首页> 外文期刊>Journal of the American Chemical Society >COMPOUND ES OF CYTOCHROME C PEROXIDASE CONTAINS A TRP PI-CATION RADICAL - CHARACTERIZATION BY CW AND PULSED Q-BAND ENDOR SPECTROSCOPY
【24h】

COMPOUND ES OF CYTOCHROME C PEROXIDASE CONTAINS A TRP PI-CATION RADICAL - CHARACTERIZATION BY CW AND PULSED Q-BAND ENDOR SPECTROSCOPY

机译:细胞色素C过氧化物酶的化合物ES包含TRP配位自由基-连续波和脉冲Q谱带内光谱表征

获取原文
获取原文并翻译 | 示例
       

摘要

The fully oxidized state of cytochrome c peroxidase (CcP), called ES, contains two oxidizing equivalents, one as an oxyferryl heme and the other as an organic radical on an amino acid residue. The unusual electron paramagnetic resonance spectrum of ES has been shown to be due to a weak, distributed exchange coupling between the two paramagnetic redox centers (Houseman, A. L. P.; Dean, P. E.; Goodin, D. B.; Hoffman, B. M. Biochemistry 1993, 32, 4430-4443). Various residues have been proposed as the radical site over the years. In this paper, continuous wave and pulsed Q-band electron nuclear double resonance (ENDOR) spectroscopy on samples isotopically enriched with [C-13]-, [N-15]-, and [H-2]tryptophan confirm that the radical is located on Trp-191, as previously proposed. The data show that an exchangeable proton with A(H-1) approximate to 16 MHz is associated with N1H of the Trp pi-cation radical and not with C2H that has been labilized in the radical state. In addition, through a combination of C-13 and H-2 labeling we have determined the hyperfine couplings at g = 2.01 for C-13 beta, and the C beta H-2, N1H, and C2H protons. An analysis of these couplings based on the magnetic properties of the spin-coupled heme-radical redox cluster of ES has yielded spin densities for the radical in agreement with those predicted for the cation radical, confirming the assignment and suggesting that the radical is not greatly perturbed by N1H ... O hydrogen bonding to the carboxylate of Asp-235. This paper, thus, completes the characterization of the active site of compound ES as being comprised of an oxyferryl heme coupled to the Trp-191 pi-cation radical by a weak spin exchange. [References: 45]
机译:细胞色素C过氧化物酶(CcP)的完全氧化状态称为ES,在氨基酸残基上包含两个氧化当量,一个作为氧基血红素血红素,另一个作为有机基团。已证明ES的异常电子顺磁共振谱是由于两个顺磁氧化还原中心之间分布较弱的交换耦合(Houseman,ALP; Dean,PE; Goodin,DB; Hoffman,BM Biochemistry 1993,32,4430- 4443)。多年来,已经提出了各种残基作为自由基位点。本文对同位素富含[C-13]-,[N-15]-和[H-2]色氨酸的样品进行连续波和脉冲Q波段电子核双共振(ENDOR)光谱证实,该基团是如先前所建议的那样位于Trp-191上。数据表明,具有大约16 MHz的A(H-1)的可交换质子与Trp pi阳离子基团的N1H关联,而不与已被自由基化的C2H关联。此外,通过结合使用C-13和H-2标记,我们确定了对于C-13 beta和C beta H-2,N1H和C2H质子在g = 2.01处的超精细偶联。根据ES的自旋耦合血红素-自由基氧化还原簇的磁性对这些偶联进行分析,得出该自由基的自旋密度与对阳离子自由基的预测密度相符,从而确认了该分配,并表明该自由基并不十分重要。 N1H ... O氢键结合到Asp-235的羧酸盐上而受到干扰。因此,本文完成了对化合物ES活性位点的表征,该活性位点由通过弱自旋交换与Trp-191π-阳离子自由基偶联的羟氧血红素组成。 [参考:45]

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号