鸡干扰素基因的克隆、表达和分析。

M J Sekellick, A F Ferrandino, D A Hopkins, P I Marcus
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引用次数: 185

摘要

从鸡原代胚胎细胞cDNA文库中克隆出鸡干扰素基因(ChIFN),这些细胞经过体外“老化”,在诱导下产生大量的干扰素。该编码区预计产生31个氨基酸的信号肽和162个氨基酸的成熟蛋白,分子量为18957。有四个潜在的n -糖基化位点和六个半胱氨酸残基。可能有三个二硫键,其中两个是大多数哺乳动物I型ifn常见的键。围绕Cys-137的10个氨基酸基序是高度保守的:它与哺乳动物I型IFN具有80%的同源性,但与已报道的鱼类IFN仅具有30%的同源性。富含t的3' UTR显示多聚腺苷化所需的典型元件AATAAA,并包含可能参与下调翻译的八聚体cattattat的6个重复。Northern blots表明,ChIFN mRNA的积累与生物测定测定的ChIFN诱导相关。利用克隆序列制备的mRNA在转染的小鼠L细胞中合成具有生物活性的蛋白。该活性被制备的针对纯化ChIFN的单克隆抗体中和。ChIFN基因在氨基酸/核苷酸水平上与公认的哺乳动物IFN序列一致:α(24/23%)、β(20/24%)、ω(23/43%)、tau(20/43%)、γ(3/31%)和比目鱼IFN(16/35%)。预测的ChIFN蛋白的保守特征和预测的二级结构的一般相似性表明,该分子符合I型哺乳动物ifn的5个α -螺旋三维拓扑结构。(摘要删节250字)
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Chicken interferon gene: cloning, expression, and analysis.

A gene encoding chicken interferon (ChIFN) was cloned from a cDNA library made from primary chick embryo cells that had been "aged" in vitro so as to produce copious amounts of IFN upon induction. The coding region is predicted to produce a signal peptide of 31 amino acids and a mature protein of 162 amino acids with a molecular weight of 18,957. There are four potential N-glycosylation sites and six cysteine residues. Three disulfide bonds are possible, with two being common to most mammalian type I IFNs. A motif of 10 amino acids surrounding Cys-137 is highly conserved: It shows 80% homology with mammalian type I IFNs, but only 30% with a reported fish IFN. The T-rich 3' UTR displays the canonical element AATAAA required for polyadenylation, and contains six repeats of the octamer CTATTTAT that may be involved in down-regulating translation. Northern blots demonstrate that the accumulation of ChIFN mRNA correlates with induction of ChIFN determined by bioassay. Biologically active protein was synthesized in transfected mouse L cells using mRNA prepared in vitro from the cloned sequence. This activity was neutralized by a monoclonal antibody prepared against purified ChIFN. The ChIFN gene shows sequence identity at the amino acid/nucleotide level with consensus mammalian IFNs as follows: alpha (24/23%), beta (20/24%), omega (23/43%), tau (20/43%), gamma (3/31%), and with flatfish IFN (16/35%). The conserved features of the predicted ChIFN protein and the general similarity of predicted secondary structure suggest a molecule that fits the five alpha-helix three-dimensional topology reported for type I mammalian IFNs.(ABSTRACT TRUNCATED AT 250 WORDS)

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