4.4 Article

Effect of luteinizing hormone concentration on transcriptome and subcellular organelle phenotype of ovarian granulosa cells

Journal

JOURNAL OF ASSISTED REPRODUCTION AND GENETICS
Volume 38, Issue 4, Pages 809-824

Publisher

SPRINGER/PLENUM PUBLISHERS
DOI: 10.1007/s10815-021-02066-8

Keywords

Luteinizing hormone; Granulosa cells; Gonadotropin releasing hormone antagonist; Transcriptome; Organelle

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The research found that LH levels have similar effects on GCs in the low and high groups, with changes in molecules and pathways. In GCs cultured in vitro, both insufficient and excessive rLH can impair the activity of mitochondrial dehydrogenase. Under moderate rLH concentrations, abundant cell connections, mitochondria, and liposomes were observed.
Research question Granulosa cells (GCs) surrounding oocytes are crucial for follicular growth, oocyte development, ovulation, and luteinization under the dynamic co-stimulation of follicle stimulating hormone (FSH) and luteinizing hormone (LH). This study aimed to investigate the effect of LH levels on GCs in preovulatory follicles under gonadotropin releasing hormone antagonist-based ovarian stimulation. In vitro experiments were also conducted to study the direct effect of LH on GCs. Methods Twelve infertile women were divided into low (L), medium (M), and high (H) LH groups according to their serum LH levels during ovarian stimulation. RNA-sequencing (RNA-seq) was conducted to examine the transcriptome profiles of GCs obtained from the above patients during the oocyte retrieval. The activity of mitochondrial dehydrogenase was measured under the stimulation of recombinant LH (rLH) concentration gradient combined with recombinant FSH. The ultrastructures of subcellular organelles were observed. Results Bioinformatic analyses showed that compared with the M group, molecule and pathway changes in the L group and in the H group were similar. In cultured GCs, both insufficient and excessive rLH impaired the activity of mitochondrial dehydrogenase. With the medium rLH concentration, numerous cell connections and abundant mitochondria and liposomes were observed. Compared with the medium concentration, GCs showed smaller and rounder mitochondria, more autophagosomes, and massive organelles damages with excessive rLH, and swollen, circular, or forked mitochondria were observed with inadequate rLH. Conclusions RNA-seq provided a novel spectrum of transcriptome characteristics of GCs potentially affected by serum LH levels during ovarian stimulation. In vitro, rLH could directly affect GCs at the subcellular level.

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