CircMYH9/miR-133a-3p/CXCR4轴:精子受精和胚胎发育的新调控网络

IF 6.3 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Qian Sun, Yanyu Li, Wen Yang, Wen Feng, Jiayun Zhou, Yijuan Cao, Bei Zhang, Zuobin Zhu, Conghui Han
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引用次数: 0

摘要

本研究旨在探讨体外受精(IVF)中精子mirna对受精率(FR)的影响,并探讨精子介导的受精和胚胎发育的潜在调控机制。通过高通量测序,我们鉴定了精子中差异表达的miRNAs, miR-133a-3p在低FR和有效胚胎率(AER)相关的样本中显著上调。通过Starbase数据库进一步鉴定关键的调控环状RNA和mrna,与差异表达RNA交叉,并通过GO、KEGG和PPI分析进行分析。circMYH9/miR-133a-3p/CXCR4轴是一个关键的调控网络。GC-2 spd小鼠生精细胞系的体外实验显示,miR-133a-3p抑制细胞生长和增殖,同时促进细胞凋亡。circMYH9作为miR-133a-3p的竞争内源性RNA (ceRNA),通过miR-133a-3p/CXCR4轴调节CXCR4表达,促进GC-2 spd细胞生长并抑制凋亡。使用小鼠模型的体内实验证实,circMYH9过表达通过该轴增加IVF成功率并促进胚胎发育。在机制上,miR-133a-3p通过靶向circMYH9/miR-133a-3p/CXCR4轴抑制精子受精和胚胎发育。这些发现表明,该调控网络可以作为临床评估受精潜力和胚胎质量的新生物标志物,并作为改善IVF结果和解决不孕症的潜在治疗靶点。这项研究为精子功能和早期胚胎发育的分子机制提供了有价值的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
CircMYH9/miR-133a-3p/CXCR4 axis: a novel regulatory network in sperm fertilization and embryo development.

This study aimed to investigate the influence of sperm miRNAs on fertilization rates (FR) in in vitro fertilization (IVF) and to explore potential regulatory mechanisms in sperm-mediated fertilization and embryo development. Through high-throughput sequencing, we identified differentially expressed miRNAs in sperm, with miR-133a-3p significantly upregulated in samples associated with low FR and available embryo rate (AER). Key regulatory circRNAs and mRNAs were further identified via the Starbase database, intersected with differentially expressed RNA, and analyzed through GO, KEGG, and PPI analyses. The circMYH9/miR-133a-3p/CXCR4 axis emerged as a critical regulatory network. In vitro assays using the GC-2 spd mouse spermatogenic cell line revealed that miR-133a-3p inhibited cell growth and proliferation while promoting apoptosis. circMYH9, acting as a competing endogenous RNA (ceRNA) for miR-133a-3p, modulated CXCR4 expression, enhancing GC-2 spd cell growth and inhibiting apoptosis through the miR-133a-3p/CXCR4 axis. In vivo experiments using a mouse model confirmed that circMYH9 overexpression increased IVF success rates and promoted embryo development via this axis. Mechanistically, miR-133a-3p suppresses sperm fertilization and embryo development by targeting the circMYH9/miR-133a-3p/CXCR4 axis. These findings suggest that this regulatory network could serve as a novel biomarker for assessing fertilization potential and embryo quality in clinical settings and as a potential therapeutic target to improve IVF outcomes and address infertility. This study provides valuable insights into the molecular mechanisms governing sperm function and early embryonic development.

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CiteScore
6.30
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