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旋毛虫寄生虫(刺胞动物门,粘体动物)丝氨酸蛋白酶抑制剂:表达谱分析和功能预测。

Serine protease inhibitors of the whirling disease parasite Myxobolus cerebralis (Cnidaria, Myxozoa): Expression profiling and functional predictions.

机构信息

Institute for Veterinary Medical Research, Centre for Agricultural Research, Budapest, Hungary.

Veterinary Diagnostic Directorate, National Food Chain Safety Office, Budapest, Hungary.

出版信息

PLoS One. 2021 Mar 29;16(3):e0249266. doi: 10.1371/journal.pone.0249266. eCollection 2021.

Abstract

Here, we studied the expression pattern and putative function of four, previously identified serine protease inhibitors (serpins) of Myxobolus cerebralis, a pathogenic myxozoan species (Cnidaria: Myxozoa) causing whirling disease of salmonid fishes. The relative expression profiles of serpins were determined at different developmental stages both in fish and in annelid hosts using serpin-specific qPCR assays. The expression of serpin Mc-S1 was similar throughout the life cycle, whereas a significant decrease was detected in the relative expression of Mc-S3 and Mc-S5 during the development in fish, and then in the sporogonic stage in the worm host. A decreasing tendency could also be observed in the expression of Mc-S4 in fish, which was, however, upregulated in the worm host. For the first time, we predicted the function of M. cerebralis serpins by the use of several bioinformatics-based applications. Mc-S1 is putatively a chymotrypsin-like inhibitor that locates extracellularly and is capable of heparin binding. The other three serpins are caspase-like inhibitors, and they are probably involved in protease and cell degradation processes during the early stage of fish invasion.

摘要

在这里,我们研究了导致鲑鱼旋转病的致病性粘孢子虫(Myxobolus cerebralis)的四个先前鉴定的丝氨酸蛋白酶抑制剂(serpins)的表达模式和推测功能。使用 serpin 特异性 qPCR 检测,在鱼类和环节动物宿主的不同发育阶段确定了 serpins 的相对表达谱。在整个生命周期中,Mc-S1 的表达相似,而在鱼类发育过程中,Mc-S3 和 Mc-S5 的相对表达显著下降,然后在蠕虫宿主的孢子形成阶段进一步下降。在鱼类中,Mc-S4 的表达也呈现下降趋势,但在蠕虫宿主中则上调。我们首次通过几种基于生物信息学的应用程序预测了 M. cerebralis serpins 的功能。Mc-S1 可能是一种胰凝乳蛋白酶样抑制剂,位于细胞外,能够与肝素结合。另外三个 serpins 是半胱氨酸蛋白酶样抑制剂,它们可能参与鱼类入侵早期的蛋白酶和细胞降解过程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2f6c/8007001/b3d61fa5c198/pone.0249266.g001.jpg

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