利用腺相关病毒载体对小鼠睾丸支持细胞和间质细胞进行靶向基因沉默。

Jing Pang, Mao-Xing Xu, Xiao-Yu Wang, Xu Feng, Yi-Man Duan, Xiao-Yan Zheng, Yu-Qian Chen, Wen Yin, Ying Liu, Ju-Xue Li
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引用次数: 0

摘要

摘要:研究人员常用环化重组酶/基因座X-over P1 (Cre/loxP)技术敲除模型小鼠的条件基因,以研究睾丸内支持细胞和间质细胞中相关基因的功能作用。然而,这些遗传工具的缺点包括成本高,实验周期长,研究人员的可及性有限。因此,探索替代基因沉默技术具有重要的实用价值。在这项研究中,我们利用腺相关病毒(AAV)作为载体,在支持细胞和间质细胞中进行基因沉默。我们的研究结果表明,AAV血清型1、8和9在两种类型的睾丸细胞中都表现出很高的感染效率。重要的是,我们发现所有三种AAV血清型在通过小管注射靶向支持细胞时都表现出良好的特异性,而在通过间质注射靶向间质细胞时表现出显著的选择性。我们在Rosa26-LSL-Cas9小鼠中使用AAV9-single guide RNA (sgRNA)介导的基因编辑技术,在Leydig细胞中实现了类固醇急性调节(Star)和促黄体生成素/人绒毛膜促性腺激素受体(Lhcgr)基因的细胞特异性敲除,但在Sertoli细胞中没有。通过小管注射aav9短发夹RNA (shRNA)介导靶向,实现了野生型小鼠支持细胞雄激素受体(Ar)基因表达的下调。我们的发现为通过aav9介导的基因沉默来研究支持细胞和间质细胞的基因功能提供了技术途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Targeted gene silencing in mouse testicular Sertoli and Leydig cells using adeno-associated virus vectors.

Abstract: Researchers commonly use cyclization recombination enzyme/locus of X-over P1 (Cre/loxP) technology-based conditional gene knockouts of model mice to investigate the functional roles of genes of interest in Sertoli and Leydig cells within the testis. However, the shortcomings of these genetic tools include high costs, lengthy experimental periods, and limited accessibility for researchers. Therefore, exploring alternative gene silencing techniques is of great practical value. In this study, we employed adeno-associated virus (AAV) as a vector for gene silencing in Sertoli and Leydig cells. Our findings demonstrated that AAV serotypes 1, 8, and 9 exhibited high infection efficiency in both types of testis cells. Importantly, we discovered that all three AAV serotypes exhibited exquisite specificity in targeting Sertoli cells via tubular injection while demonstrating remarkable selectivity in targeting Leydig cells via interstitial injection. We achieved cell-specific knockouts of the steroidogenic acute regulatory (Star) and luteinizing hormone/human chorionic gonadotropin receptor (Lhcgr) genes in Leydig cells, but not in Sertoli cells, using AAV9-single guide RNA (sgRNA)-mediated gene editing in Rosa26-LSL-Cas9 mice. Knockdown of androgen receptor (Ar) gene expression in Sertoli cells of wild-type mice was achieved via tubular injection of AAV9-short hairpin RNA (shRNA)-mediated targeting. Our findings offer technical approaches for investigating gene function in Sertoli and Leydig cells through AAV9-mediated gene silencing.

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