Korean J Fertil Steril.  1997 Aug;24(2):267-271.

The Expression of Apoptosis Related Genes bel-2, TRPM-2 in Luteinized Human Granulosa Cells

Abstract

Apoptosis, programmed cell death, is posulated to occur in granulosa cells in ovarian follicular atresia. bcl-2 gene serves as protector from apoptosis and, thus, is associated with increased cell survival. TRPM-2 gene expression has been implicated as a trigger of apoptosis in rat prostate, uterus and mammary gland. Our objective was to determine if bel-2 and TRPM-2 are expressed in luteinized human GC and, therefore, have regulatory functions for apoptosis in GC. Human GC were obtained via oocyte retrival from the infertile patients stimulated with exogeneous gonadotropins while undergoing IVF. GC were isolated from follicular fluid using Percoll gradient centrifugation. The GC were further purified with anti-CD45 magnetic beads to remove contaminating WBC's. RT-PCR were performed to analyze the mRNA expression of bcl-2 and TRPM-2 in the GC. The PCR primers were designed to amplify a 195 bp fragment of bcl-2 and a 174 bp fragment of TRPM-2. The PCR products were electrophoresed on 4% agarose gel. Three separate experiments indicated that both bel-2 and TRPM-2 are concurrently expressed in human GC. We cultured granulosa cells with FSH (1 ng/ml) for 1 day to investigate the relative changes of TRPM-2 mRNA level with RNAse protection assay. When we cultured GC with serum free medium for 1 day TRPM-2 mRNA level increased with 1.3 fold, however it was decreased 0.64 fold with FSH. Therefore we conclude that bcl-2 and TRPM-2 are concurrently expressed and that the interaction of their products may be involved in GC apoptosis. And TRPM-2 may be regulated with FSH.


MeSH Terms

Animals
Apoptosis*
Cell Death
Cell Survival
Centrifugation
Female
Follicular Atresia
Follicular Fluid
Gene Expression
Genes, bcl-2
Gonadotropins
Granulosa Cells*
Humans*
Lutein*
Mammary Glands, Human
Oocytes
Polymerase Chain Reaction
Prostate
Rats
Ribonucleases
RNA, Messenger
Sepharose
Uterus
Gonadotropins
Lutein
RNA, Messenger
Ribonucleases
Sepharose
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