Department of Genetics, Yale School of Medicine, New Haven, CT, USA.
Department of Therapeutic Radiology, Yale School of Medicine, New Haven, CT, USA.
FEBS J. 2022 Jan;289(2):355-362. doi: 10.1111/febs.15775. Epub 2021 May 8.
Historically, the genetic analysis of mammalian cells entailed the isolation of randomly arising mutant cell lines with altered properties, followed by laborious genetic mapping experiments to identify the mutant gene responsible for the phenotype. In recent years, somatic cell genetics has been revolutionized by functional genomics screens, in which expression of every protein-coding gene is systematically perturbed, and the phenotype of the perturbed cells is determined. We outline here a novel functional genomics screening strategy that differs fundamentally from commonly used approaches. In this strategy, we express libraries of artificial transmembrane proteins named traptamers and select rare cells with the desired phenotype because, by chance, a traptamer specifically perturbs the expression or activity of a target protein. Active traptamers are then recovered from the selected cells and can be used as tools to dissect the biological process under study. We also briefly describe how we have used this new strategy to provide insights into the complex process by which human papillomaviruses enter cells.
从历史上看,哺乳动物细胞的遗传分析需要分离具有改变特性的随机出现的突变细胞系,然后进行艰苦的遗传图谱实验,以确定导致表型的突变基因。近年来,体细胞遗传学通过功能基因组筛选得到了革命性的发展,在这种筛选中,系统地扰动每个蛋白质编码基因的表达,并确定受扰细胞的表型。我们在这里概述了一种新颖的功能基因组筛选策略,该策略从根本上不同于常用的方法。在这种策略中,我们表达人工跨膜蛋白库,称为 traptamers,并选择具有所需表型的稀有细胞,因为随机地,traptamer 特异性地扰乱靶蛋白的表达或活性。然后从选定的细胞中回收活性 traptamers,并可将其用作工具来剖析正在研究的生物过程。我们还简要描述了如何使用这种新策略深入了解人乳头瘤病毒进入细胞的复杂过程。