首页> 美国卫生研究院文献>Biochemical Journal >Molecular cloning gene organization and expression of rainbow trout (Oncorhynchus mykiss) inducible nitric oxide synthase (iNOS) gene.
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Molecular cloning gene organization and expression of rainbow trout (Oncorhynchus mykiss) inducible nitric oxide synthase (iNOS) gene.

机译:虹鳟鱼诱导型一氧化氮合酶(iNOS)基因的分子克隆基因组织和表达。

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摘要

A full-length inducible nitric oxide synthase (iNOS) gene has been sequenced for the first time outside the mammals, and the gene organization compared with that already determined for human iNOS. While there are some differences from the human gene, overall the exons show remarkable conservation in sequence and organization. As in human, the trout iNOS gene has 27 exons, with 18 of the trout exons being identical in size with the equivalent human exons. The cofactor-binding domains are found in the same exons and in some cases are absolutely conserved. Differences include the start of the ORF in exon 3 instead of exon 2, resulting in a deletion at the 5' end of the trout iNOS protein. Exon 27 also shows a large difference in size and although the trout exon is larger this is due to the length of the 3'-UTR. Several non-mammalian features are notable, and include a conserved potential glycosylation site in chicken and fish, and an insertion at the boundary of exons 20 and 21 in fish. The intron sizes in trout were generally much smaller than in human iNOS, making the trout iNOS gene approximately half the size of the human gene. Analysis of RNA secondary structure revealed two regions with complementarity, which could interfere with reverse transcription. Using a trout fibroblast cell line (RTG-2 cells), it was shown by reverse transcriptase (RT)-PCR that virus infection was a good inducer of iNOS expression. However, when using a combination of Superscripttrade mark II for reverse transcription and primers at the 5' end of the gene only very weak products were amplified, in contrast with the situation when primers at the 3' end of the gene were used, or ThermoScripttrade mark-derived cDNA was used. The impact of such results on RT-PCR analysis of iNOS expression in trout is discussed.
机译:全长诱导型一氧化氮合酶(iNOS)基因已在哺乳动物体外首次测序,其基因组织与已确定的人iNOS相比。尽管与人类基因有一些差异,但总体而言,外显子在序列和组织上显示出显着的保守性。与人类一样,鳟鱼iNOS基因有27个外显子,其中18个鳟鱼外显子的大小与等效的人类外显子相同。辅因子结合结构域存在于相同的外显子中,在某些情况下是绝对保守的。差异包括外显子3中ORF的起始而不是外显子2的起始,导致鳟鱼iNOS蛋白5'末端缺失。外显子27在尺寸上也显示出很大的差异,尽管鳟鱼外显子较大,这是由于3'-UTR的长度。几个非哺乳动物的特征是值得注意的,包括在鸡和鱼中保守的潜在糖基化位点,以及在鱼中外显子20和21的边界处的插入。鳟鱼的内含子大小通常比人iNOS小得多,这使得鳟鱼iNOS基因的大小约为人基因大小的一半。 RNA二级结构分析显示两个区域具有互补性,这可能会干扰逆转录。使用鳟鱼成纤维细胞系(RTG-2细胞),通过逆转录酶(RT)-PCR显示病毒感染是iNOS表达的良好诱导剂。但是,当使用Superscripttrade mark II的组合进行逆转录和基因5'末端的引物时,只会扩增非常弱的产物,这与使用基因3'末端的引物或ThermoScripttrade的情况相反使用了标记衍生的cDNA。讨论了此类结果对鳟鱼中iNOS表达的RT-PCR分析的影响。

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