Arthropod Genetics, The Pirbright Institute, Ash Road, Pirbright, GU24 0HN, U.K.
Arbovirus Pathogenesis Group, The Pirbright Institute, Ash Road, Pirbright, GU24 0HN, U.K.
ACS Synth Biol. 2024 Sep 20;13(9):3041-3045. doi: 10.1021/acssynbio.4c00250. Epub 2024 Aug 28.
The ability to control gene expression is pivotal in genetic engineering and synthetic biology. However, in most nonmodel and pest insect species, empirical evidence for predictable modulation of gene expression levels is lacking. This knowledge gap is critical for genetic control systems, particularly in mosquitoes, where transgenic methods offer novel routes for pest control. Commonly, the choice of RNA polymerase II promoter (Pol II) is the primary method for controlling gene expression, but the options are limited. To address this, we developed a systematic approach to characterize modifications in translation initiation sequences (TIS) and 3' untranslated regions (UTR) of transgenes, enabling the creation of a toolbox for gene expression modulation in mosquitoes and potentially other insects. The approach demonstrated highly predictable gene expression changes across various cell lines and 5' regulatory sequences, representing a significant advancement in mosquito synthetic biology gene expression tools.
基因表达调控在基因工程和合成生物学中至关重要。然而,在大多数非模式和害虫昆虫物种中,缺乏可预测基因表达水平调节的经验证据。这一知识空白对于遗传控制系统至关重要,特别是在蚊子中,转基因方法为害虫控制提供了新途径。通常,选择 RNA 聚合酶 II 启动子(Pol II)是控制基因表达的主要方法,但选择有限。为了解决这个问题,我们开发了一种系统的方法来描述转基因翻译起始序列(TIS)和 3'非翻译区(UTR)的修饰,从而为蚊子和可能其他昆虫的基因表达调控创建了一个工具盒。该方法在各种细胞系和 5'调控序列中展示了高度可预测的基因表达变化,这是蚊子合成生物学基因表达工具的重大进展。