Coenzyme and cofactor metabolism belongs to biochemical processes significantly regulated in human granulosa cells collected after IVF during long-term primary in vitro culture

Author:

Nawrocki Mariusz J.1,Sibiak Rafał2,Brązert Maciej3,Celichowski Piotr4,Pawelczyk Leszek3,Chermuła Błażej3,Dompe Claudia5,Kempisty Bartosz146,Mozdziak Paul7

Affiliation:

1. Department of Anatomy, Poznan University of Medical Sciences , Poznan , Poland

2. Division of Reproduction, Department of Obstetrics, Gynecology and Gynecologic Oncology, Poznan University of Medical Sciences , Poznan , Poland

3. Department of Infertility and Reproductive Endocrinology, Poznan University of Medical Sciences , Poznan , Poland

4. Department of Histology and Embryology, Poznan University of Medical Sciences , Poznan , Poland

5. The School of Medicine, Medical Sciences and Nutrition, University of Aberdeen , Aberdeen UK

6. Department of Obstetrics and Gynecology, University Hospital and Masaryk University , Brno , Czech Republic

7. Physiology Graduate Program, North Carolina State University , Raleigh , North Carolina

Abstract

Abstract Granulosa cells (GCs) provide the microenvironment necessary for the development of the follicle and the maturation of the oocyte. GCs are associated with reproductive system function and the maintenance of pregnancy by participating in the synthesis of steroid hormones. Many authors point to new ways of using GCs in regenerative medicine and indicate the significant plasticity of this cell population, suggesting that GCs can undergo a transdifferentiation process. Employing primary in vitro cell cultures and high-throughput transcriptome analysis via Affymetrix microarrays, this study describes groups of genes associated with enzymatic reactions. 52 genes were identified belonging to four gene ontology biological process terms (GO BP): “coenzyme biosynthetic process”, “coenzyme metabolic process”, “cofactor biosynthetic process” and “cofactor metabolic process”. All identified genes showed reduction in the level of mRNA expression during long-term in vitro cultivation. Significanthe transcriptomic profile variability was exhibited for the genes (ELOVL5, ELOVL6 and GPAM) involved in enzymatic regulation of fatty acid metabolism. Running title: Enzymatic regulation in granulosa cells

Publisher

Walter de Gruyter GmbH

Subject

Cell Biology,Molecular Biology

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