Two IFNa3s mediate the regulation of IRF9 in the process of infection with Streptococcus iniae in yellowfin seabream, Acanthopagrus latus (Hottuyn, 1782)

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
Hong-Xi He , Hua-Yang Guo , Bao-Suo Liu , Nan Zhang , Ke-Cheng Zhu , Dian-Chang Zhang
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引用次数: 0

Abstract

IRF9 can play an antibacterial role by regulating the type I interferon (IFN) pathway. Streptococcus iniae can cause many deaths of yellowfin seabream, Acanthopagrus latus in pond farming. Nevertheless, the regulatory mechanism of type I IFN signalling by A. latus IRF9 (AlIRF9) against S. iniae remains elucidated. In our study, AlIRF9 has a total cDNA length of 3200 bp and contains a 1311 bp ORF encoding a presumed 436 amino acids (aa). The genomic DNA sequence of AlIRF9 has nine exons and eight introns, and AlIRF9 was expressed in various tissues, containing the stomach, spleen, brain, skin, and liver, among which the highest expression was in the spleen. Moreover, AlIRF9 transcriptions in the spleen, liver, kidney, and brain were increased by S. iniae infection. By overexpression of AlIRF9, AlIRF9 is shown as a whole-cell distribution, mainly concentrated in the nucleus. Moreover, the promoter fragments of −415 to +192 bp and −311 to +196 bp were regarded as core sequences from two AlIFNa3s. The point mutation analyses verified that AlIFNa3 and AlIFNa3-like transcriptions are dependent on both M3 sites with AlIRF9. In addition, AlIRF9 could greatly reduce two AlIFNa3s and interferon signalling factors expressions. These results showed that in A. latus, both AlIFNa3 and AlIFNa3-like can mediate the regulation of AlIRF9 in the process of infection with S. iniae.

在黄鳍鲷感染猪链球菌的过程中,两种 IFNa3 介导了对 IRF9 的调控
IRF9 可通过调节 I 型干扰素(IFN)途径发挥抗菌作用。在池塘养殖中,链球菌可导致黄鳍鲷大量死亡。然而,拉丁鲷 IRF9(AlIRF9)针对链球菌的 I 型 IFN 信号的调控机制仍有待阐明。在我们的研究中,AlIRF9 的 cDNA 总长度为 3200 bp,包含一个 1311 bp 的 ORF,编码推测的 436 个氨基酸(aa)。AlIRF9的基因组DNA序列有9个外显子和8个内含子,在胃、脾、脑、皮肤和肝等多种组织中均有表达,其中脾脏的表达量最高。此外,感染猪链球菌后,脾脏、肝脏、肾脏和大脑中的 AlIRF9 转录量增加。过表达 AlIRF9 后,AlIRF9 呈全细胞分布,主要集中在细胞核中。此外,-415至+192 bp和-311至+196 bp的启动子片段被认为是两个AlIFNa3的核心序列。点突变分析验证了 AlIFNa3 和 AlIFNa3-like 的转录依赖于 AlIRF9 的两个 M3 位点。此外,AlIRF9 还能大大降低两个 AlIFNa3s 和干扰素信号因子的表达。这些结果表明,在A. latus感染S. iniae的过程中,AlIFNa3和AlIFNa3-like都能介导AlIRF9的调控。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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