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首页> 外文期刊>Developmental dynamics: an official publication of the American Association of Anatomists >Ex vivo magnetofection: a novel strategy for the study of gene function in mouse organogenesis.
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Ex vivo magnetofection: a novel strategy for the study of gene function in mouse organogenesis.

机译:离体磁转染:研究小鼠器官发生中基因功能的新策略。

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摘要

Gene function during mouse development is often studied through the production and analysis of transgenic and knockout models. However, these techniques are time- and resource-consuming, and require specialized equipment and expertise. We have established a new protocol for functional studies that combines organ culture of explanted fetal tissues with microinjection and magnetically induced transfection ("magnetofection") of gene expression constructs. As proof-of-principle, we magnetofected cDNA constructs into genital ridge tissue as a means of gain-of-function analysis, and shRNA constructs for loss-of-function analysis. Ectopic expression of Sry induced female-to-male sex-reversal, whereas knockdown of Sox9 expression caused male-to-female sex-reversal, consistent with the known functions of these genes. Furthermore, ectopic expression of Tmem184a, a gene of unknown function, in female genital ridges, resulted in failure of gonocytes to enter meiosis. This technique will likely be applicable to the study of gene function in a broader range of developing organs and tissues.
机译:通常通过产生和分析转基因和基因敲除模型来研究小鼠发育过程中的基因功能。但是,这些技术很费时间和资源,并且需要专门的设备和专业知识。我们已经建立了一种功能研究的新方案,该方案将移植的胎儿组织的器官培养与基因表达构建体的显微注射和磁诱导转染(“磁转染”)相结合。作为原理的证明,我们将磁性检测的cDNA构建体作为生殖器功能区分析的一种方法插入生殖器tissue组织,并使用shRNA构建体进行功能丧失分析。 Sry的异位表达引起雌性至雌性逆转,而敲除Sox9表达则引起雄性至雌性逆转,这与这些基因的已知功能一致。此外,功能未知的基因Tmem184a在雌性生殖脊中的异位表达导致性腺细胞无法进入减数分裂。该技术将可能适用于研究更广泛的发育器官和组织中的基因功能。

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