首页> 外文期刊>Journal of the American Chemical Society >HEME PROTEIN INTERACTION IN MYELOPEROXIDASE - MODIFICATION OF SPECTROSCOPIC PROPERTIES AND CATALYTIC ACTIVITY BY SINGLE RESIDUE MUTATION
【24h】

HEME PROTEIN INTERACTION IN MYELOPEROXIDASE - MODIFICATION OF SPECTROSCOPIC PROPERTIES AND CATALYTIC ACTIVITY BY SINGLE RESIDUE MUTATION

机译:血红素氧合酶中血红素的相互作用-单残基修饰的光谱性质和催化活性。

获取原文
获取原文并翻译 | 示例
       

摘要

The optical absorbance spectrum of reduced myeloperoxidase shows an unusual red-shifted Soret band at 472 nm and an alpha band at 636 nm. It has been speculated that this red-shift is due to interaction of the protein matrix with the chromophore. The carboxylate side chain of Glu242 is in close proximity of the prosthetic group of the enzyme, and we have examined the effect of the Glu242 to Gln mutation on the spectroscopic properties and catalytic activity of the enzyme. The mutation shifts the Soret band in the optical absorption spectrum of the reduced mutated enzyme from 472 to 458 nm. The EPR spectrum was hardly affected and was typical of a rhombic high-spin system (g(x) = 6.6, g(y) = 5.2). The alkaline pyridine hemochrome spectrum of the mutant was nearly identical to that of native myeloperoxidase. The resonance Raman spectrum, however, was drastically affected in the mutant. The symmetry-reducing effects were lifted by the mutation and the resonance Raman spectrum was indicative of an iron-porphyrin-like chromophore with a singlet nu(4) line at 1367 cm(-1). The mutant enzyme was not able to peroxidize chloride to hypochlorous acid. We conclude that the interaction of residue Glu242 with the prosthetic group in native myeloperoxidase is partly responsible for the red-shifted Soret band in the optical spectrum and that this interaction is the origin of the symmetry-reducing effects in the resonance Raman spectrum of the native enzyme. This residue also plays a pivotal role in the ability of the enzyme to peroxidize chloride. [References: 48]
机译:还原的髓过氧化物酶的吸光度光谱在472 nm处显示异常的红移Soret带,在636 nm处显示α带。据推测,这种红移是由于蛋白质基质与生色团的相互作用。 Glu242的羧酸盐侧链与酶的辅基非常接近,我们已经研究了Glu242发生Gln突变对酶的光谱性质和催化活性的影响。突变使还原的突变酶的光吸收谱中的Soret带从472 nm移到458 nm。 EPR频谱几乎不受影响,并且是菱形高自旋系统的典型特征(g(x)= 6.6,g(y)= 5.2)。该突变体的碱性吡啶血色素光谱与天然髓过氧化物酶几乎相同。然而,突变体中共振拉曼光谱受到极大影响。突变降低了对称性的降低作用,共振拉曼光谱表明铁卟啉样发色团在1367 cm(-1)处有单线nu(4)线。突变酶不能将氯化物过氧化为次氯酸。我们得出结论,残基Glu242与天然髓过氧化物酶中的修复基团的相互作用部分负责光谱中的红移Soret带,并且这种相互作用是天然共振拉曼光谱中对称性降低效应的起源。酶。该残基在酶过氧化氯的能力中也起着关键作用。 [参考:48]

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