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罗非鱼囊包增殖寄生虫的囊组织具有角质化结构和免疫屏障功能。

The Tilapia Cyst Tissue Enclosing the Proliferating Parasite Exhibits Cornified Structure and Immune Barrier Function.

机构信息

Marine Biology Department, The Leon H. Charney School of Marine Sciences, University of Haifa, Mt. Carmel, Haifa 3103301, Israel.

Central Fish Health Laboratory, Department of Fisheries and Aquaculture, Ministry of Agriculture and Rural Development, Nir David 1080300, Israel.

出版信息

Int J Mol Sci. 2024 May 23;25(11):5683. doi: 10.3390/ijms25115683.

Abstract

Myxozoa, a unique group of obligate endoparasites within the phylum Cnidaria, can cause emerging diseases in wild and cultured fish populations. Recently, the myxozoan has been identified as a prevalent pathogen infecting the gills of cultured hybrid tilapia, leading to systemic immune suppression and considerable mortality. Here, we employed a proteomic approach to examine the impact of infection on fish gills, focusing on the structure of the granulomata, or cyst, formed around the proliferating parasite to prevent its spread to surrounding tissue. Enrichment analysis showed increased immune response and oxidative stress in infected gill tissue, most markedly in the cyst's wall. The intense immune reaction included a consortium of endopeptidase inhibitors, potentially combating the myxozoan arsenal of secreted proteases. Analysis of the cyst's proteome and histology staining indicated that keratin intermediate filaments contribute to its structural rigidity. Moreover, we uncovered skin-specific proteins, including a grainyhead-like transcription factor and a teleost-specific S100 calcium-binding protein that may play a role in epithelial morphogenesis and cysts formation. These findings deepen our understanding of the proteomic elements that grant the cyst its distinctive nature at the critical interface between the fish host and myxozoan parasite.

摘要

粘孢子虫,一种专性内寄生在刺胞动物门中的独特寄生虫群,能够引起野生和养殖鱼类群体中的新兴疾病。最近,粘孢子虫已被确定为一种普遍存在的病原体,感染养殖杂交罗非鱼的鳃,导致全身免疫抑制和相当高的死亡率。在这里,我们采用蛋白质组学方法研究了感染对鱼类鳃的影响,重点关注围绕增殖寄生虫形成的肉芽肿或囊,以防止其扩散到周围组织。富集分析显示,感染的鳃组织中免疫反应和氧化应激增强,在囊的壁中最为明显。强烈的免疫反应包括一组内肽酶抑制剂,可能对抗粘孢子虫分泌的蛋白酶。对囊的蛋白质组和组织学染色分析表明,角蛋白中间丝有助于其结构刚性。此外,我们还发现了皮肤特异性蛋白,包括一个颗粒头样转录因子和一个硬骨鱼特异性 S100 钙结合蛋白,它们可能在上皮形态发生和囊形成中发挥作用。这些发现加深了我们对赋予囊在鱼类宿主和粘孢子虫寄生虫之间关键界面上独特性质的蛋白质组学元素的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8560/11171596/2fb0a48181e6/ijms-25-05683-g001.jpg

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