双酚A对精原干细胞转录组的影响

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
J. Ahn, Jong-Hyun Won, Do-Young Kim, Sang-Eun Jung, Bang-Jin Kim, Jun-Mo Kim, Buom-Yong Ryu
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引用次数: 5

摘要

精原干细胞具有自我更新和分化的能力,是通过精子发生维持雄性生殖能力和物种保存的关键。随着接触增塑剂的增加,内分泌干扰化学物质对雌激素受体(如双酚A)产生模拟作用的风险也增加了。这引起了人们对保持男性生育能力的担忧。BPA损害精子发生和SSC的维持;然而,人们对BPA在SSCs中引起的转录组差异知之甚少。因此,本研究旨在通过RNA测序(RNA-Seq)分析来研究暴露于BPA的SSC的转录组差异。我们发现SSC暴露于BPA会抑制细胞增殖和存活。因此,我们通过RNA-Seq、功能注释和基因集富集分析来研究转录组的差异。我们的结果显示,与溶酶体酸化的两个基因和糖胺聚糖降解的五个基因相关的术语重复且丰富。此外,我们通过检测mRNA和蛋白质的表达水平来验证转录组分析。这些发现证实了差异表达基因(DEGs)的发现以及暴露于BPA后SSCs的机制。总之,我们希望所确定的DEG和溶酶体机制可以为保存男性生育能力和相关研究提供新的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Transcriptome alterations in spermatogonial stem cells exposed to bisphenol A
ABSTRACT Owing to their self-renewal and differentiation abilities, spermatogonial stem cells (SSCs) are essential for maintaining male fertility and species preservation through spermatogenesis. With an increase in exposure to plasticizers, the risk of endocrine-disrupting chemicals exerting mimetic effects on estrogen receptors, such as bisphenol A (BPA), has also increased. This has led to concerns regarding the preservation of male fertility. BPA impairs spermatogenesis and the maintenance of SSCs; however, the transcriptome differences caused by BPA in SSCs are poorly understood. Thus, this study aimed to investigate the transcriptome differences in SSCs exposed to BPA, using RNA sequencing (RNA-Seq) analysis. We found that cell proliferation and survival were suppressed by SSC exposure to BPA. Therefore, we investigated transcriptome differences through RNA-Seq, functional annotation, and gene set enrichment analysis. Our results showed repetitive and abundant terms related to two genes of lysosomal acidification and five genes of glycosaminoglycan degradation. Furthermore, we validated the transcriptome analyses by detecting mRNA and protein expression levels. The findings confirmed the discovery of differentially expressed genes (DEGs) and the mechanism of SSCs following exposure to BPA. Taken together, we expect that the identified DEGs and lysosomal mechanisms could provide new insights into the preservation of male fertility and related research.
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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