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Full-Gene-Sequencing Analysis of N-Acetyltransferase-2 in an Adult Indian Population;

机译:印度成年人口中N-乙酰基转移酶2的全基因测序分析;

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摘要

Aims: Drug-metabolizing enzymes play a major role in determining the outcome of drug therapy. N-acetyl-transferase-2 (NAT2) is one of the main enzymes involved in metabolism of isoniazid used in treatment of tuberculosis (TB). Several variations in the NAT2 gene give rise to multiple haplotypes that phenotypically code for different acetylator status. The objective was to generate a more unambiguous picture of the NAT2 scenario in India as compared to that obtained from polymerase chain reaction-restriction fragment length polymorphism methods. Methods: Full-gene-sequencing analysis of NAT2 was carried out in 181 healthy Indian subjects from different regional groups. Results: A total of 33 diplotypes were recorded from six known single-nucleotide polymorphisms. The overall frequency of the slow acetylator haplotypes detected in this study was 65%, followed by 26% and 9% intermediate and rapid acetylators, respectively. Of the slow acetylator alleles, the NAT2~*5B/~*6A occurred in 25% of the study subjects. Conclusions: The study indicates that the frequency of slow acetylator alleles is high in the adult Indian population. Since the prevalence of TB is high in this population, pharmacogenetic testing for NAT2 alleles may be advisable before start of therapy with isoniazid to prevent drug toxicity.
机译:目的:药物代谢酶在决定药物治疗的结果中起主要作用。 N-乙酰基转移酶-2(NAT2)是参与治疗结核病(TB)的异烟肼代谢的主要酶之一。 NAT2基因的几种变异会产生多种单倍型,这些单倍型在表型上编码不同的乙酰化剂状态。与从聚合酶链反应-限制性片段长度多态性方法获得的图像相比,目的是生成印度NAT2场景的更加清晰的图像。方法:在来自不同地区组的181名健康的印度受试者中进行了NAT2的全基因测序分析。结果:从六个已知的单核苷酸多态性中总共记录了33种双型。在这项研究中检测到的慢速乙酰化单倍型的总频率为65%,随后分别为26%和9%的中级和快速乙酰化剂。在慢乙酰化等位基因中,NAT2〜* 5B /〜* 6A发生在25%的研究对象中。结论:该研究表明印度成年人口慢乙酰化等位基因的频率较高。由于该人群中结核病的患病率很高,因此在开始用异烟肼治疗以预防药物毒性之前,建议对NAT2等位基因进行药物遗传学检测。

著录项

  • 来源
    《Genetic testing and molecular biomarkers》 |2013年第3期|188-194|共7页
  • 作者单位

    Food Engineering and Technology Department (FETD) Institute of Chemical Technology (ICT) Matunga Mumbai-400019 India;

    Food Engineering and Technology Department (FETD)Institute of Chemical Technology (ICT)Matunga Mumbai-400019 India;

    Food Engineering and Technology Department (FETD)Institute of Chemical Technology (ICT)Matunga Mumbai-400019 India ,Cumballa Hill Hospital and Heart Institute, August Kranti Marg, Mumbai, India;

    Food Engineering and Technology Department (FETD)Institute of Chemical Technology (ICT)Matunga Mumbai-400019 India;

    Food Engineering and Technology Department (FETD)Institute of Chemical Technology (ICT)Matunga Mumbai-400019 India;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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