Graduate School of Peking Union Medical College, Peking Union Medical College, Chinese Academy of Medical Sciences, Beijing 100730, China.
National Health Commission Key Laboratory of Male Reproductive Health, National Research Institute for Family Planning, Beijing 100081, China.
Asian J Androl. 2023 Nov 1;25(6):737-744. doi: 10.4103/aja20238. Epub 2023 Apr 28.
MicroRNAs (miRNAs) are mediators of the aging process. The purpose of this work was to analyze the miRNA expression profiles of spermatozoa from men of different ages with normal fertility. Twenty-seven donors were divided into three groups by age (Group A, n = 8, age: 20-30 years; Group B, n = 10, age: 31-40 years; and Group C, n = 9, age: 41-55 years) for high-throughput sequencing analysis. Samples from 65 individuals (22, 22, and 21 in Groups A, B, and C, respectively) were used for validation by quantitative real-time polymerase chain reaction (qRT-PCR). A total of 2160 miRNAs were detected: 1223 were known, 937 were newly discovered and unnamed, of which 191 were expressed in all donors. A total of 7, 5, and 17 differentially expressed microRNAs (DEMs) were found in Group A vs B, Group B vs C, and Group A vs C comparisons, respectively. Twenty-two miRNAs were statistically correlated with age. Twelve miRNAs were identified as age-associated miRNAs, including hsa-miR-127-3p, mmu-miR-5100_L+2R-1, efu-miR-9226_L-2_1ss22GA, cgr-miR-1260_L+1, hsa-miR-652-3p_R+1, pal-miR-9993a-3p_L+2R-1, hsa-miR-7977_1ss6AG, hsa-miR-106b-3p_R-1, hsa-miR-186-5p, PC-3p-59611_111, hsa-miR-93-3p_R+1, and aeca-mir-8986a-p5_1ss1GA. There were 9165 target genes of age-associated miRNAs. Gene Ontology (GO) analysis of the target genes identified revealed enrichment of protein binding, membrane, cell cycle, and so on. The Kyoto Encyclopedia of Genes and Genomes (KEGG) enrichment analysis of age-related miRNAs for target genes revealed 139 enriched pathways, such as signaling pathways regulating stem cell pluripotency, metabolic pathways, and the Hippo signaling pathway. This suggests that miRNAs play a key role in male fertility changes with increasing age and provides new evidence for the study of the mechanism of age-related male fertility decline.
微小 RNA(miRNAs)是衰老过程的调节剂。本研究旨在分析具有正常生育力的不同年龄男性精子的 miRNA 表达谱。将 27 名供体按年龄分为三组(A 组,n = 8,年龄:20-30 岁;B 组,n = 10,年龄:31-40 岁;C 组,n = 9,年龄:41-55 岁)进行高通量测序分析。通过定量实时聚合酶链反应(qRT-PCR)对 65 名个体(A、B 和 C 组分别为 22、22 和 21 名)的样本进行验证。共检测到 2160 个 miRNA:1223 个已知,937 个为新发现且未命名,其中 191 个在所有供体中表达。在 A 组与 B 组、B 组与 C 组、A 组与 C 组比较中,分别发现 7、5 和 17 个差异表达 miRNA(DEMs)。22 个 miRNA 与年龄呈统计学相关。鉴定出 12 个与年龄相关的 miRNA,包括 hsa-miR-127-3p、mmu-miR-5100_L+2R-1、efu-miR-9226_L-2_1ss22GA、cgr-miR-1260_L+1、hsa-miR-652-3p_R+1、pal-miR-9993a-3p_L+2R-1、hsa-miR-7977_1ss6AG、hsa-miR-106b-3p_R-1、hsa-miR-186-5p、PC-3p-59611_111、hsa-miR-93-3p_R+1 和 aeca-mir-8986a-p5_1ss1GA。与年龄相关的 miRNA 的靶基因有 9165 个。对靶基因进行基因本体论(GO)分析,发现其富含蛋白质结合、膜、细胞周期等。对年龄相关 miRNA 的靶基因进行京都基因与基因组百科全书(KEGG)富集分析,发现 139 个富集通路,如调节干细胞多能性的信号通路、代谢通路和 Hippo 信号通路。这表明 miRNA 在男性生育力随年龄增长而变化中发挥关键作用,为研究年龄相关男性生育力下降的机制提供了新的证据。