Transgene-mediated co-suppression of DNA topoisomerase-1 gene in Caenorhabditis elegans.

International journal of biochemistry and molecular biology Pub Date : 2014-05-15 eCollection Date: 2014-01-01
Myon-Hee Lee, Dong Seok Cha, Srivalli Swathi Mamillapalli, Young Chul Kwon, Hyeon-Sook Koo
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Abstract

Ectopic expression of multi-transgenic copies can result in reduced expression of the transgene and can induce silence of endogenous gene; this process is called as co-suppression. Using a transgene-mediated co-suppression technique, we demonstrated the biological function of DNA topoisomerase-1 (top-1) in C. elegans development. Introduction of full-length top-1 transgene sufficiently induced the co-suppression of endogenous top-1 gene, causing embryonic lethality and abnormal germline development. We also found that the co-suppression of top-1 gene affected morphogenesis, lifespan and larval growth that were not observed in top-1 (RNAi) animals. Strikingly, co-suppression effects were significantly reduced by the elimination of top-1 introns, suggesting that efficient co-suppression may require intron(s) in C. elegans. Sequence analysis revealed that the introns 1 and 2 of top-1 gene possess consensus binding sites for several transcription factors, including MAB-3, LIN-14, TTX-3/CEH-10, CEH-1, and CEH-22. Among them, we examined a genetic link between ceh-22 and top-1. The ceh-22 is partially required for the specification of distal tip cells (DTC), which functions as a stem cell niche in the C. elegans gonad. Intriguingly, top-1 (RNAi) significantly enhanced DTC loss in ceh-22 mutant gonads, indicating that top-1 may play an important role in CEH-22-mediated DTC fate specification. Therefore, our findings suggest that transgene-mediated co-suppression facilitates the silencing of the specific genes and the study of gene function in vivo.

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转基因介导的秀丽隐杆线虫DNA拓扑异构酶-1基因共抑制。
多转基因拷贝的异位表达可导致转基因表达减少,并可诱导内源基因沉默;这个过程被称为共抑制。利用转基因介导的共抑制技术,我们证明了DNA拓扑异构酶-1 (top-1)在秀丽隐杆线虫发育中的生物学功能。全长top-1转基因的引入充分诱导了内源top-1基因的共抑制,导致胚胎致死性和种系发育异常。我们还发现,top-1基因的共同抑制对形态发生、寿命和幼虫生长的影响在top-1 (RNAi)动物中没有观察到。引人注目的是,通过消除顶部1内含子,共抑制效应显著降低,这表明线虫中有效的共抑制可能需要内含子。序列分析显示,top-1基因的内含子1和2与多个转录因子具有一致的结合位点,包括MAB-3、LIN-14、TTX-3/CEH-10、CEH-1和CEH-22。其中ceh-22与top-1之间存在遗传联系。ceh-22是秀丽隐杆线虫性腺中作为干细胞生态位的远端尖端细胞(DTC)分化的部分必需基因。有趣的是,top-1 (RNAi)显著增强了ceh-22突变性腺的DTC损失,表明top-1可能在ceh-22介导的DTC命运规范中发挥重要作用。因此,我们的研究结果表明,转基因介导的共抑制促进了特定基因的沉默和体内基因功能的研究。
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