首页> 美国卫生研究院文献>Nucleic Acids Research >Antisense display--a method for functional gene screening: evaluation in a cell-free system and isolation of angiogenesis-related genes.
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Antisense display--a method for functional gene screening: evaluation in a cell-free system and isolation of angiogenesis-related genes.

机译:反义展示-一种功能基因筛选的方法:在无细胞系统中进行评估并分离与血管生成相关的基因。

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摘要

Presented here is an antisense-oriented method for functional gene screening, which we propose naming 'antisense display'. In principle, it consists of four steps: (i) preparation of phosphorothioate antisense repertoires that would correspond to the Kozak's consensus sequence, (ii) subgroup screening to identify active antisense molecules that could cause changes in the cellular phenotypes concerned and (iii) RT-PCR cloning of cDNA with the 5[prime] sense complement and 3[prime] anchor primers and sequence determination, followed by (iv) functional assays of candidate genes. Cell-free translation in rabbit reticulocyte lysate revealed that 10mer or longer antisense effectively halted protein synthesis. This required the presence of RNase H, and was achieved without prior heat-denaturation of the RNA templates. Then, subpools of the 10mer repertoire were administered to human microvascular endothelial cells in culture, and screened for anti-angiogenic activities. A single species having the sequence 5[prime]-GGCTCATGGT-3[prime] consistently inhibited the endothelial cell growth under hypoxia. Through RT-PCR with the corresponding sense primer, we came across three candidate cDNAs. Experiments employing longer unique antisense reproduced marked growth inhibitions in two of the three cDNAs. One encoded a mitochondrial protein and the other, which encoded a putative type-2 membrane protein containing Rab-GAP/TBC and EF-hand like domains, was a gene previously undescribed in human. The results suggest that the antisense display method is potentially useful for isolating new genes towards elucidating their functions.
机译:这里介绍的是一种针对功能基因筛选的反义方法,我们建议命名为“反义展示”。原则上,它包括四个步骤:(i)制备与Kozak共有序列相对应的硫代磷酸酯反义库,(ii)进行亚组筛选以鉴定可能引起相关细胞表型变化的活性反义分子,以及(iii)RT -使用5 [prim]有义互补和3 [prim]锚定引物进行cDNA的PCR克隆和序列测定,然后(iv)候选基因的功能测定。兔网织红细胞裂解物中的无细胞翻译表明,10聚体或更长的反义序列可有效阻止蛋白质合成。这需要存在RNase H,并且无需事先对RNA模板进行热变性即可实现。然后,将10聚体库的亚池施用于培养的人微血管内皮细胞,并筛选抗血管生成活性。具有序列5 [prime] -GGCTCATGGT-3 [prime]的单个物种在缺氧条件下始终抑制内皮细胞的生长。通过RT-PCR和相应的有义引物,我们发现了三个候选cDNA。使用更长的独特反义的实验在三个cDNA中的两个中均产生了明显的生长抑制作用。一个是编码线粒体蛋白的蛋白,另一个是编码包含Rab-GAP / TBC和EF-hand-like结构域的推定的2型膜蛋白,这是人类以前未曾描述过的基因。结果表明,反义展示方法可用于分离新基因以阐明其功能。

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