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miRNAs 在小鼠卵丘细胞葡萄糖代谢中的作用†。

Role of miRNAs in glucose metabolism of mouse cumulus cells†.

机构信息

College of Animal Science and Veterinary Medicine, Shandong Agricultural University, Tai'an City 271018, P. R. China.

出版信息

Biol Reprod. 2024 May 9;110(5):895-907. doi: 10.1093/biolre/ioae013.

Abstract

It is known that the oocyte has a limited capacity to acquire and metabolize glucose, and it must rely on cumulus cells (CCs) to take up glucose and produce pyruvate for use to produce ATP through oxidative phosphorylation. We therefore propose that miRNAs might regulate glucose metabolism (GM) in CCs and might be used as markers for oocyte quality assessment. Here, mouse CC models with impaired glycolysis or pentose phosphate pathway (PPP) were established, and miRNAs targeting the key enzymes in glycolysis/PPP were predicted using the miRNA target prediction databases. Expression of the predicted miRNAs was compared between CCs with normal and impaired glycolysis/PPP to identify candidate miRNAs. Function of the candidate miRNAs was validated by transfecting CCs or cumulus-oocyte-complexes (COCs) with miRNA inhibitors and observing effects on glucose metabolites of CCs and on competence of oocytes. The results validated that miR-23b-3p, let-7b-5p, 34b-5p and 145a-5p inhibited glycolysis, and miR-24-3p, 3078-3p,183-5p and 7001-5p inhibited PPP of CCs. Our observation using a more physiologically relevant model (intact cultured COCs) further validated the four glycolysis-targeting miRNAs we identified. Furthermore, miR-let-7b-5p, 34b-5p and 145a-5p may also inhibit PPP, as they decreased the production of glucose-6-phosphate. In conclusion, miRNAs play critical roles in GM of CCs and may be used as markers for oocyte quality assessment. Summary sentence:  We identified and validated eight new miRNAs that inhibit glycolysis and/or pentose phosphate pathways in cumulus cells (CCs) suggesting that miRNAs play critical roles in glucose metabolism of CCs and may be used for oocyte quality markers.

摘要

已知卵母细胞获取和代谢葡萄糖的能力有限,必须依靠卵丘细胞 (CC) 摄取葡萄糖并产生丙酮酸,通过氧化磷酸化产生 ATP。因此,我们提出 miRNA 可能调节 CC 中的葡萄糖代谢 (GM),并可能用作卵母细胞质量评估的标志物。在这里,建立了糖酵解或磷酸戊糖途径 (PPP) 受损的小鼠 CC 模型,并使用 miRNA 靶标预测数据库预测了靶向糖酵解/PPP 关键酶的 miRNA。比较了正常和糖酵解/PPP 受损的 CC 中预测 miRNA 的表达,以鉴定候选 miRNA。通过用 miRNA 抑制剂转染 CC 或卵丘-卵母细胞复合物 (COC),并观察对 CC 葡萄糖代谢物和卵母细胞能力的影响,验证候选 miRNA 的功能。验证结果表明,miR-23b-3p、let-7b-5p、34b-5p 和 145a-5p 抑制糖酵解,miR-24-3p、3078-3p、183-5p 和 7001-5p 抑制 CC 的 PPP。我们使用更具生理相关性的模型(完整培养的 COC)进行的观察进一步验证了我们鉴定的四种糖酵解靶向 miRNA。此外,miR-let-7b-5p、34b-5p 和 145a-5p 也可能抑制 PPP,因为它们减少了葡萄糖-6-磷酸的产生。总之,miRNA 在 CC 的 GM 中发挥关键作用,可作为卵母细胞质量评估的标志物。总结句:我们鉴定并验证了 8 种新的 miRNA,它们可抑制卵丘细胞 (CC) 中的糖酵解和/或磷酸戊糖途径,这表明 miRNA 在 CC 的葡萄糖代谢中发挥关键作用,可用于卵母细胞质量标志物。

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