Hypo-glycosylated hFSH drives ovarian follicular development more efficiently than fully-glycosylated hFSH: enhanced transcription and PI3K and MAPK signaling

低糖基化 hFSH 比完全糖基化 hFSH 更有效地促进卵泡发育:增强转录和 PI3K 和 MAPK 信号传导

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作者:Guohua Hua, Jitu W George, Kendra L Clark, Kim C Jonas, Gillian P Johnson, Siddesh Southekal, Chittibabu Guda, Xiaoying Hou, Haley R Blum, James Eudy, Viktor Y Butnev, Alan R Brown, Sahithi Katta, Jeffrey V May, George R Bousfield, John S Davis

Methods

The purity of different recombinant hFSH glycoforms was analyzed using an automated western blot system. Follicle numbers were determined by counting serial sections of the mouse ovary. Real-time quantitative RT-PCR, western blot and immunofluorescence staining were used to determine growth and apoptosis markers related with follicle health. RNA sequencing and bioinformatics were used to identify pathways and processes associated with gene expression profiles induced by acute FSH glycoform treatment. Analysis of RTKs was used to determine potential FSH downstream signaling pathways in vivo. Western blot and in vitro ovarian culture system were used to validate the relative signaling pathways. Main

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