Identification and Expression Analysis of Suppressors of Cytokine Signaling from Spotted Seabass (Lateolabrax maculatus)

IF 1.9 4区 农林科学 Q2 FISHERIES Aquaculture Research Pub Date : 2024-01-09 DOI:10.1155/2024/6611206
Chuanguo Cai, Jiasong Xie, Jiaqi Gao, Zhitao Qi, Ke Fan, Zhaosheng Sun, Lina Lei, Qian Gao
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Abstract

The suppressor of cytokine signaling (SOCS) plays a negative role in the cytokine signaling pathway, preventing excessive signaling from interfering with the metabolic homeostasis of the body. By regulating the Janus kinase-signal transducer and activator of transcription pathway through negative feedback, SOCS have a significant impact on the regulation of both innate and adaptive immunity against pathogens, thus playing a crucial role in the immune response, growth, and development of the body. In this study, the cDNA sequences of SOCS1, 2, 3a, 3b, 4, 5b, 6, 7, 8, 9, and CISH genes of spotted seabass (Lateolabrax maculatus), an important marine economic fish in China, were cloned using RT-PCR, nested PCR, and RACE techniques. Multiple sequence alignment showed that the SOCS family members shared highly conserved functional structural domains, including the SRC homology 2 domain (SH2 domain) and the SOCS-box domain. The phylogenetic analysis showed that SOCS1, 2, 3a, 3b, 8, and CISH belonged to the type II subfamily of SOCS genes, while SOCS4, 5b, 6, 7, and SOCS9 belonged to the type I subfamily. Furthermore, gene organization and syntenic analysis confirmed the phylogenetic analysis and protein annotation of the SOCS gene family in spotted seabass. Constitutive expression of spotted seabass SOCS genes was observed in various tissues of healthy fish, with varying expression levels. Following the lipopolysaccharide and Edwardsiella tarda challenge, the expression profiles of spotted seabass SOCS genes were differently regulated in the gill, head kidney, intestine, and spleen. These findings provide a basis for future research on the functional properties of SOCS genes in spotted seabass.

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斑点鲈(Lateolabrax maculatus)细胞因子信号抑制因子的鉴定和表达分析
细胞因子信号转导抑制因子(SOCS)在细胞因子信号转导途径中发挥负作用,防止过度的信号转导干扰机体的代谢平衡。SOCS 通过负反馈调节 Janus 激酶-信号转导子和转录激活子通路,对先天性免疫和适应性免疫产生重要影响,从而在机体的免疫反应、生长和发育中发挥关键作用。本研究利用 RT-PCR、巢式 PCR 和 RACE 技术克隆了我国重要的海洋经济鱼类--斑点叉尾鲈的 SOCS1、2、3a、3b、4、5b、6、7、8、9 和 CISH 基因的 cDNA 序列。多重序列比对表明,SOCS家族成员具有高度保守的功能结构域,包括SRC同源2结构域(SH2结构域)和SOCS-box结构域。系统进化分析表明,SOCS1、2、3a、3b、8和CISH属于SOCS基因的II型亚族,而SOCS4、5b、6、7和SOCS9属于I型亚族。此外,基因组织和同源分析证实了斑点叉尾鲈 SOCS 基因家族的系统进化分析和蛋白质注释。在健康鱼类的不同组织中观察到斑海鲈SOCS基因的连续表达,表达水平不一。在受到脂多糖和Edwardsiella tarda挑战后,斑海鲈SOCS基因在鳃、头肾、肠道和脾脏中的表达谱受到不同程度的调控。这些发现为今后研究斑点叉尾鲈 SOCS 基因的功能特性奠定了基础。
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来源期刊
Aquaculture Research
Aquaculture Research 农林科学-渔业
CiteScore
4.60
自引率
5.00%
发文量
464
审稿时长
5.3 months
期刊介绍: International in perspective, Aquaculture Research is published 12 times a year and specifically addresses research and reference needs of all working and studying within the many varied areas of aquaculture. The Journal regularly publishes papers on applied or scientific research relevant to freshwater, brackish, and marine aquaculture. It covers all aquatic organisms, floristic and faunistic, related directly or indirectly to human consumption. The journal also includes review articles, short communications and technical papers. Young scientists are particularly encouraged to submit short communications based on their own research.
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