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用于……的小RNA介导的条件性敲低系统的开发

Development of an sRNA-mediated conditional knockdown system for .

作者信息

Ehses Janina, Wang Kevin, Densi Asha, Ramirez Cuper, Tan Ming, Sütterlin Christine

机构信息

Department of Developmental and Cell Biology, University of California, Irvine, California, USA.

Department of Microbiology and Molecular Genetics, University of California, Irvine, California, USA.

出版信息

mBio. 2025 Feb 5;16(2):e0254524. doi: 10.1128/mbio.02545-24. Epub 2024 Dec 13.

Abstract

We describe a new protein depletion method that uses an engineered small RNA (sRNA) to inhibit translation of a target gene. In proof-of-principle experiments, we induced functional knockdown of IncA, a fusion-mediating inclusion membrane protein, as shown with Western blots, loss of IncA staining at the inclusion membrane, and production of multiple chlamydial inclusions within an infected cell. These effects were titratable and reversible. To test for polar effects, we separately targeted the inclusion membrane proteins IncE and IncG, which are expressed from the operon. Knockdown of IncE caused loss of IncE and its interacting host protein SNX6 at the inclusion membrane, without affecting IncG protein levels. Similarly, IncG knockdown significantly reduced IncG levels and prevented recruitment of its interacting host protein 14-3-3β, without altering IncE protein levels. These data provide the first genetic evidence that IncE and IncG are necessary for the recruitment of SNX6 and 14-3-3β, respectively, demonstrating the value of this knockdown approach. We also successfully depleted the major chlamydial surface protein, major outer membrane protein (MOMP), which is encoded by a likely essential gene that has not been previously disrupted or knocked down. MOMP knockdown caused severe defects in bacterial morphology and progeny production. Thus, our sRNA-based approach has broad potential as a conditional knockdown method for studying the function of genes, including essential genes and genes in an operon.IMPORTANCEWe describe a new method to reduce protein levels of a selected gene in the pathogenic bacterium . This approach utilizes an engineered small RNA (sRNA) to inhibit translation of the mRNA for a target gene and produced inducible and reversible protein knockdown. Our method successfully knocked down four proteins, including a likely essential gene and individual genes in an operon, without altering protein levels of a neighboring gene. This conditional knockdown method will be useful for studying the function of genes in . It also has the potential to be applied to other obligate intracellular bacteria, including and .

摘要

我们描述了一种新的蛋白质消耗方法,该方法使用工程化小RNA(sRNA)来抑制靶基因的翻译。在原理验证实验中,我们诱导了IncA(一种融合介导的包涵体膜蛋白)的功能性敲低,如蛋白质免疫印迹所示,包涵体膜上IncA染色消失,且受感染细胞内产生多个衣原体包涵体。这些效应是可滴定且可逆的。为了测试极性效应,我们分别靶向了从同一操纵子表达的包涵体膜蛋白IncE和IncG。敲低IncE导致包涵体膜上IncE及其相互作用的宿主蛋白SNX6缺失,而不影响IncG蛋白水平。同样,敲低IncG显著降低了IncG水平,并阻止了其相互作用的宿主蛋白14-3-3β的募集,而不改变IncE蛋白水平。这些数据提供了首个遗传学证据,即IncE和IncG分别是募集SNX6和14-3-3β所必需的,证明了这种敲低方法的价值。我们还成功消耗了衣原体主要表面蛋白——主要外膜蛋白(MOMP),该蛋白由一个此前未被破坏或敲低的可能必需基因编码。MOMP敲低导致细菌形态和子代产生严重缺陷。因此,我们基于sRNA的方法作为一种条件性敲低方法,在研究基因功能方面具有广泛潜力,这些基因包括必需基因和操纵子中的基因。重要性我们描述了一种在致病性细菌中降低选定基因蛋白质水平的新方法。这种方法利用工程化小RNA(sRNA)抑制靶基因mRNA的翻译,并产生可诱导且可逆的蛋白质敲低。我们的方法成功敲低了四种蛋白质,包括一个可能的必需基因和操纵子中的单个基因,而不改变相邻基因的蛋白质水平。这种条件性敲低方法将有助于研究该细菌中基因的功能。它还有可能应用于其他专性胞内细菌,包括[具体细菌1]和[具体细菌2]。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7302/11796381/e5db3c65f4d9/mbio.02545-24.f001.jpg

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