首页> 美国卫生研究院文献>The Journal of Veterinary Medical Science >Development of a genotyping tool for a functionally relevantCYP2C19 allele (Phe100Asn Ala103Val and Ile112Leu) in cynomolgusmacaques
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Development of a genotyping tool for a functionally relevantCYP2C19 allele (Phe100Asn Ala103Val and Ile112Leu) in cynomolgusmacaques

机译:开发功能相关的基因分型工具猕猴中的CYP2C19等位基因(Phe100AsnAla103Val和Ile112Leu)猕猴

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摘要

In cynomolgus macaques, which are widely used in drug metabolism studies, CYP2C19 (formerly known as CYP2C75) is abundantly expressed in liver, metabolizes human CYP2C substrates and is thus an important drug-metabolizing enzyme. One of the cynomolgus CYP2C19 alleles (p.Phe100Asn, p.Ala103Val and p.Ile112Leu) results in substantially reduced metabolic activity and thus is an important allele in drug metabolism studies. For this allele, a genotyping tool was developed using allele-specific TaqMan probe. Genotyping 40 Cambodian cynomolgus macaques using this tool found 1 homozygote, 17 heterozygotes and 22 wild type animals, and the result was confirmed by direct-sequencing. Interestingly, this allele frequency was similar to that of Chinese cynomolgus macaques. The genotyping tool established is useful for drug metabolism studies using cynomolgus macaques.
机译:在广泛用于药物代谢研究的食蟹猕猴中,CYP2C19(以前称为CYP2C75)在肝脏中大量表达,可代谢人CYP2C底物,因此是一种重要的药物代谢酶。食蟹猴CYP2C19等位基因之一(p.Phe100Asn,p.Ala103Val和p.Ile112Leu)导致代谢活性大大降低,因此是药物代谢研究中的重要等位基因。对于该等位基因,使用等位基因特异性TaqMan探针开发了一种基因分型工具。使用该工具对40只柬埔寨食蟹猕猴进行基因分型,发现了1只纯合子,17个杂合子和22只野生型动物,通过直接测序证实了结果。有趣的是,该等位基因频率与中国食蟹猕猴相似。建立的基因分型工具可用于使用食蟹猕猴进行药物代谢研究。

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