首页> 外文期刊>Biochemical Engineering Journal >Engineering of melanin biopolymer by co-expression of MelC tyrosinase with CYP102G4 monooxygenase: Structural composition understanding by 15 tesla FT-ICR MS analysis
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Engineering of melanin biopolymer by co-expression of MelC tyrosinase with CYP102G4 monooxygenase: Structural composition understanding by 15 tesla FT-ICR MS analysis

机译:用CYP102G4单氧化酶的Celc酪氨酸酶的共表达Melanin生物聚合物的工程:15 TesLA FT-ICR MS分析的结构组合物理解

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摘要

In this study, a novel melanin pigment was synthesized by Escherichia coli cells co-expressing tyrosinase (MelC) and cytochrome P450 monooxygenase (CYP102G4) enzymes simultaneously. The CYP102G4 catalyzes indole C3-specific hydroxylation and generates 3-hydroxyindole (indoxyl) and 3-oxoindole. Additional supply of indole derivatives leads to much darker melanin pigmentation with higher yields (3.4 g/L) of synthesized CYP-Melanin, which showed interesting morphological and electrochemical properties. To understand the correlation between its chemical structure and functions, FT-IRand SEM analysis were attempted. Following 15 T FT-ICR mass spectrometry analysis provided information on the chemical and molecular compositions, characteristics of the synthetic melanins, evidence of higher nitrogen content, and higher degree of unsaturation in the CYP-Melanin structure. Besides, electrical conductivity of CYP-Melanin was determined by cyclic voltammetry (CV) analysis to investigate the feasibility for the application of CYP-Melanin as electrical materials.
机译:在该研究中,通过同时表达酪氨酸酶(MELC)和细胞色素P450单氧化酶(CYP102G4)酶的大肠杆菌细胞合成了一种新的黑色素颜料。 CYP102G4催化吲哚C3特异性羟基化,并产生3-羟基吲哚(吲哚基)和3-氧代吲哚。额外的吲哚衍生物供应导致较深的黑色素色素沉着,具有更高的合成Cyp-Melanin产量(3.4g / L),其显示出有趣的形态和电化学性质。要了解其化学结构与功能之间的相关性,尝试了FT-Irand SEM分析。在15吨FT-ICR质谱分析中提供了有关化学和分子组合物的信息,合成黑色素的特征,氮含量越高的证据,Cyp-黑色素结构中的较高不饱和度。此外,通过循环伏安法(CV)分析测定Cyp-Melanin的电导率,以研究Cyp-Melanin作为电材料应用的可行性。

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