(221) 雄性小鼠生殖系统衰老过程的解剖转录组图谱

Y. Huang, X. Li, J. Yao, W. Liu, M. Lu, Y. Xie
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引用次数: 0

摘要

老年男性的生育能力和睾丸内分泌功能退化,危及生殖健康和福祉。然而,生殖衰老的机制尚不清楚。 本研究旨在研究成年(3 个月)和老龄(21 个月)小鼠雄性生殖道七个区域的表型和转录组:睾丸、传出导管、初段、冠状沟、附睾和尾部以及输精管。 对小鼠、人类组织和精液样本中的基因表达进行了定量 PCR、免疫组织化学、免疫荧光染色和酶联免疫吸附试验分析。老龄雄性小鼠出现了系统性和生殖方面的变化,在睾丸和附睾近端发现了明显的组织学变化。研究人员绘制了雄性生殖道转录组图谱,并在小鼠和/或人类组织中鉴定和验证了一系列区域特异性基因,包括原胺1(Prm2)、ADAM金属肽酶结构域28(Adam28)、核糖核酸酶A家族成员13(Rnase13)、WAP四二硫化物核心结构域13(Wfdc13)和Wfdc9。同时,研究人员还描述了男性生殖道不同区域与年龄相关的转录组变化。 值得注意的是,免疫反应的增加在功能上与男性生殖系统的衰老有关,尤其是T细胞的活化。一种免疫反应相关因子--磷脂酶 A2 组 IID(Pla2g2d)被确定为小鼠生殖衰老的潜在生物标志物。而人类精浆中的 PLA2G2D 水平在大约 35 岁时激增。此外,我们还强调了蛋白酪氨酸磷酸酶受体 C 型(Ptprc)、淋巴细胞蛋白酪氨酸激酶(Lck)、微管相关蛋白 tau(Mapt)和干扰素诱导的具有四重肽重复序列的蛋白 3(Ifit3)分别是影响附睾初段、顶端、顶端和尾部衰老的关键分子。 这项研究为小鼠衰老过程中的雄性生殖系统提供了RNA-seq资源,有望提高我们对雄性生殖系统衰老和不育的认识。 不
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(221) Anatomical Transcriptome Atlas of the Male Mouse Reproductive System During Aging
The elderly males undergo degenerative fertility and testicular endocrine function that jeopardize the reproductive health and well-being. However, the mechanisms underlying reproductive aging are unclear. This study aims to investigate the phenotypes and transcriptomes of seven regions of the male mouse reproductive tract: the testis, efferent ductules, initial segment, caput, corpus and cauda epididymidis, and vas deferens, in adult (3 months) and aged (21 months) mice. Quantitative PCR, immunohistochemistry, immunofluorescent staining, and enzyme-linked immunosorbent assay were performed for the analysis of gene expression in mice, human tissues, and semen samples. Aged male mice showed both systematic and reproductive changes, and remarkable histological changes were detected in the testis and proximal epididymis. Transcriptomes of the male reproductive tract were mapped, and a series of region-specific genes were identified and validated in mouse and/or human tissues, including Protamine 1 (Prm2), ADAM metallopeptidase domain 28 (Adam28), Ribonuclease A family member 13 (Rnase13), WAP four-disulfide core domain 13 (Wfdc13), and Wfdc9. Meanwhile, age-related transcriptome changes of different regions of the male reproductive tract were characterized. Notably, increased immune response was functionally related to the male reproductive aging, especially the T cell activation. An immune response-associated factor, phospholipase A2 group IID (Pla2g2d), was identified as a potential biomarker for reproductive aging in mice. And the PLA2G2D level in human seminal plasma surged at approximately 35 years of age. Furthermore, we highlighted Protein tyrosine phosphatase receptor type C (Ptprc), Lymphocyte protein tyrosine kinase (Lck), Microtubule associated protein tau (Mapt), and Interferon induced protein with tetratricopeptide repeats 3 (Ifit3) as critical molecules in the aging of initial segment, caput, caput, and cauda epididymidis, respectively. This study provides an RNA-seq resource for the male reproductive system during aging in mice, and is expected to improve our understanding of male reproductive aging and infertility. No.
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