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首页> 外文期刊>Toxicological sciences: An official journal of the Society of Toxicology >Tissue expression and genomic sequences of rat N-acetyltransferases rNat1, rNat2, rNat3, and Functional characterization of a novel rNat3*2 genetic variant.
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Tissue expression and genomic sequences of rat N-acetyltransferases rNat1, rNat2, rNat3, and Functional characterization of a novel rNat3*2 genetic variant.

机译:大鼠N-乙酰基转移酶rNat1,rNat2,rNat3的组织表达和基因组序列,以及新型rNat3 * 2遗传变异的功能表征。

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Human arylamine N-acetyltransferases NAT1 and NAT2 are highly polymorphic genes that modify individual susceptibility to cancers caused by exposure to arylamine procarcinogens. Strong similarities exist between rat Nats and human NATs, and rat Nat2 polymorphisms result in slow acetylator phenotype. Recently, a third rat Nat, rNat3*1, was reported. Although in vivo toxicological and carcinogenic studies are often conducted in rats, relatively little is known about Nat sequences among available inbred rat strains. We report here that rNat1 and rNat2 open reading frames (ORFs) in 12 inbred rat strains (ACI, BN, BUF, CDF, COP, DA, LEW, LOU/M, MW, PVG, SHR, WF) corresponded to reference rNat1*13 and rNat2*20. While 10 of the 12 strains had reference rNat3*1 ORFs, strains ACI and COP had a variant rNat3*2 ORF characterized by a G619>T transversion (A207S). The rNat3*2 single nucleotide polymorphism reduced Nat3 protein levels and N- and O-acetyltransferase activity when recombinantly expressed in bacteria. Recombinant expression of rNat3 1 and rNat3 2 in COS-1 cells yielded equivalent protein levels but undetectable catalytic activities. Relative tissue expressions of rNat1, rNat2, and rNat3 mRNAs were assessed in liver and 12 extrahepatic tissues (lung, spleen, kidney, heart, esophagus, stomach, urinary bladder, prostate, colon, duodenum, jejunum, ileum) from male F344 rats exsanguinated prior to sacrifice. Semiquantitative RT-PCR experiments demonstrated that the relative expression of the rNat transcripts in liver and 12 extrahepatic tissues was rNat1 > rNat2, while rNat3 transcripts were not detected. This study concludes that rNat1 and rNat2 are primarily responsible for acetylation phenotype in rats.
机译:人芳基胺N-乙酰基转移酶NAT1和NAT2是高度多态的基因,可修饰因暴露于芳基胺致癌物而导致的个体对癌症的易感性。大鼠Nats和人类NAT之间存在强烈相似性,并且大鼠Nat2多态性导致乙酰化剂表型缓慢。最近,报道了第三只大鼠Nat,rNat3 * 1。尽管通常在大鼠中进行体内毒理学和致癌研究,但在可获得的近交大鼠品系中对Nat序列的了解相对较少。我们在此报告,在12个自交大鼠品系(ACI,BN,BUF,CDF,COP,DA,LEW,LOU / M,MW,PVG,SHR,WF)中的rNat1和rNat2开放阅读框(ORF)对应于参考rNat1 * 13和rNat2 * 20。尽管12株菌株中有10株具有参考rNat3 * 1 ORF,但ACI和COP株具有rGat3 * 2 ORF变体,其特征是G619> T转化(A207S)。当在细菌中重组表达时,rNat3 * 2单核苷酸多态性降低了Nat3蛋白水平以及N-和O-乙酰转移酶活性。 rNat3 1和rNat3 2在COS-1细胞中的重组表达产生了相等的蛋白质水平,但检测不到催化活性。从放血的雄性F344大鼠中评估肝脏和12种肝外组织(肺,脾,肾,心脏,食道,胃,膀胱,前列腺,结肠,十二指肠,空肠,回肠)中rNat1,rNat2和rNat3 mRNA的相对组织表达。在牺牲之前。半定量RT-PCR实验表明,肝脏和12个肝外组织中rNat转录本的相对表达为rNat1> rNat2,而未检测到rNat3转录本。这项研究得出的结论是,rNat1和rNat2主要负责大鼠的乙酰化表型。

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