Deterioration of mitochondrial biogenesis and degradation in the endometrium is a cause of subfertility in cows

IF 2.7 3区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY Molecular Reproduction and Development Pub Date : 2023-01-16 DOI:10.1002/mrd.23670
Shuichi Matsuyama, Sho Nakamura, Shiori Minabe, Miki Sakatani, Naoki Takenouchi, Takuya Sasaki, Yuki Inoue, Hisataka Iwata, Koji Kimura
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引用次数: 1

Abstract

To investigate possible causes of reproductive failure, we conducted global endometrial gene expression analyses in fertile and subfertile cows. Ingenuity pathway analysis showed that RICTOR and SIRT3 are significant upstream regulators for highly expressed genes in fertile cows, and are predicted to be activated upstream regulators of normal mitochondrial respiration. Canonical pathway analysis revealed that these highly expressed genes are involved in the activation of mitochondrial oxidative phosphorylation. Therefore, in subfertile cows, the inactivation of RICTOR and SIRT3 may correlate with decreased capacity of mitochondrial respiration. Furthermore, the expression levels of most mitochondrial DNA genes and nuclear genes encoding mitochondrial proteins were higher in subfertile cows. The mitochondrial DNA copy number was significantly higher in the endometrium of subfertile cows, whereas the ATP content did not differ between fertile and subfertile cows. Quantitative reverse transcription-PCR analysis demonstrated that the expression of PGC1a, TFAM, MFN1, FIS1, and BCL2L13 were significantly lower in subfertile cows. In addition, transmission electron microscopy images showed mitochondrial swelling in the endometrial cells of the subfertile cow. These results suggest that poor-quality mitochondria accumulate in the endometrium owing to a reduced capacity for mitochondrial biogenesis, fusion, fission, and degradation in subfertile cows, and may contribute to infertility.

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线粒体生物发生的恶化和子宫内膜的退化是奶牛生育能力低下的原因之一
为了研究生殖失败的可能原因,我们对可育奶牛和欠育奶牛进行了全球子宫内膜基因表达分析。匠心途径分析表明,RICTOR和SIRT3是可育奶牛高表达基因的重要上游调控因子,并有望激活正常线粒体呼吸的上游调控因子。典型途径分析表明,这些高表达基因参与线粒体氧化磷酸化的激活。因此,在欠育奶牛中,RICTOR和SIRT3的失活可能与线粒体呼吸能力下降有关。此外,大多数线粒体DNA基因和编码线粒体蛋白的核基因的表达量在亚育奶牛中较高。可育奶牛子宫内膜线粒体DNA拷贝数显著高于可育奶牛,而ATP含量在可育奶牛和可育奶牛之间无显著差异。定量逆转录- pcr分析显示,PGC1a、TFAM、MFN1、FIS1和BCL2L13的表达量在亚育奶牛中显著降低。此外,透射电镜图像显示,子宫内膜细胞线粒体肿胀。这些结果表明,由于线粒体生物发生、融合、裂变和降解能力降低,低质量线粒体在子宫内膜中积累,可能导致不孕。
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来源期刊
CiteScore
5.20
自引率
0.00%
发文量
78
审稿时长
6-12 weeks
期刊介绍: Molecular Reproduction and Development takes an integrated, systems-biology approach to understand the dynamic continuum of cellular, reproductive, and developmental processes. This journal fosters dialogue among diverse disciplines through primary research communications and educational forums, with the philosophy that fundamental findings within the life sciences result from a convergence of disciplines. Increasingly, readers of the Journal need to be informed of diverse, yet integrated, topics impinging on their areas of interest. This requires an expansion in thinking towards non-traditional, interdisciplinary experimental design and data analysis.
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