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用于小鼠发育的内源性蛋白质报告基因的高效生成。

Efficient generation of endogenous protein reporters for mouse development.

作者信息

O'Hagan Daniel, Kruger Robin E, Gu Bin, Ralston Amy

机构信息

Department of Biochemistry and Molecular Biology, Michigan State University, East Lansing, MI 48824, USA.

Reproductive and Developmental Sciences Training Program, Michigan State University, East Lansing, MI 48824, USA.

出版信息

Development. 2021 Jul 1;148(13). doi: 10.1242/dev.197418. Epub 2021 Jun 29.

Abstract

Fluorescent proteins and epitope tags can reveal protein localization in cells and animals, yet the large size of many tags hinders efficient genome targeting. Accordingly, many studies have relied on characterizing overexpressed proteins, which might not recapitulate endogenous protein activities. Here, we present two strategies for higher throughput production of endogenous protein reporters in mice, focusing on the blastocyst model of development. Our first strategy makes use of a split fluorescent protein, mNeonGreen2 (mNG2). Knock-in of a small portion of the mNG2 gene, in frame with gene coding regions of interest, was highly efficient in embryos, potentially obviating the need to establish mouse lines. When complemented by the larger portion of the mNG2 gene, fluorescence was reconstituted and endogenous protein localization faithfully reported in living embryos. Our second strategy achieves in-frame knock-in of a relatively small protein tag, which provides high efficiency and higher sensitivity protein reporting. Together, these two approaches provide complementary advantages and enable broad downstream applications.

摘要

荧光蛋白和表位标签可以揭示蛋白质在细胞和动物中的定位,但许多标签的大尺寸阻碍了高效的基因组靶向。因此,许多研究依赖于对过表达蛋白质的表征,而过表达蛋白质可能无法重现内源性蛋白质的活性。在这里,我们提出了两种在小鼠中高通量生产内源性蛋白质报告基因的策略,重点是囊胚发育模型。我们的第一种策略利用了一种分裂荧光蛋白,mNeonGreen2(mNG2)。将一小部分mNG2基因与感兴趣的基因编码区读码框敲入胚胎中效率很高,可能无需建立小鼠品系。当与较大部分的mNG2基因互补时,荧光得以重建,并在活胚胎中忠实地报告了内源性蛋白质的定位。我们的第二种策略实现了一个相对较小的蛋白质标签的读码框敲入,它提供了高效率和更高灵敏度的蛋白质报告。这两种方法共同提供了互补的优势,并实现了广泛的下游应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/411a/8276983/c232dca55e40/develop-148-197418-g1.jpg

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