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Effective suppression of Dengue virus using a novel group-I intron that induces apoptotic cell death upon infection through conditional expression of the Bax C-terminal domain

机译:使用新型I类内含子有效感染登革热病毒,该感染子通过Bax C末端域的条件表达诱导感染后凋亡细胞死亡

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摘要

Introduction: Approximately 100 million confirmed infections and 20,000 deaths are caused by Dengue virus (DENV) outbreaks annually. Global warming and rapid dispersal have resulted in DENV epidemics in formally non-endemic regions. Currently no consistently effective preventive measures for DENV exist, prompting development of transgenic and paratransgenic vector control approaches. Production of transgenic mosquitoes refractory for virus infection and/or transmission is contingent upon defining antiviral genes that have low probability for allowing escape mutations, and are equally effective against multiple serotypes. Previously we demonstrated the effectiveness of an anti-viral group I intron targeting U143 of the DENV genome in mediating trans-splicing and expression of a marker gene with the capsid coding domain. In this report we examine the effectiveness of coupling expression of ΔN Bax to trans-splicing U143 intron activity as a means of suppressing DENV infection of mosquito cells.Results: Targeting the conserved DENV circularization sequence (CS) by U143 intron trans-splicing activity appends a 3’ exon RNA encoding ΔN Bax to the capsid coding region of the genomic RNA, resulting in a chimeric protein that induces premature cell death upon infection. TCID50-IFA analyses demonstrate an enhancement of DENV suppression for all DENV serotypes tested over the identical group I intron coupled with the non-apoptotic inducing firefly luciferase as the 3’ exon. These cumulative results confirm the increased effectiveness of this αDENV-U143-ΔN Bax group I intron as a sequence specific antiviral that should be useful for suppression of DENV in transgenic mosquitoes. Annexin V staining, caspase 3 assays, and DNA ladder observations confirm DCA-ΔN Bax fusion protein expression induces apoptotic cell death.Conclusion: This report confirms the relative effectiveness of an anti-DENV group I intron coupled to an apoptosis-inducing ΔN Bax 3’ exon that trans-splices conserved sequences of the 5’ CS region of all DENV serotypes and induces apoptotic cell death upon infection. Our results confirm coupling the targeted ribozyme capabilities of the group I intron with the generation of an apoptosis-inducing transcript increases the effectiveness of infection suppression, improving the prospects of this unique approach as a means of inducing transgenic refractoriness in mosquitoes for all serotypes of this important disease.
机译:简介:每年由登革热病毒(DENV)爆发引起大约1亿例确诊感染和2万例死亡。全球变暖和迅速扩散已导致DENV在正式非流行地区流行。目前尚无针对DENV的始终有效的预防措施,从而促进了转基因和转基因载体控制方法的发展。因病毒感染和/或传播而难治的转基因蚊子的产生取决于确定的抗病毒基因,这些基因的逃逸突变可能性低,并且对多种血清型同样有效。以前,我们证明了靶向DENV基因组U143的抗病毒I组内含子在介导衣壳编码域标记基因的反式剪接和表达中的有效性。在本报告中,我们研究了将ΔNBax表达与反分裂U143内含子活性偶联作为抑制蚊子DENV感染的方法的有效性。结果:通过U143内含子反转录活性附件靶向保守的DENV环化序列(CS)在基因组RNA的衣壳编码区编码ΔNBax的3'外显子RNA,产生一种嵌合蛋白,可在感染后诱导细胞过早死亡。 TCID50-IFA分析显示,与相同的I组内含子结合非凋亡诱导萤火虫荧光素酶作为3'外显子相比,测试的所有DENV血清型的DENV抑制作用均得到增强。这些累积的结果证实了该αDENV-U143-ΔNBax I组内含子作为序列特异性抗病毒剂的有效性提高,该抗病毒剂应可用于抑制转基因蚊子中的DENV。 Annexin V染色,caspase 3检测和DNA阶梯观察证实DCA-ΔNBax融合蛋白表达诱导凋亡细胞死亡。结论:本报告证实了抗DENV I组内含子与凋亡诱导ΔNBax 3结合的相对有效性。反式剪接使所有DENV血清型的5'CS区域的序列保守,并在感染后诱导凋亡细胞死亡。我们的结果证实,将I组内含子的靶向核酶功能与诱导细胞凋亡的转录本结合起来,可以提高感染抑制的效果,从而改善了这种独特方法作为在蚊子中诱导所有这种血清型的转基因难治性的方法的前景。重要疾病。

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