Center for Stem Cell Biology & Regenerative Medicine, University of Maryland School of Medicine, Baltimore, MD, USA.
Biotechniques. 2013 Feb;54(2):77-86. doi: 10.2144/000113991.
MicroRNAs (miRs) regulate cellular processes by modulating gene expression. Although transcriptomic studies have identified numerous miRs differentially expressed in diseased versus normal cells, expression analysis alone cannot distinguish miRs driving a disease phenotype from those merely associated with the disease. To address this limitation, we developed miR-HTS, a method for unbiased high-throughput screening of the miRNome to identify functionally relevant miRs. Herein, we applied miR-HTS to simultaneously analyze the effects of 578 lentivirally transduced human miRs or miR clusters on growth of the IMR90 human lung fibroblast cell line. Growth-regulatory miRs were identified by quantitating the representation (i.e., relative abundance) of cells overexpressing each miR over a one-month culture of IMR90, using a panel of custom-designed quantitative real-time PCR (qPCR) assays specific for each transduced miR expression cassette. The miR-HTS identified 4 miRs previously reported to inhibit the growth of human lung-derived cell lines and 55 novel growth-inhibitory miR candidates. Nine of 12 (75%) selected candidate miRs were validated and shown to inhibit IMR90 cell growth. Thus, this novel lentiviral library- and qPCR-based miR-HTS technology provides a sensitive platform for functional screening that is straightforward and relatively inexpensive.
微小 RNA(miRs)通过调节基因表达来调控细胞过程。尽管转录组学研究已经确定了许多在疾病细胞与正常细胞中差异表达的 miRs,但仅通过表达分析无法区分驱动疾病表型的 miRs 与仅与疾病相关的 miRs。为了解决这一限制,我们开发了 miR-HTS,这是一种用于无偏高通量筛选 miRNome 以识别功能相关 miRs 的方法。在此,我们应用 miR-HTS 同时分析了 578 种慢病毒转导的人 miR 或 miR 簇对 IMR90 人肺成纤维细胞系生长的影响。通过使用针对每个转导的 miR 表达盒特异性设计的一组定制定量实时 PCR(qPCR)测定法,定量检测每个 miR 过表达细胞在 IMR90 培养一个月中的代表性(即相对丰度),鉴定出具有生长调节作用的 miRs。miR-HTS 鉴定出了 4 种先前报道的抑制人肺源性细胞系生长的 miR 和 55 种新的生长抑制性 miR 候选物。在 12 个候选 miR 中,有 9 个(75%)被选中并证明可以抑制 IMR90 细胞生长。因此,这种新型的慢病毒文库和 qPCR 基于的 miR-HTS 技术提供了一种敏感的功能筛选平台,该平台简单且相对便宜。