Coordinated alteration of mRNA-microRNA transcriptomes associated with exosomes and fatty acid metabolism in adipose tissue and skeletal muscle in grazing cattle.

IF 2.2 2区 农林科学 Asian-Australasian Journal of Animal Sciences Pub Date : 2020-11-01 Epub Date: 2019-12-24 DOI:10.5713/ajas.19.0682
Susumu Muroya, Hideki Ogasawara, Kana Nohara, Mika Oe, Koichi Ojima, Masayuki Hojito
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引用次数: 10

Abstract

Objective: On the hypothesis that grazing of cattle prompts organs to secrete or internalize circulating microRNAs (c-miRNAs) in parallel with changes in energy metabolism, we aimed to clarify biological events in adipose, skeletal muscle, and liver tissues in grazing Japanese Shorthorn (JSH) steers by a transcriptomic approach.

Methods: The subcutaneous fat (SCF), biceps femoris muscle (BFM), and liver in JSH steers after three months of grazing or housing were analyzed using microarray and quantitative polymerase chain reaction (qPCR), followed by gene ontology (GO) and functional annotation analyses.

Results: The results of transcriptomics indicated that SCF was highly responsive to grazing compared to BFM and liver tissues. The 'Exosome', 'Carbohydrate metabolism' and 'Lipid metabolism' were extracted as the relevant GO terms in SCF and BFM, and/or liver from the >1.5-fold-altered mRNAs in grazing steers. The qPCR analyses showed a trend of upregulated gene expression related to exosome secretion and internalization (charged multivesicular body protein 4A, vacuolar protein sorting-associated protein 4B, vesicle associated membrane protein 7, caveolin 1) in the BFM and SCF, as well as upregulation of lipolysisassociated mRNAs (carnitine palmitoyltransferase 1A, hormone-sensitive lipase, perilipin 1, adipose triglyceride lipase, fatty acid binding protein 4) and most of the microRNAs (miRNAs) in SCF. Moreover, gene expression related to fatty acid uptake and inter-organ signaling (solute carrier family 27 member 4 and angiopoietin-like 4) was upregulated in BFM, suggesting activation of SCF-BFM organ crosstalk for energy metabolism. Meanwhile, expression of plasma exosomal miR-16a, miR-19b, miR-21-5p, and miR-142-5p was reduced. According to bioinformatic analyses, the c-miRNA target genes are associated with the terms 'Endosome', 'Caveola', 'Endocytosis', 'Carbohydrate metabolism', and with pathways related to environmental information processing and the endocrine system.

Conclusion: Exosome and fatty acid metabolism-related gene expression was altered in SCF of grazing cattle, which could be regulated by miRNA such as miR-142-5p. These changes occurred coordinately in both the SCF and BFM, suggesting involvement of exosome in the SCF-BFM organ crosstalk to modulate energy metabolism.

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放牧牛脂肪组织和骨骼肌中与外泌体和脂肪酸代谢相关的mRNA-microRNA转录组的协同改变
目的:假设放牧牛促使器官在能量代谢变化的同时分泌或内化循环microRNAs (c-miRNAs),我们旨在通过转录组学方法阐明放牧日本短刺牛(JSH)脂肪、骨骼肌和肝脏组织中的生物学事件。方法:采用微阵列和定量聚合酶链反应(qPCR)对放牧或圈养3个月后的JSH牛皮下脂肪(SCF)、股二头肌(BFM)和肝脏进行分析,然后进行基因本体(GO)和功能注释分析。结果:转录组学结果表明,与BFM和肝组织相比,SCF对放牧有较高的反应。“外泌体”、“碳水化合物代谢”和“脂质代谢”作为相关的氧化石墨烯术语,从放牧牛的SCF、BFM和/或肝脏中提取了>1.5倍改变的mrna。qPCR分析显示,BFM和SCF中与外泌体分泌和内化相关的基因(带电多泡体蛋白4A、空泡蛋白分选相关蛋白4B、囊泡相关膜蛋白7、小泡蛋白1)表达上调,以及脂解相关mrna(肉碱棕榈酰基转移酶1A、激素敏感脂肪酶、perilipin 1、脂肪甘油三酯脂肪酶、脂肪酸结合蛋白4)和SCF中大部分的microRNAs (miRNAs)。此外,脂肪酸摄取和器官间信号(溶质载体家族27成员4和血管生成素样4)相关的基因表达在BFM中上调,表明SCF-BFM器官串扰激活了能量代谢。同时,血浆外泌体miR-16a、miR-19b、miR-21-5p和miR-142-5p的表达降低。根据生物信息学分析,c-miRNA靶基因与“内核体”、“腔体”、“内吞作用”、“碳水化合物代谢”相关,并与环境信息处理和内分泌系统相关的途径相关。结论:放牧牛SCF中外泌体和脂肪酸代谢相关基因的表达发生改变,这可能受miR-142-5p等miRNA的调控。这些变化同时发生在SCF和BFM中,表明外泌体参与了SCF-BFM器官串音以调节能量代谢。
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来源期刊
Asian-Australasian Journal of Animal Sciences
Asian-Australasian Journal of Animal Sciences AGRICULTURE, DAIRY & ANIMAL SCIENCE-
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审稿时长
3 months
期刊介绍: Asian-Australasian Journal of Animal Sciences (AJAS) aims to publish original and cutting-edge research results and reviews on animal-related aspects of the life sciences. Emphasis will be placed on studies involving farm animals such as cattle, buffaloes, sheep, goats, pigs, horses, and poultry. Studies for the improvement of human health using animal models may also be publishable. AJAS will encompass all areas of animal production and fundamental aspects of animal sciences: breeding and genetics, reproduction and physiology, nutrition, meat and milk science, biotechnology, behavior, welfare, health, and livestock farming systems.
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