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含有特异性结合EtCab蛋白的噬菌体肽的海藻酸钠水凝胶对柔嫩艾美耳球虫感染的抑制作用。

Impact of sodium alginate hydrogel containing bacteriophage peptides that specifically bind to the EtCab protein on the inhibition of Eimeria tenella infection.

作者信息

Chen Hang, Zhi Wenjing, Bai Bingrong, Anjum Faisal R, Jia Zhipeng, Kong Rui, Liu Qiuju, Wang Biao, Ma Chunli, Ma Dexing

机构信息

College of Veterinary Medicine, Northeast Agricultural University, Harbin, China.

Bristol Veterinary School, University of Bristol, Langford, Bristol, UK.

出版信息

Vet Res. 2025 Jan 21;56(1):18. doi: 10.1186/s13567-024-01425-4.

Abstract

Avian coccidiosis, caused by the protozoan Eimeria, leads to significant economic losses for the poultry industry. In this study, bacteriophages that specifically bind to the calcium-binding protein (EtCab) of Eimeria tenella were selected using a biopanning process with a pIII phage display library. The recombinant EtCab protein served as the ligand in this selection process. The binding ability of target phages to the EtCab protein or E. tenella sporozoites was evaluated. The role of peptides corresponding to target phages in inhibiting the invasion of E. tenella sporozoites into cells was analysed using flow cytometry. Subsequently, the phages were encapsulated in sodium alginate to protect them from degradation in gastric fluid, which has a low pH value. Chickens were orally administered both microencapsulated and non-microencapsulated phages, and the protective effects against E. tenella infection were assessed. The binding mechanism of these peptides to the EtCab protein was investigated through in silico analysis. The results indicated that three specific phages (Y, G, and V) could bind effectively to recombinant EtCab protein as well as to sporozoite proteins. All three peptides, particularly Y and G, demonstrated significant inhibition of sporozoite invasion into cells in vitro. Additionally, oral administration of the encapsulated phages Y and G provided a higher level of protection against Eimeria infection compared to encapsulated phage V and the unencapsulated phages. Molecular docking studies revealed that three peptides, particularly Y and G, efficiently bind to the EtCab protein through hydrogen bonds. This study provides a reference for developing small molecular drugs targeting coccidiosis.

摘要

由原生动物艾美耳球虫引起的禽球虫病给家禽业造成了重大经济损失。在本研究中,使用带有pIII噬菌体展示文库的生物淘选过程,筛选出了能特异性结合柔嫩艾美耳球虫钙结合蛋白(EtCab)的噬菌体。重组EtCab蛋白在该筛选过程中用作配体。评估了靶噬菌体与EtCab蛋白或柔嫩艾美耳球虫子孢子的结合能力。使用流式细胞术分析了与靶噬菌体对应的肽在抑制柔嫩艾美耳球虫子孢子侵入细胞中的作用。随后,将噬菌体包裹在海藻酸钠中,以保护它们在低pH值的胃液中不被降解。给鸡口服微囊化和未微囊化的噬菌体,并评估其对柔嫩艾美耳球虫感染的保护作用。通过计算机分析研究了这些肽与EtCab蛋白的结合机制。结果表明,三种特异性噬菌体(Y、G和V)能有效结合重组EtCab蛋白以及子孢子蛋白。所有三种肽,尤其是Y和G,在体外对球虫子孢子侵入细胞均表现出显著抑制作用。此外,与微囊化噬菌体V和未微囊化噬菌体相比,口服微囊化噬菌体Y和G对艾美耳球虫感染提供了更高水平的保护。分子对接研究表明,三种肽,尤其是Y和G,通过氢键有效地与EtCab蛋白结合。本研究为开发针对球虫病的小分子药物提供了参考。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/44e2/11752993/52c1ba6ecc4e/13567_2024_1425_Fig1_HTML.jpg

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