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一种用于通过细胞分选进行高通量克隆表征和筛选的双荧光报告系统。

A dual-fluorescence reporter system for high-throughput clone characterization and selection by cell sorting.

作者信息

Choe Juno, Guo Haiwei H, van den Engh Ger

机构信息

Institute for Systems Biology 1441 North 34th Street, Seattle, WA 98103-8904, USA.

出版信息

Nucleic Acids Res. 2005 Mar 14;33(5):e49. doi: 10.1093/nar/gni049.

Abstract

Molecular biology critically depends upon the isolation of desired DNA sequences. Flow cytometry, with its capacity to interrogate and sort more than 50,000 cells/s, shows great potential to expedite clone characterization and isolation. Intrinsic heterogeneity of protein expression levels in cells limits the utility of single fluorescent reporters for cell-sorting. Here, we report a novel dual-fluorescence strategy that overcomes the inherent limitations of single reporter systems by controlling for expression variability. We demonstrate a dual-reporter system using the green fluorescent protein (GFP) gene fused to the Discosoma red fluorescent protein (DsRed) gene. The system reports the successful insertion of foreign DNA with the loss of DsRed fluorescence and the maintenance of GFP fluorescence. Single cells containing inserts are readily recognized by their altered ratios of green to red fluorescence and separated using a high-speed cell-sorter for further processing. This novel reporter system and vector were successfully validated by shotgun library construction, cloned sequence isolation, PCR amplification and DNA sequencing of cloned inserts from bacteria after cell-sorting. This simple, robust system can also be adapted for diverse biosensor assays and is amenable to miniaturization. We demonstrated that dual-fluorescence reporting coupled with high-speed cell-sorting provides a more efficient alternative to traditional methods of clone isolation.

摘要

分子生物学严重依赖于所需DNA序列的分离。流式细胞术能够每秒检测和分选超过50,000个细胞,在加速克隆鉴定和分离方面显示出巨大潜力。细胞中蛋白质表达水平的内在异质性限制了单一荧光报告基因用于细胞分选的效用。在此,我们报告了一种新型双荧光策略,该策略通过控制表达变异性克服了单一报告系统的固有局限性。我们展示了一种双报告系统,该系统使用与盘基网柄菌红色荧光蛋白(DsRed)基因融合的绿色荧光蛋白(GFP)基因。该系统通过DsRed荧光的丧失和GFP荧光的维持来报告外源DNA的成功插入。含有插入片段的单细胞通过其改变的绿色与红色荧光比例很容易被识别,并使用高速细胞分选仪进行分离以进行进一步处理。通过鸟枪法文库构建、克隆序列分离、PCR扩增以及细胞分选后细菌中克隆插入片段的DNA测序,成功验证了这种新型报告系统和载体。这个简单、稳健的系统还可适用于多种生物传感器检测,并且易于小型化。我们证明,双荧光报告与高速细胞分选相结合为传统的克隆分离方法提供了一种更有效的替代方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2aca/1065264/dc80c5687f2e/gni049f1.jpg

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