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Critical Amino Acid Residues for Nicotine 5' -Hydroxylation in Human CYP2A Enzymes

机译:人类CYP2A酶中尼古丁5'-羟基化的关键氨基酸残基

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摘要

Objective: We have continued previous work in which we demonstrated that #117 and #372 amino acids contrib-uted to the high activities of human CYP2A13 in catalyzing 4-methylnitrosamino-1-(3-pyridyl)-1-hutanone(NNK) and aflatoxin B1(AFB1) carcinogenic activation. The present study was designed to identify other potential amino acid residues that contribute to the different catalytic characteristics of two CYP2A enzymes, CYP2A6 and CYP2A13, in nicotine metabolism and provide insights of the substrate and related amino acid residues interactions. Methods: A series of reciprocally substituted mutants of CYP2A6IIe'300→Phe, CYP2A6Gly'301Ala, CYP2A6Ser'369→Gly, CYP2A13Phe'300→Ile, CYP2A13AIa'301→Gly and CYP2A13Gly'369→Ser were generated by site-directed mutagenesis/baculovirus-Sf9 insect cells expression. Comparative kinetic analysis of nicotine 5'hydroxylatin by wild type and mutant CYP2A proteins was performed. Results:All amino acid residue substitutions at 300, 301 and 369 caused significant kinetic property changes in nicotine metabolism. While CYP2A6Ile'300→Phe and CYP2A6Gly'301→Ala mutations had notable catalytic efficiency increases compared to that for the wild type CYP2A6, CYP2A13Phe'300→Ile and CYP2A13Ala'301→Gly replacement introduced remarkable catalytic efficiency decreases. In addition, all these catalytic efficiency alterations were caused by V,maxvariations rather than K,m changes. Substi-tution of #369 residue significantly affected both K,m and V,max values. CYP2A6Ser'369→Gly increase the catalytic efficiency via a significant Km decrease versus V,max enhancement, while the opposite effects were seen with CYP2A13Gly'369→Ser. Conclusion:#300, #301 and #369 residues in human CYP2A6/13 play important roles in nicotine 5' -oxidation. Switching #300 or #301 residues did not affect the CYP2A protein affinities toward nicotine, although these amino acids are located in the active center. Seta69 to Gly substitution indirectly affected nicotine binding by creating more space and conformational flexibility for the nearby residues, such as Leu'370 which is crucial for many hydroxylations.
机译:目的:我们继续进行先前的工作,其中证明#117和#372氨基酸有助于人类CYP2A13催化4-甲基亚硝基氨基-1-(3-吡啶基)-1-)酮(NNK)和黄曲霉毒素B1(AFB1)致癌活化。本研究旨在确定其他潜在的氨基酸残基,这些残基在烟碱代谢中有助于两种CYP2A酶CYP2A6和CYP2A13的不同催化特性,并提供底物和相关氨基酸残基相互作用的见解。方法:产生由CYP2A6IIe'300→Phe,CYP2A6Gly'301Ala,CYP2A6Ser'369→Gly,CYP2A13Phe'300→Ile,CYP2A13AIa'301→Gly和CYP2A13Gly'369 / sis-site相互置换的一系列突变杆状病毒-Sf9昆虫细胞表达。进行了通过野生型和突变型CYP2A蛋白对尼古丁5'-羟基latin的动力学比较分析。结果:在300、301和369处的所有氨基酸残基取代均引起尼古丁代谢的显着动力学特性变化。与野生型CYP2A6相比,CYP2A6Ile'300→Phe和CYP2A6Gly'301→Ala突变的催化效率显着提高,而CYP2A13Phe'300→Ile和CYP2A13Ala'301→Gly的置换则引起显着的催化效率降低。此外,所有这些催化效率的变化都是由V,max的变化而不是K,m的变化引起的。取代#369残留物会显着影响K,m和V,max值。 CYP2A6Ser'369→Gly通过显着的Km降低(相对于V,max增强)提高了催化效率,而CYP2A13Gly'369→Ser则表现出相反的作用。结论:人CYP2A6 / 13中的#300,#301和#369残基在尼古丁5'-氧化中起重要作用。转换#300或#301残基不会影响CYP2A蛋白对尼古丁的亲和力,尽管这些氨基酸位于活性中心。 Seta69到Gly的取代通过为附近的残基(例如对许多羟基化至关重要的Leu'370)创造更多的空间和构象柔韧性,间接影响尼古丁的结合。

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  • 来源
    《生物医学研究杂志(英文版)》 |2008年第6期|338-345|共8页
  • 作者单位

    College of Life Sciences,Shenzhen University,Shenzhen 518060,Guangdong Province,China;

    School of Public Health/EOHSI, University of Medicine and Dentistry of New Jersey,NJ 08854,USA;

    Environmental Biomarker Shared Resource, The Cancer Institute of New Jersey/Environmental and Occupational Health Sciences Institute, NJ 08854, USA;

    A ventis Pharmaceuticals, NJ 08807, USA;

    School of Public Health/EOHSI, University of Medicine and Dentistry of New Jersey, NJ 08854, USA;

    Department of Histology & Embryology,Guilin Medical College,Gulin 541004,Guanxi Provice,China;

    College of Pharmacy, Rutgers University, NJ 088544, USA;

    Environmental Biomarker Shared Resource, The Cancer Institute of New Jersey/Environmental and Occupational Health Sciences Institute, NJ 08854, USA;

    School of Public Health/EOHSi, University of Medicine and Dentistry of New Jersey, NJ 08854, USA;

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  • 入库时间 2022-08-19 03:48:03
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