数字农科院2.0

Characterization and functional analysis of a novel C1q domain-containing protein from grass carp (Ctenopharyngodon idella) in response to bacterial challenge

文献类型: 外文期刊

作者: Xia Zhang;Ran Peng;Fufa Qu;Meixing Guo;Ting Wu;Hao He;Yuhan Zhang;Kelan Jin;Jianzhou Tang;Yalin Yang;Zhigang Zhou;Junde Fan;Jianzhong Li;Zhen Liu

作者机构:

关键词: Bacterial challenge;CiC1ql2;Complement;Ctenopharyngodon idella;Intestinal immunity

期刊名称: Aquaculture Reports

ISSN: 2352-5134

年卷期: 2024 年 35 卷

页码:

收录情况: SCIE(2024版)

摘要: C1q domain-containing (C1qDC) proteins are significant pattern recognition receptors in the innate immune system that play important roles in regulating immune responses in vertebrates and invertebrates. In this study, a gene encoding the fish C1qDC (designated CiC1ql2) from the grass carp Ctenopharyngodon idella was characterized for the first time. Like other reported C1ql proteins, CiC1ql2 contains a conserved C1q domain and a signal peptide at its 5′ end. Expression profile analysis revealed that CiC1ql2 was mostly expressed in the intestine but was expressed at low levels in the brain and gill. In vivo injection experiments directly revealed that CiC1ql2 exhibited strong responsiveness to Aeromonas hydrophila, Aeromonas veronii and pathogen-associated molecular pattern (PAMP) challenge, as indicated by the presence of lipopolysaccharide (LPS) and peptidoglycan (PGN), and that the expression of these genes was significantly upregulated in the intestine of C. idella. Additionally, the recombinant CiC1ql2 protein obviously promoted the agglutination of the gram-negative bacteria A. hydrophila and A. veronii and the gram-positive bacterium Bacillus subtilis, as shown by in vitro binding experiments. Moreover, CiC1ql2 protein injection experiment revealed that CiC1ql2 significantly enhanced the expression levels of classic complement genes (C3, C5, and C7) and inflammatory cytokines (TNF-α, IL-1β, and IL-8), while knockdown of CiC1ql2 decreased the expression of these immune-related genes. Taken together, our results suggested that CiC1ql2 could act as a pathogenic pattern recognition receptor involved in complement activation and that this might be related to the intestinal defense of C. idella against bacterial infection.

分类号:

  • 相关文献

[1]Functional characterization of MEKK3 in the intestinal immune response to bacterial challenges in grass carp (Ctenopharyngodon idella). Qu, Fufa,Zeng, Xuan,Liu, Zhenzhen,Guo, Meixing,Zhang, Xia,Cao, Shenping,Zhou, Yonghua,He, Zhimin,Tang, Jianzhou,Mao, Zhuangwen,Yang, Yalin,Zhou, Zhigang,Liu, Zhen. 2022

[2]Fish decay-accelerating factor (DAF) regulates intestinal complement pathway and immune response to bacterial challenge. Xia Zhang,Yuhan Zhang,Ting Wu,Hao He,Ran Peng,Kelan Jin,Huilan Mo,Fufa Qu,Jianzhou Tang,Yonghua Zhou,Yalin Yang,Zhigang Zhou,Junde Fan,Jianzhong Li,Zhen Liu. 2024

[3]Efficacy and tolerance of yeast cell wall as an immunostimulant in the diet of Japanese seabass (Lateolabrax japonicus). Yu, H. H.,Han, F.,Xue, M.,Wang, J.,Zheng, Y. H.,Wu, X. F.,Xue, M.,Tacon, P.,Zhang, Y. J..

[4]Serum Exosomes From Newborn Piglets R.estrict Porcine Epidemic Diarrhea V irus Infection. Chen, JN,Jin, L,Yan, MM,Yang, Z,Wang, HW,Geng, SX,Gong, ZL,Liu, GL. 2019

[5]The antiviral efficacy of andrographolide against grass carp reovirus in vitro and in vivo. Mengmeng Li,Mingyang Xue,Yong Zhou,Wenzhi Liu,Yan Meng,Chen Xu,Yiqun Li,Nan Jiang,Yuding Fan. 2025

[6]The Generation of a H9N2 Avian Influenza Virus with HA and C3d-P29 Protein Fusions and Vaccine Development Applications. Xue Pan,Fan Zhou,Xiaona Shi,Qinfang Liu,Dawei Yan,Qiaoyang Teng,Chunxiu Yuan,Bangfeng Xu,Zhifei Zhang,Minghao Yan,Zejun Li. 2025

[7]Yellow mealworm (Tenebrio Molitor) enhances intestinal immunity in largemouth bass (Micropterus salmoides) via the NFκB/survivin signaling pathway. Chunyu Ge,Xiaofang Liang,Xiaoliang Wu,Jie Wang,Hao Wang,Yuchang Qin,Min Xue. 2023

[8]Influence of fermented feed additive on gut morphology, immune status, and microbiota in broilers. Peng, Wentong,Talpur, Mir Zulqarnain,Zeng, Yuxian,Xie, Peipei,Li, Jincheng,Wang, Songbo,Wang, Lina,Zhu, Xiaotong,Gao, Ping,Jiang, Qingyan,Shu, Gang,Zhang, Haijun. 2022

[9]Xylooligosaccharide-mediated gut microbiota enhances gut barrier and modulates gut immunity associated with alterations of biological processes in a pig model. Shanlong Tang,Yuxia Chen,Fuli Deng,Xiaowei Yan,Ruqing Zhong,Qingshi Meng,Lei Liu,Yong Zhao,Sheng Zhang,Liang Chen,Hongfu Zhang. 2022

[10]Tissue-resident, memory CD8(+) T cells are effective in clearing intestinal Eimeria falciformis reinfection in mice. Shi, Fangyun,Zhang, Sixin,Zhang, Ning,Yu, Ying,Sun, Pei,Tang, Xinming,Liu, Xianyong,Suo, Xun. 2023

[11]The ratios of dietary non-fibrous carbohydrate (NFC) to neutral detergent fiber (NDF) influence intestinal immunity of rabbits by regulating gut microbiota composition and metabolites. Li, Shuo,Liu, Tingting,Wang, Kun,Li, Chong,Wu, Fengyang,Yang, Xinyu,Zhao, Man,Chen, Baojiang,Chen, Xiang. 2023

作者其他论文 更多>>