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绘制转基因插入位点揭示小鼠转基因与邻近内源基因之间的复杂相互作用。

Mapping Transgene Insertion Sites Reveals Complex Interactions Between Mouse Transgenes and Neighboring Endogenous Genes.

作者信息

Laboulaye Mallory A, Duan Xin, Qiao Mu, Whitney Irene E, Sanes Joshua R

机构信息

Center for Brain Science and Department of Molecular and Cellular Biology, Harvard University, Cambridge, MA, United States.

出版信息

Front Mol Neurosci. 2018 Oct 23;11:385. doi: 10.3389/fnmol.2018.00385. eCollection 2018.

Abstract

Transgenic mouse lines are routinely employed to label and manipulate distinct cell types. The transgene generally comprises cell-type specific regulatory elements linked to a cDNA encoding a reporter or other protein. However, off-target expression seemingly unrelated to the regulatory elements in the transgene is often observed, it is sometimes suspected to reflect influences related to the site of transgene integration in the genome. To test this hypothesis, we used a proximity ligation-based method, Targeted Locus Amplification (TLA), to map the insertion sites of three well-characterized transgenes that appeared to exhibit insertion site-dependent expression in retina. The nearest endogenous genes to transgenes HB9-GFP, Mito-P, and TYW3 are , and , respectively. For two lines, we demonstrate that expression reflects that of the closest endogenous gene ( and ), even though the distance between transgene and endogenous gene is 550 and 680 kb, respectively. In all three lines, the transgenes decrease expression of the neighboring endogenous genes. In each case, the affected endogenous gene was expressed in at least some of the cell types that the transgenic line has been used to mark and study. These results provide insights into the effects of transgenes and endogenous genes on each other's expression, demonstrate that mapping insertion site is valuable for interpreting results obtained with transgenic lines, and indicate that TLA is a reliable method for integration site discovery.

摘要

转基因小鼠品系通常用于标记和操纵不同的细胞类型。转基因通常由与编码报告基因或其他蛋白质的cDNA相连的细胞类型特异性调控元件组成。然而,经常观察到与转基因中的调控元件看似无关的脱靶表达,有时怀疑这反映了与转基因在基因组中的整合位点相关的影响。为了验证这一假设,我们使用了一种基于邻近连接的方法,即靶向位点扩增(TLA),来绘制三个特征明确的转基因在视网膜中似乎表现出插入位点依赖性表达的插入位点。与转基因HB9-GFP、Mito-P和TYW3最近的内源性基因分别是 、 和 。对于两个品系,我们证明表达反映了最接近的内源性基因( 和 )的表达,尽管转基因与内源性基因之间的距离分别为550和680 kb。在所有三个品系中,转基因都会降低邻近内源性基因的表达。在每种情况下,受影响的内源性基因至少在转基因品系用于标记和研究的某些细胞类型中表达。这些结果为转基因和内源性基因对彼此表达的影响提供了见解,证明绘制插入位点对于解释转基因品系获得的结果很有价值,并表明TLA是一种可靠的整合位点发现方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8b5e/6206269/aade6f9e5a45/fnmol-11-00385-g001.jpg

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