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利用翻译增强子 dMac3 和糖皮质激素处理激活的诱导型启动子建立条件性 TALEN 系统,以提高植物中靶向诱变的频率。

Establishment of a conditional TALEN system using the translational enhancer dMac3 and an inducible promoter activated by glucocorticoid treatment to increase the frequency of targeted mutagenesis in plants.

机构信息

Department of Biological Science and Technology, Tokyo University of Science, Katsushika, Tokyo, Japan.

出版信息

PLoS One. 2018 Dec 26;13(12):e0208959. doi: 10.1371/journal.pone.0208959. eCollection 2018.

Abstract

Transcription activator-like effector nuclease (TALEN) is an artificial nuclease that causes DNA cleavage at the target site and induces few off-target reactions because of its high sequence specificity. Powerful and variable tools using TALENs can be used in practical applications and may facilitate the molecular breeding of many plant species. We have developed a convenient construction system for a plant TALEN vector named the Emerald Gateway TALEN system. In this study, we added new properties to this system, which led to an increase in the efficiency of targeted mutagenesis. Rice dMac3 is a translational enhancer that highly increases the efficiency of translation of the downstream ORF. We inserted dMac3 into the 5' untranslated region of the TALEN gene. In the cultured rice cells to which the TALEN gene was introduced, the frequency of targeted mutagenesis was highly increased compared with those altered using the conventional system. Next, the promoter for the TALEN gene was replaced with iPromoter, and its expression was stringently controlled by a GVG transcription factor that was activated in the presence of glucocorticoid. This conditional expression system worked effectively and led to a higher frequency of targeted mutagenesis than that by the constitutive expression system, while no mutagenesis was detected without glucocorticoid treatment. These results suggest that our system can be applied to genome editing to create the desired mutation.

摘要

转录激活因子样效应物核酸酶(TALEN)是一种人工核酸酶,由于其高度的序列特异性,在靶位点引起 DNA 断裂,并诱导很少的脱靶反应。使用 TALEN 的强大和多变的工具可用于实际应用,并可能促进许多植物物种的分子育种。我们开发了一种名为 Emerald Gateway TALEN 系统的植物 TALEN 载体的便捷构建系统。在这项研究中,我们为该系统添加了新的特性,从而提高了靶向突变的效率。水稻 dMac3 是一种翻译增强子,可大大提高下游 ORF 的翻译效率。我们将 dMac3 插入 TALEN 基因的 5'非翻译区。在导入 TALEN 基因的培养水稻细胞中,与使用常规系统相比,靶向突变的频率大大提高。接下来,用 iPromoter 替换 TALEN 基因的启动子,并通过在存在糖皮质激素的情况下激活的 GVG 转录因子严格控制其表达。该条件表达系统有效工作,并导致靶向突变的频率高于组成型表达系统,而在没有糖皮质激素处理的情况下未检测到突变。这些结果表明,我们的系统可用于基因组编辑以产生所需的突变。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4244/6306166/414e4c1c8dfd/pone.0208959.g001.jpg

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