Department of Orthopedics, Augusta University, Augusta, GA, United States of America.
Department of Cell biology and Anatomy, Augusta University, Augusta, GA, United States of America.
Exp Gerontol. 2020 Feb;130:110800. doi: 10.1016/j.exger.2019.110800. Epub 2019 Nov 30.
Kynurenine, a metabolite of tryptophan breakdown, has been shown to increase with age, and plays a vital role in a number of age-related pathophysiological changes, including bone loss. Accumulation of kynurenine in bone marrow stromal cells (BMSCs) has been associated with a decrease in cell proliferation and differentiation, though the exact mechanism by which kynurenine mediates these changes is poorly understood. MiRNAs have been shown to regulate BMSC function, and accumulation of kynurenine may alter the miRNA expression profile of BMSCs. The aim of this study was to identify differentially expressed miRNAs in human BMSCs in response to treatment with kynurenine, and correlate miRNAs function in BMSCs biology through bioinformatics analysis. Human BMSCs were cultured and treated with and without kynurenine, and subsequent miRNA isolation was performed. MiRNA array was performed to identify differentially expressed miRNA. Microarray analysis identified 50 up-regulated, and 36 down-regulated miRNAs in kynurenine-treated BMSC cultures. Differentially expressed miRNA included miR-1281, miR-330-3p, let-7f-5p, and miR-493-5p, which are important for BMSC proliferation and differentiation. KEGG analysis found up-regulated miRNA targeting glutathione metabolism, a pathway critical for removing oxidative species. Our data support that the kynurenine dependent degenerative effect is partially due to changes in the miRNA profile of BMSCs.
犬尿氨酸是色氨酸分解的代谢产物,其水平随着年龄的增长而增加,在许多与年龄相关的病理生理变化中发挥着重要作用,包括骨丢失。犬尿氨酸在骨髓基质细胞(BMSCs)中的积累与细胞增殖和分化减少有关,尽管犬尿氨酸介导这些变化的确切机制尚不清楚。miRNA 已被证明可以调节 BMSC 功能,而犬尿氨酸的积累可能会改变 BMSCs 的 miRNA 表达谱。本研究旨在鉴定人 BMSCs 对犬尿氨酸治疗的反应中差异表达的 miRNA,并通过生物信息学分析关联 miRNA 在 BMSCs 生物学中的功能。培养人 BMSCs 并分别用和不用犬尿氨酸处理,随后进行 miRNA 分离。进行 miRNA 微阵列分析以鉴定差异表达的 miRNA。微阵列分析鉴定出犬尿氨酸处理的 BMSC 培养物中有 50 个上调和 36 个下调的 miRNA。差异表达的 miRNA 包括 miR-1281、miR-330-3p、let-7f-5p 和 miR-493-5p,它们对 BMSC 增殖和分化很重要。KEGG 分析发现上调的 miRNA 靶向谷胱甘肽代谢,这是一种清除氧化物质的关键途径。我们的数据支持犬尿氨酸依赖性退行性效应部分归因于 BMSCs 的 miRNA 谱的变化。