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首页> 外文期刊>Biochemistry and Cell Biology >Analysis of an approach to oviduct-specific expression of modified chicken lysozyme genes.
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Analysis of an approach to oviduct-specific expression of modified chicken lysozyme genes.

机译:分析经修饰的鸡溶菌酶基因输卵管特异性表达的方法。

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The –2.7 kb enhancer (E) element of the chicken lysozyme gene domain appears to govern expression of the gene in macrophages but not in oviduct tubular gland cells, the only other site of lysozyme expression. The ultimate goal of our research was to determine whether lysozyme domain variants could be developed that would mainly be expressed in the oviduct so that transgenic birds could be produced that would deposit exogenous protein in the egg white. Accordingly, precise mutations were made by poxvirus-mediated gene targeting in FEF/PU.1 and CCAAT/enhancer-binding protein (C/EBP) transcription factor binding sites in the –2.7 kb E of cloned copies of a specific lysozyme gene variant that includes a hydrophobic pentapeptide tail encoding sequence inserted immediately prior to the stop codon. This variant contains the entire lysozyme domain and is cloned in a λ bacteriophage vector (λDIILys-HT); the novel tail sequence enables distinction in cell-based expression systems between transcripts of the variant and those of the endogenous gene. These various lysozyme domain mutants, in bacteriophage vector form, were tested for expression in cultured chicken blastodermal cells cotransfected with plasmids encoding the transcription factors C/EBP and v-Myb. In the absence of these plasmids, barely detectable levels of endogenous lysozyme gene transcription resulted in the blasto dermal cells. In the presence of the plasmids, however, transcripts of the endogenous gene could be detected as well as varying levels (as evaluated by quantitative real-time PCR) of transcripts of all of the lysozyme domain mutants. These results are discussed in the context of the known role and occurrence of various transcription factors involved in gene expression in differentiating macrophage cells. The ultimate test of expression of the variants in macrophages vs. oviduct cells will be to use them to produce transgenic birds.
机译:鸡溶菌酶基因域的–2.7 kb增强子(E)元件似乎控制该基因在巨噬细胞中的表达,但在输卵管肾小管细胞中却无作用,这是溶菌酶表达的唯一其他位点。我们研究的最终目标是确定是否能开发出主要在输卵管中表达的溶菌酶结构域变体,从而产生能够在蛋清中沉积外源蛋白的转基因禽类。因此,通过痘病毒介导的基因靶向FEF / PU.1和CCAAT /增强子结合蛋白(C / EBP)转录因子结合位点在特定的溶菌酶基因变异的克隆拷贝的–2.7 kb E中进行了精确的突变。术语“疏水性”包括在终止密码子之前立即插入的疏水性五肽尾部编码序列。该变体包含完整的溶菌酶结构域,并克隆到λ噬菌体载体(λDIILys-HT)中;新型的尾巴序列使得能够在基于细胞的表达系统中区分变体的转录本和内源基因的转录本。测试了噬菌体载体形式的这些各种溶菌酶结构域突变体在用编码转录因子C / EBP和v-Myb的质粒共转染的培养的鸡胚细胞中的表达。在没有这些质粒的情况下,几乎检测不到水平的内源溶菌酶基因转录导致胚泡真皮细胞。然而,在质粒的存在下,可以检测到内源基因的转录本,以及所有溶菌酶域突变体的转录本的变化水平(通过定量实时PCR评估)。在分化巨噬细胞的基因表达中涉及的各种转录因子的已知作用和发生的背景下讨论了这些结果。巨噬细胞与输卵管细胞中变体表达的最终测试将是使用它们产生转基因禽类。

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