Related Experiment Video
Updated: Aug 14, 2026

Methods to Assess Beta Cell Death Mediated by Cytotoxic T Lymphocytes
Published on: June 16, 2011
Responsiveness of mouse corpora luteal cells to Fas antigen (CD95)-mediated apoptosis
S M Quirk1, R M Harman, S C Huber
1Department of Animal Science, Cornell University, Ithaca, New York 14853, USA. smq1@cornell.edu
Abstract:
Regression of the corpus luteum (CL) occurs by apoptosis. The Fas antigen (Fas) is a cell surface receptor that induces apoptosis in sensitive cells when bound to Fas ligand or agonistic anti-Fas monoclonal antibodies (Fas mAb). A potential role for Fas to induce apoptosis in dispersed CL cell preparations was tested in cells isolated from mice on Days 2-4 of pseudopregnancy. Total CL dispersates, containing steroidogenic luteal cells, fibroblasts, and endothelial cells, were cultured. The effect of pretreatment of cultures with cytokines interferon gamma (IFN) and tumor necrosis factor alpha (TNF) was examined because these cytokines demonstrated effects on Fas-mediated apoptosis in other cell types. Fas mAb had no effect on viability of CL cells cultured in 5% fetal bovine serum (FBS) and pretreated with or without IFN or TNF, but Fas mAb did kill 23% of the cells in cultures pretreated with IFN + TNF. Fas mRNA was detectable in cultured CL cells and was increased 2.1-, 2. 0-, and 11.8-fold by treatment with TNF, IFN, or IFN + TNF, respectively. CL cells treated with the protein synthesis inhibitor cycloheximide (CX) were killed by Fas mAb in the absence of cytokine pretreatment (34%); pretreatment with IFN or IFN + TNF further potentiated killing (62% and 96%, respectively), whereas pretreatment with TNF had no effect (42%). Cells cultured in medium supplemented with insulin, transferrin, and selenium instead of FBS were killed by Fas mAb in the presence of IFN (23%) or IFN + TNF (29%) but not in the presence of TNF. Cells derived from the mouse CL have a functional Fas pathway that is inhibited by FBS and activated by treatment with CX, IFN, and IFN + TNF.
Insights
The Fas pathway induces apoptosis in mouse corpus luteum cells, but this is inhibited by fetal bovine serum. Cytokines like interferon-gamma and tumor necrosis factor-alpha, along with cycloheximide, can activate this Fas-mediated cell death.
Area of Science:
- Reproductive Biology
- Cell Biology
- Immunology
Background:
- Corpus luteum (CL) regression is mediated by apoptosis.
- The Fas antigen (Fas) is a cell surface receptor crucial for inducing apoptosis.
- The role of Fas in CL apoptosis, particularly under cytokine influence, requires elucidation.
Purpose of the Study:
- To investigate the functional role of the Fas pathway in inducing apoptosis in mouse corpus luteum (CL) cells.
- To determine the effects of cytokines interferon gamma (IFN) and tumor necrosis factor alpha (TNF) on Fas-mediated apoptosis in CL cells.
- To examine the influence of culture conditions, including fetal bovine serum (FBS) and cycloheximide (CX), on Fas-mediated apoptosis in CL cells.
Main Methods:
- Dispersed CL cells from pseudopregnant mice were cultured.
- Cells were pretreated with cytokines (IFN, TNF, or both) and/or cycloheximide (CX).
- Apoptosis was induced using agonistic anti-Fas monoclonal antibodies (Fas mAb), and cell viability was assessed.
Main Results:
- Fas mAb induced apoptosis in CL cells when combined with IFN + TNF, or with CX (with or without IFN).
- Fas mRNA expression in CL cells was upregulated by TNF, IFN, and particularly IFN + TNF.
- Fetal bovine serum (FBS) inhibited Fas-mediated apoptosis, while insulin, transferrin, and selenium supplementation allowed for partial activation by IFN or IFN + TNF.
Conclusions:
- Mouse CL cells possess a functional Fas pathway capable of inducing apoptosis.
- Fetal bovine serum (FBS) significantly inhibits Fas-mediated apoptosis in CL cells.
- Cytokines (IFN, TNF) and protein synthesis inhibition (CX) can modulate and activate the Fas pathway in CL cells, suggesting a regulatory mechanism for luteolysis.
More Related Videos
10:49A Murine Cell Line Based Model of Chronic CDK9 Inhibition to Study Widespread Non-Genetic Transcriptional Elongation Defects (TEdeff) in Cancers
Published on: September 26, 2019
07:17Measuring Composition of CD95 Death-Inducing Signaling Complex and Processing of Procaspase-8 in this Complex
Published on: August 2, 2021