DIVERSITY AND EVOLUTION OF CYP MITOCHONDRIAL GENE IN NILE TILAPIA (Oreochromis niloticus L.)

M. Rashed, Amira El-Kerady, Mahmoud Magdy
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引用次数: 1

Abstract

The cytochrome P450 (CYP) superfamily of heme-containing enzymes catalyzes Phase I biotransformation of endogenous and xenobiotic compounds, including fatty acids, steroids, drugs, and environmental contaminants. Common variations (polymorphisms) in cytochrome P450 genes can affect the function of the enzymes. The effects of polymorphisms are most prominently seen in the breakdown of medications. In fish, members of the CYP2 and CYP3A families play a major role in the metabolism of xenobiotics and endogenous compounds. The current study aimed to isolate and compare cytochrome P450 3A40 gene from Oreochromis niloticus (Nile tilapia) to understand its diversity and evolution in comparison with fresh water fish species available in the GenBank database. Total length of 1300 bp was obtained and its polymorphism with similar samples from O. niloticus in the GenBank was determined. Site no. 41 T>A changed the amino acid from Phenylalanine (F) to Tyrosine (Y), while sites no. 43 and 54 caused no effect (silent mutations), and site no. 74 A>G changes the amino acid from Glutamic Acid (E) to Glycine (G), in which the two later mutations formed a different protein isoform in its conformational structure. Phylogenetic analysis reflected a clear divergence of fresh water families (Cichlidae and Poecilidae) from other families, while fixed and shared mutations between families were found. Phylogenetic analysis provided strong support for the identity of the majority of CYPs in fresh water fishes. In the current study, conservative regions among the studied families were found.
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尼罗罗非鱼CYP线粒体基因的多样性和进化
含血红素酶的细胞色素P450 (CYP)超家族催化内源性和外源性化合物的I期生物转化,包括脂肪酸、类固醇、药物和环境污染物。细胞色素P450基因的常见变异(多态性)可以影响酶的功能。多态性的影响在药物分解中最为明显。在鱼类中,CYP2和CYP3A家族的成员在外源和内源化合物的代谢中起着重要作用。本研究旨在从尼罗罗非鱼(Oreochromis niloticus)中分离和比较细胞色素P450 3A40基因,以了解其多样性和进化,并将其与GenBank数据库中现有的淡水鱼进行比较。总长度为1300 bp,并与GenBank中niloticus相似样本进行多态性分析。网站没有。41 T>A将苯基丙氨酸(F)转变为酪氨酸(Y),而位点no。43和54位点无影响(沉默突变)。A >g将氨基酸从谷氨酸(E)改变为甘氨酸(G),其中两个后期突变在其构象结构上形成了不同的蛋白质异构体。系统发育分析表明,淡水科(池鱼科和水蛭科)与其他科存在明显的分化,科间存在固定的和共有的突变。系统发育分析为淡水鱼中大部分CYPs的同源性提供了强有力的支持。在目前的研究中,在所研究的家庭中发现了保守的区域。
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