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抑制素缺陷型小鼠颗粒细胞基因表达对抑制素分子产生的分子基因组学研究。

Molecular Genomic Study of Inhibin Molecule Production through Granulosa Cell Gene Expression in Inhibin-Deficient Mice.

机构信息

National Center for International Research on Animal Genetics, Breeding and Reproduction (NCIRAGBR), Huazhong Agricultural University, Ministry of Science and Technology of the People's Republic of China, Wuhan 430070, China.

Department of Animal Breeding and Genetics, Sindh Agriculture University, Tandojam 70060, Sindh, Pakistan.

出版信息

Molecules. 2022 Aug 30;27(17):5595. doi: 10.3390/molecules27175595.

Abstract

Inhibin is a molecule that belongs to peptide hormones and is excreted through pituitary gonadotropins stimulation action on the granulosa cells of the ovaries. However, the differential regulation of inhibin and follicle-stimulating hormone (FSH) on granulosa cell tumor growth in mice inhibin-deficient females is not yet well understood. The objective of this study was to evaluate the role of inhibin and FSH on the granulosa cells of ovarian follicles at the premature antral stage. This study stimulated immature wild-type (WT) and Inhibin-α knockout (Inha-/-) female mice with human chorionic gonadotropin (hCG) and examined hCG-induced gene expression changes in granulosa cells. Also, screening of differentially expressed genes (DEGs) was performed in the two groups under study. In addition, related modules to external traits and key gene drivers were determined through Weighted Gene Co-Expression Network Analysis (WGCNA) algorithm. The results identified a number of 1074 and 931 DEGs and 343 overlapping DEGs (ODEGs) were shared in the two groups. Some 341 ODEGs had high relevance and consistent expression direction, with a significant correlation coefficient (r = 0.9145). Additionally, the gene co-expression network of selected 153 genes showed 122 nodes enriched to 21 GO biological processes (BP) and reproduction and 3 genes related to genomic pathways. By using principal component analysis (PCA), the 14 genes in the regulatory network were fixed and the cumulative proportion of fitted top three principal components was 94.64%. In conclusion, this study revealed the novelty of using ODEGs for investigating the inhibin and FSH hormone pathways that might open the way toward gene therapy for granulosa cell tumors. Also, these genes could be used as biomarkers for tracking the changes in inhibin and FSH hormone from the changes in the nutrition pattern.

摘要

抑制素是一种属于肽类激素的分子,通过垂体促性腺激素对卵巢颗粒细胞的刺激作用而分泌。然而,在抑制素缺陷的雌性小鼠中,抑制素和卵泡刺激素(FSH)对颗粒细胞肿瘤生长的差异调节尚不清楚。本研究旨在评估抑制素和 FSH 在早期窦前卵泡阶段对卵巢卵泡颗粒细胞的作用。本研究用人绒毛膜促性腺激素(hCG)刺激未成熟的野生型(WT)和抑制素-α 敲除(Inha-/-)雌性小鼠,并检查 hCG 诱导的两组颗粒细胞基因表达变化。此外,对两组进行差异表达基因(DEGs)筛选。此外,通过加权基因共表达网络分析(WGCNA)算法确定与外部性状和关键基因驱动因素相关的模块。结果在两组中分别鉴定出 1074 个和 931 个 DEGs 和 343 个重叠 DEGs(ODEGs)。一些 341 个 ODEGs 具有高相关性和一致的表达方向,相关系数(r=0.9145)显著。此外,选定的 153 个基因的基因共表达网络显示 122 个节点富集到 21 个 GO 生物过程(BP)和生殖以及 3 个与基因组途径相关的基因。通过主成分分析(PCA),选择的 14 个基因的调控网络固定,拟合前三个主成分的累积比例为 94.64%。总之,本研究通过使用 ODEGs 研究抑制素和 FSH 激素途径,揭示了其新颖性,这可能为颗粒细胞肿瘤的基因治疗开辟道路。此外,这些基因可以作为生物标志物,用于跟踪抑制素和 FSH 激素从营养模式变化的变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3cb3/9458043/04866bce6e82/molecules-27-05595-g001.jpg

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