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虾pva-miR-166在白斑综合征病毒感染期间通过调节凋亡相关基因参与血细胞稳态。

Participation of shrimp pva-miR-166 in hemocyte homeostasis by modulating apoptosis-related gene during white spot syndrome virus infection.

作者信息

Wongdontri Chantaka, Luangtrakul Waruntorn, Boonchuen Pakpoom, Sarnow Peter, Somboonviwat Kulwadee, Jaree Phattarunda, Somboonwiwat Kunlaya

机构信息

Department of Biochemistry, Center of Excellence for Molecular Biology and Genomics of Shrimp, Faculty of Science, Chulalongkorn University, Bangkok, Thailand.

School of Biotechnology, Institute of Agricultural Technology, Suranaree University of Technology, Nakhon Ratchasima, Thailand.

出版信息

J Virol. 2024 Aug 20;98(8):e0053024. doi: 10.1128/jvi.00530-24. Epub 2024 Jul 25.

DOI:10.1128/jvi.00530-24
PMID:39051786
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC11334483/
Abstract

Tiny controllers referred to as microRNAs (miRNAs) impede the expression of genes to modulate biological processes. In invertebrates, particularly in shrimp as a model organism, it has been demonstrated that miRNAs play a crucial role in modulating innate immune responses against viral infection. By analyzing small RNAs, we identified 60 differentially expressed miRNAs (DEMs) in hemocytes following infection with white spot syndrome virus (WSSV). We predicted the target genes of WSSV-responsive miRNAs, shedding light on their participation in diverse biological pathways. We are particularly intrigued by pva-miR-166, which is the most notably elevated miRNA among 60 DEMs. At 24 h post-infection (hpi), the negative correlation between the expression of pva-miR-166 and its target gene, , was evident and their interaction was confirmed by a reduction in luciferase activity . Suppression of in unchallenged shrimp led to decreased survival rates, reduced total hemocyte count (THC), and increased caspase 3/7 activity, suggesting its significant role in maintaining hemocyte homeostasis. In WSSV-infected shrimp, a lower number of hemocytes corresponded to a lower WSSV load, but higher shrimp mortality was observed when was suppressed. Conformingly, the introduction of the pva-miR-166 mimic to WSSV-infected shrimp resulted in decreased levels of transcripts, a significant loss of THC, and an increase in the hemocyte apoptosis. Taken together, we propose that pva-miR-166 modulates hemocyte homeostasis during WSSV infection by suppressing the , an anti-apoptotic gene. inhibition disrupts hemocyte homeostasis, rendering the shrimp's inability to withstand WSSV invasion.IMPORTANCEGene regulation by microRNAs (miRNAs) has been reported during viral infection. Furthermore, hemocytes serve a dual role, not only producing various immune-related molecules to combat viral infections but also acting as a viral replication site. Maintaining hemocyte homeostasis is pivotal for the shrimp's survival during infection. The upregulated miRNA pva-miR-166 could repress expression in shrimp hemocytes infected with WSSV. The significance of in maintaining hemocyte homeostasis via apoptosis led to reduced survival rate, decreased total hemocyte numbers, and elevated caspase 3/7 activity in -silenced shrimp. Additionally, the inhibitory ability of pva-miR-166-mimic and dsRNA- on the expression of also lowered the THC, increases the hemocyte apoptosis, resulting in a lower WSSV copy number. Ultimately, the dysregulation of the anti-apoptotic gene by pva-miR-166 during WSSV infection disrupts hemocyte homeostasis, leading to an immunocompromised state in shrimp, rendering them incapable of surviving WSSV invasion.

摘要

被称为微小RNA(miRNA)的微小调控因子会阻碍基因表达以调节生物过程。在无脊椎动物中,特别是在作为模式生物的虾中,已证明miRNA在调节针对病毒感染的先天免疫反应中起关键作用。通过分析小RNA,我们在感染白斑综合征病毒(WSSV)后的血细胞中鉴定出60个差异表达的miRNA(DEM)。我们预测了WSSV反应性miRNA的靶基因,揭示了它们参与多种生物途径的情况。我们对pva-miR-166特别感兴趣,它是60个DEM中显著升高的miRNA。在感染后24小时(hpi),pva-miR-166与其靶基因的表达之间存在明显的负相关,并且通过荧光素酶活性的降低证实了它们之间的相互作用。在未受挑战的虾中抑制该基因会导致存活率降低、总血细胞计数(THC)减少以及半胱天冬酶3/7活性增加,表明其在维持血细胞稳态中起重要作用。在WSSV感染的虾中,血细胞数量越少,WSSV载量越低,但当该基因被抑制时,虾的死亡率更高。相应地,将pva-miR-166模拟物引入WSSV感染的虾中会导致该基因转录本水平降低、THC显著减少以及血细胞凋亡增加。综上所述,我们提出pva-miR-166通过抑制一个抗凋亡基因来调节WSSV感染期间的血细胞稳态。该基因的抑制会破坏血细胞稳态,使虾无法抵御WSSV入侵。

重要性

在病毒感染期间已报道了微小RNA(miRNA)对基因的调控。此外,血细胞具有双重作用,不仅产生各种免疫相关分子来对抗病毒感染,还充当病毒复制位点。维持血细胞稳态对于虾在感染期间的存活至关重要。上调的miRNA pva-miR-166可抑制WSSV感染的虾血细胞中的该基因表达。该基因通过凋亡维持血细胞稳态的重要性导致在该基因沉默的虾中存活率降低、总血细胞数量减少以及半胱天冬酶3/7活性升高。此外,pva-miR-166模拟物和双链RNA对该基因表达的抑制能力也降低了THC,增加了血细胞凋亡,导致WSSV拷贝数降低。最终,在WSSV感染期间pva-miR-166对抗凋亡基因的失调破坏了血细胞稳态,导致虾处于免疫受损状态,使其无法在WSSV入侵中存活。