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Paracrine actions of growth differentiation factor-9 in the mammalian ovary
1Department of Pathology, Baylor College of Medicine, Houston, Texas 77030, USA.
Abstract:
Although the transforming growth factor-beta (TGF-beta) superfamily is the largest family of secreted growth factors, surprisingly few downstream target genes in their signaling pathways have been identified. Likewise, the identities of oocyte-derived secreted factors, which regulate important oocyte-somatic cell interactions, remain largely unknown. For example, oocytes are known to secrete paracrine growth factor(s) which are necessary for cumulus expansion, induction of hyaluronic acid synthesis, and suppression of LH receptor (LHR) mRNA synthesis. Our previous studies demonstrated that absence of the TGF-beta family member, growth differentiation factor-9 (GDF-9), blocks ovarian folliculogenesis at the primary follicle stage leading to infertility. In the present study, we demonstrate that mouse GDF-9 protein is expressed in all oocytes beginning at the type 3a follicle stage including antral follicles. To explore the biological functions of GDF-9 in the later stages of folliculogenesis and cumulus expansion, we produced mature, glycosylated, recombinant mouse GDF-9 using a Chinese hamster ovary cell expression system. A granulosa cell culture system was established to determine the role of GDF-9 in the regulation of several key ovarian gene products using semiquantitative RT-PCR. We find that recombinant GDF-9 induces hyaluronan synthase 2 (HAS2), cyclooxygenase 2 (COX-2), and steroidogenic acute regulator protein (StAR) mRNA synthesis but suppresses urokinase plasminogen activator (uPA) and LHR mRNA synthesis. Consistent with the induction of StAR mRNA by GDF-9, recombinant GDF-9 increases granulosa cell progesterone synthesis in the absence of FSH. Since induction of HAS2 and suppression of the protease uPA in cumulus cells are key events in the production of the hyaluronic acid-rich extracellular matrix which is produced during cumulus expansion, we determined whether GDF-9 could mimic this process. Using oocytectomized cumulus cell-oocyte complexes, we show that recombinant GDF-9 induces cumulus expansion in vitro. These studies demonstrate that GDF-9 can bind to receptors on granulosa cells to regulate the expression of a number of gene products. Thus, in addition to playing a critical function as a growth and differentiation factor during early folliculogenesis, GDF-9 functions as an oocyte-secreted paracrine factor to regulate several key granulosa cell enzymes involved in cumulus expansion and maintenance of an optimal oocyte microenvironment, processes which are essential for normal ovulation, fertilization, and female reproduction.
Insights
Growth Differentiation Factor-9 (GDF-9) is crucial for ovarian function. This study shows GDF-9 regulates granulosa cell gene expression, promoting cumulus expansion and progesterone synthesis, essential for female reproduction.
Area of Science:
- Reproductive Biology
- Endocrinology
- Cell Signaling
Background:
- The transforming growth factor-beta (TGF-beta) superfamily is large, yet downstream targets are poorly understood.
- Oocyte-secreted factors regulating oocyte-somatic cell interactions are largely unknown.
- Growth Differentiation Factor-9 (GDF-9) absence blocks ovarian folliculogenesis, causing infertility.
Purpose of the Study:
- To investigate the role of GDF-9 in later stages of folliculogenesis and cumulus expansion.
- To explore GDF-9's function as an oocyte-derived paracrine factor.
- To identify specific gene products regulated by GDF-9 in granulosa cells.
Main Methods:
- Produced mature, recombinant mouse GDF-9 using a Chinese hamster ovary cell expression system.
- Utilized a granulosa cell culture system with semiquantitative RT-PCR to assess gene expression.
- Employed oocytectomized cumulus cell-oocyte complexes to study GDF-9's effect on cumulus expansion in vitro.
Main Results:
- Recombinant GDF-9 induced hyaluronan synthase 2 (HAS2), cyclooxygenase 2 (COX-2), and steroidogenic acute regulator protein (StAR) mRNA.
- GDF-9 suppressed urokinase plasminogen activator (uPA) and LH receptor (LHR) mRNA synthesis.
- GDF-9 increased granulosa cell progesterone synthesis and induced cumulus expansion in vitro.
Conclusions:
- GDF-9 acts as an oocyte-secreted paracrine factor regulating granulosa cell gene expression.
- GDF-9 is essential for key events in cumulus expansion and maintaining the oocyte microenvironment.
- These functions of GDF-9 are critical for normal ovulation, fertilization, and female reproduction.