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miR-143 inhibits intracellular salmonella growth by targeting ATP6V1A in macrophage cells in pig

机译:miR-143通过靶向猪中的巨噬细胞中的ATP6V1A来抑制细胞内沙门氏菌生长

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摘要

Salmonella infects many vertebrate species, and animals such as pigs can be colonized with Salmonella and become established carriers. Analyzing the roles of microRNA in intracellular proliferation is important for understanding the process of Salmonella infection. The objective of this study is to verify the regulation effect of miR-143 on ATP6V1A and its functions in the intracellular growth of Salmonella. A new miR-143 binding site was discovered in the 3' UTR of ATP6V1A using a newly developed prediction tool. The binding site was confirmed by binding site deletion assay. Real-time PCR results indicated that ATP6V1A was predominantly expressed in bone-marrow-derived macrophages, and the expression of miR-143 in different tissues was negatively correlated with ATP6V1A. The Salmonella proliferation assay showed that the expression of miR-143 could inhibit intracellular Salmonella growth in macrophages by target ATP6V1A. The results strongly suggest that miR-143 plays important regulatory roles in the development of Salmonella infection in animals.
机译:沙门氏菌感染了许多脊椎动物物种,猪等动物可以与沙门氏菌殖民,并成为建立的载体。分析MicroRNA在细胞内增殖中的作用对于了解沙门氏菌感染过程非常重要。本研究的目的是验证miR-143对ATP6V1A的调节效果及其在沙门氏菌细胞内生长中的功能。使用新开发的预测工具在ATP6V1A的3'UTR中发现了一种新的miR-143结合位点。通过结合位点缺失测定证实结合位点。实时PCR结果表明,ATP6V1A主要在骨髓衍生的巨噬细胞中表达,并且不同组织中miR-143的表达与ATP6V1A负相关。沙门氏菌的增殖测定表明miR-143的表达可以通过靶ATP6V1A抑制巨噬细胞的细胞内沙门氏菌生长。结果强烈建议,MIR-143在动物沙门氏菌感染的发展中起着重要的监管作用。

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