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RNA测序揭示促卵泡激素糖型对培养的大鼠颗粒细胞转录组图谱的差异影响。

Differential effects of follicle-stimulating hormone glycoforms on the transcriptome profile of cultured rat granulosa cells as disclosed by RNA-seq.

作者信息

Zariñán Teresa, Espinal-Enriquez Jesús, De Anda-Jáuregui Guillermo, Lira-Albarrán Saúl, Hernández-Montes Georgina, Gutiérrez-Sagal Rubén, Rebollar-Vega Rosa G, Bousfield George R, Butnev Viktor Y, Hernández-Lemus Enrique, Ulloa-Aguirre Alfredo

机构信息

Red de Apoyo a la Investigación, Universidad Nacional Autónoma de México (UNAM)-Instituto Nacional de Ciencias Médicas y Nutrición SZ, 14080, Mexico City, Mexico.

Instituto Nacional de Medicina Genómica (INMEGEN), Mexico City 14610, Mexico.

出版信息

bioRxiv. 2023 Oct 20:2023.10.18.562995. doi: 10.1101/2023.10.18.562995.

Abstract

It has been documented that variations in glycosylation on glycoprotein hormones, confer distinctly different biological features to the corresponding glycoforms when multiple biochemical readings are analyzed. We here applied next generation RNA sequencing to explore changes in the transcriptome of rat granulosa cells exposed for 0, 6, and 12 h to 100 ng/ml of four highly purified follicle-stimulating hormone (FSH) glycoforms, each exhibiting different glycosylation patterns: human pituitary FSH and equine FSH (FSH) (hypo-glycosylated), and human FSH and chinese-hamster ovary cell-derived human recombinant FSH (FSH) (fully-glycosylated). Total RNA from triplicate incubations was prepared from FSH glycoform-exposed cultured granulosa cells obtained from DES-pretreated immature female rats, and RNA libraries were sequenced in a HighSeq 2500 sequencer (2 × 125 bp paired-end format, 10-15 × 10 reads/sample). The computational workflow focused on investigating differences among the four FSH glycoforms at three levels: gene expression, enriched biological processes, and perturbed pathways. Among the top 200 differentially expressed genes, only 4 (0.6%) were shared by all 4 glycoforms at 6 h, whereas 118 genes (40%) were shared at 12 h. Follicle-stimulating hormone glycocoforms stimulated different patterns of exclusive and associated up regulated biological processes in a glycoform and time-dependent fashion with more shared biological processes after 12 h of exposure and fewer treatment-specific ones, except for FSH, which exhibited stronger responses with more specifically associated processes at this time. Similar results were found for down-regulated processes, with a greater number of processes at 6 h or 12 h, depending on the particular glycoform. In general, there were fewer downregulated than upregulated processes at both 6 h and 12 h, with FSH exhibiting the largest number of down-regulated associated processes at 6 h while FSH exhibited the greatest number at 12 h. Signaling cascades, largely linked to cAMP-PKA, MAPK, and PI3/AKT pathways were detected as differentially activated by the glycoforms, with each glycoform exhibiting its own molecular signature. These data extend previous observations demonstrating glycosylation-dependent differential regulation of gene expression and intracellular signaling pathways triggered by FSH in granulosa cells. The results also suggest the importance of individual FSH glycoform glycosylation for the conformation of the ligand-receptor complex and induced signalling pathways.

摘要

有文献记载,当分析多个生化读数时,糖蛋白激素糖基化的变化会赋予相应糖型明显不同的生物学特性。我们在此应用新一代RNA测序技术,以探究大鼠颗粒细胞在0、6和12小时内暴露于100 ng/ml的四种高度纯化的促卵泡激素(FSH)糖型后的转录组变化,每种糖型都呈现出不同的糖基化模式:人垂体FSH和马FSH(FSH)(低糖基化),以及人FSH和中国仓鼠卵巢细胞衍生的人重组FSH(FSH)(完全糖基化)。从经己烯雌酚预处理的未成熟雌性大鼠获得的FSH糖型暴露培养颗粒细胞中制备一式三份培养物的总RNA,并在HighSeq 2500测序仪中对RNA文库进行测序(2×125 bp双端格式,10 - 15×10 reads/样本)。计算工作流程专注于在三个层面研究四种FSH糖型之间的差异:基因表达、富集的生物学过程和受干扰的途径。在前200个差异表达基因中,在6小时时所有4种糖型共有的只有4个(0.6%),而在12小时时有118个基因(40%)是共有的。促卵泡激素糖型以糖型和时间依赖性方式刺激不同模式的排他性和相关性上调生物学过程,暴露12小时后共有生物学过程更多,而治疗特异性过程更少,除了FSH,此时它表现出更强的反应,具有更多特异性相关过程。对于下调过程也发现了类似结果,根据特定糖型的不同,在6小时或12小时有更多的过程。总体而言,在6小时和12小时下调过程都比上调过程少,FSH在6小时表现出最多的下调相关过程,而FSH在12小时表现出最多。信号级联反应在很大程度上与cAMP - PKA、MAPK和PI3/AKT途径相关,被检测到因糖型而有差异地激活,每种糖型都表现出其自身的分子特征。这些数据扩展了先前的观察结果,证明了FSH在颗粒细胞中触发的基因表达和细胞内信号通路的糖基化依赖性差异调节。结果还表明了单个FSH糖型糖基化对配体 - 受体复合物构象和诱导信号通路的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b1cf/10614937/21c092bbb233/nihpp-2023.10.18.562995v1-f0001.jpg

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