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首页> 外文期刊>Fish & Shellfish Immunology >Snakehead vesiculovirus (SHVV) infection alters striped snakehead (Ophicephalus striatus) cells (SSN-1) glutamine metabolism and apoptosis pathways
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Snakehead vesiculovirus (SHVV) infection alters striped snakehead (Ophicephalus striatus) cells (SSN-1) glutamine metabolism and apoptosis pathways

机译:Snakehead Vesiculovirus(Shvv)感染改变条纹蛇头(蛋白氏菌类)细胞(SSN-1)谷氨酰胺代谢和凋亡途径

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摘要

Snakehead vesiculovirus (SHVV) causes enormous economic losses in snakehead fish (Ophicephalus striates) culture. Understanding replication mechanisms of virus is considerable significance in preventing and treating viral disease. In our previous studies, we have reported that glutamine starvation could significant inhibit the replication of SHVV. Furthermore, we also showed that SHVV infection could cause apoptosis of striped snakehead fish cells (SSN-1). However, the underlying mechanisms remain enigmatic. To decipher the relationships among the viral infection, glutamine starvation and apoptosis, SSN-1 cells transcriptomic profilings of SSN-1 cells infected with or without SHVV under glutamine deprived condition were analyzed. RNA-seq was used to identify differentially expressed genes (DEGs). Our data revealed that 1215 up-regulated and 226 down-regulated genes at 24 h post-infection were involved in MAPK, apoptosis, RIG-1-like and toll-like receptors pathways and glutamine metabolism. Subsequently, DEGs of glutamine metabolism and apoptosis pathways were selected to validate the sequencing data by quantitative real-time PCR (qRT-PCR). The expression patterns of both transcriptomic data and qRT-PCR were consistent. We observed that lack of glutamine alone could cause mild cellular apoptosis. However, lack of glutamine together with SHVV infection could synergistically enhance cellular apoptosis. When the cells were cultured in complete medium with glutamine, overexpression of glutaminase (GLS), an essential enzyme for glutamine metabolism, could significantly enhance the SHVV replication. While, SHVV replication was decreased in cells when GLS was knocked down by specific siRNA, indicating that glutamine metabolism was essential for viral replication. Furthermore, the expression level of caspase-3 and Bax was significantly decreased in SHVV infected cells with GLS overexpression. By contrast, they were significantly increased in SHVV infected cells with GLS silence by SiRNA, indicating that SHVV infection activated the Bax and caspase-3 pathways to induce apoptosis independent of glutamine. Our results reveal that SHVV replication and starvation of glutamine could synergistically promote the cellular apoptosis, which will pave a new way for developing strategies against the vial infection.
机译:Snakehead Vesiculovirus(SHVV)在蛇头鱼(翼氏鼠纹纹)文化中导致巨大的经济损失。了解病毒的复制机制对于预防和治疗病毒性疾病是相当大的意义。在我们以前的研究中,我们据报道,谷氨酰胺饥饿可能会抑制SHVV的复制。此外,我们还表明,SHVV感染可能导致条纹蛇头鱼细胞的凋亡(SSN-1)。但是,潜在机制仍然存在神秘的机制。为了破译病毒感染,谷氨酰胺饥饿和细胞凋亡的关系,分析了在谷氨酰胺剥离条件下感染或不感染的SSN-1细胞的SSN-1细胞转录组分析。 RNA-SEQ用于鉴定差异表达基因(DEGS)。我们的数据表明,感染后24小时的1215个上调和226个下调基因涉及MAPK,凋亡,钻石1状和收费的受体途径和谷氨酰胺代谢。随后,选择谷氨酰胺代谢和凋亡途径通过定量实时PCR(QRT-PCR)来验证测序数据。转录组和QRT-PCR的表达模式一致。我们观察到缺乏谷氨酰胺可能导致轻度细胞凋亡。然而,谷氨酰胺与SHVV感染一起缺乏谷氨酰胺可以协同增强细胞凋亡。当细胞用谷氨酰胺的完全培养基中培养时,谷氨酰胺酶(GLS)的过表达,谷氨酰胺代谢的必需酶可以显着提高SHVV复制。虽然,当通过特定siRNA敲击GLS敲击时,细胞中的SHVV复制减少,表明谷氨酰胺代谢对于病毒复制至关重要。此外,随着GLS过表达的SHVV感染细胞中,Caspase-3和Bax的表达水平显着降低。相比之下,SHVV感染细胞随着SiRNA的GLS沉默,它们在SHVV感染细胞中显着增加,表明SHVV感染活化了BAX和Caspase-3途径,诱导抑制凋亡凋亡。我们的研究结果表明,谷氨酰胺的SHVV复制和饥饿可以协同促进细胞凋亡,这将为发展策略进行抗击小瓶感染的新途径。

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