/850-cm-1 doublet, however, shows a loss in 830-cm-1 intensity at I = 0.005 M for the FeIII protein, suggesting a weakening or a loss of H-bonding from an internal tyrosine, probably Tyr-48, which is H-bonded to a heme propionate group in cyt c crystals. Excitation profiles of tryptophan peak at approximately 229 nm for both FeII and FeIII forms of cyt c, but at approximately 218 nm for aqueous tryptophan. The approximately 2200-cm-1 red shift of the resonant electronic transition is attributed to the Trp-59 residue being buried and H-bonded. Consistent with this Trp environment, the H-bond-sensitive 877-cm-1 Trp band is strong and sharp, and the 1357/1341-cm-1 doublet has a large intensity ratio, approximately 1.5, for both FeII and FeIII cyt c. The 877-cm-1-band frequency shifts to 860 cm-1 when the Trp indole proton is replaced by a deuteron. This band was used to show that Trp H/D exchange in D2O is much faster for FeIII than FeII cyt c. The half-time for exchange at room temperature is estimated to be approximately 30 and approximately 5 h, respectively, for FeII and FeIII when examined at I = 0.005.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

报道了细胞色素c(cyt c)在低离子强度(0.005 M)和高离子强度(0.9 - 1.5 M)下FeII和FeIII氧化态的紫外共振拉曼光谱。用200 nm激发时,酰胺带强度保持恒定,表明氧化还原状态和离子强度对α - 螺旋含量没有影响。然而,对于FeIII蛋白,在I = 0.005 M时,酪氨酸830/850 - cm-1双峰中830 - cm-1强度降低,这表明内部酪氨酸(可能是Tyr - 48)的氢键减弱或丧失,Tyr - 48在cyt c晶体中与血红素丙酸基团形成氢键。FeII和FeIII形式的cyt c的色氨酸峰在约229 nm处有激发谱,但水溶液中的色氨酸在约218 nm处有激发谱。共振电子跃迁约2200 - cm-1的红移归因于Trp - 59残基被掩埋并形成氢键。与这种Trp环境一致,对氢键敏感的877 - cm-1 Trp带强且尖锐,并且对于FeII和FeIII cyt c,1357/1341 - cm-1双峰具有大约1.5的大强度比。当色氨酸吲哚质子被氘取代时,877 - cm-1带频率移至860 cm-1。该谱带用于表明在D2O中,FeIII的Trp H/D交换比FeII的cyt c快得多。在I = 0.005时进行检测,室温下FeII和FeIII交换的半衰期分别估计约为30小时和约5小时。(摘要截断于250字)

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