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Updated: May 16, 2026

Measuring Composition of CD95 Death-Inducing Signaling Complex and Processing of Procaspase-8 in this Complex
Published on: August 2, 2021
CD95 is part of a let-7/p53/miR-34 regulatory network
Annika Hau1, Paolo Ceppi, Marcus E Peter
1Division Hematology/Oncology, Feinberg School of Medicine, Northwestern University, Chicago, Illinois, United States of America.
Abstract:
The death receptor CD95 (APO-1/Fas) mediates apoptosis induction upon ligation by its cognate ligand CD95L. Two types of CD95 signaling pathways have been identified, which are characterized by the absence (Type I) or presence (Type II) of mitochondrial involvement. Micro(mi)RNAs are small noncoding RNAs that negatively regulate gene expression. They are important regulators of differentiation processes and are found frequently deregulated in many human cancers. We recently showed that Type I cells express less of the differentiation marker miRNA let-7 and, hence, likely represent more advanced tumor cells than the let-7 high expressing Type II cells. We have now identified miR-34a as a selective marker for cells that are sensitive to CD95-mediated apoptosis. Both CD95 and miR-34a are p53 target genes, and consequently, both the sensitivity of cancer cells to CD95-mediated apoptosis and the ability to respond to p53 mediated DNA genotoxic stress are linked. Interestingly, while miR-34a was found to positively correlate with the ability of cells to respond to genotoxic stress, let-7 was negatively correlated. The expression level of CD95 inversely correlated with the expression of let-7 suggesting regulation of let-7 expression by CD95. To test a link between p53 and miR-34a, we altered the expression of CD95. This affected the ability of cells to activate p53 and to regulate miR-34a. Our data point to a novel regulatory network comprising p53, CD95, let-7, and miR-34a that affects cancer cell survival, differentiation, and sensitivity to apoptotic signals. The possible relevance of this regulatory network for cancer stem cells is discussed.
Insights
This study reveals a new regulatory network involving p53, CD95, let-7, and miR-34a. This network influences cancer cell survival, differentiation, and apoptosis sensitivity, with potential implications for cancer stem cells.
Area of Science:
- Cell biology
- Molecular oncology
- Gene regulation
Background:
- CD95 (APO-1/Fas) receptor mediates apoptosis via Type I (no mitochondria) or Type II (mitochondria) pathways.
- MicroRNAs (miRNAs) regulate gene expression, impacting cell differentiation and often deregulated in cancer.
- Previous work indicated Type I cells have lower let-7 miRNA, suggesting advanced tumor characteristics.
Purpose of the Study:
- Identify novel markers for CD95-mediated apoptosis sensitivity.
- Investigate the regulatory network involving p53, CD95, let-7, and miR-34a in cancer cells.
- Explore the link between p53, CD95 signaling, and miRNA expression in cancer progression.
Main Methods:
- Analysis of miRNA expression (let-7, miR-34a) in different CD95 signaling types.
- Correlation studies between miRNA levels, CD95 expression, and p53-mediated genotoxic stress response.
- Experimental manipulation of CD95 expression to assess effects on p53 activation and miR-34a regulation.
Main Results:
- miR-34a identified as a selective marker for CD95-mediated apoptosis sensitivity.
- Both CD95 and miR-34a are p53 target genes, linking apoptosis sensitivity to p53-mediated stress response.
- miR-34a positively correlated with genotoxic stress response, while let-7 negatively correlated; CD95 inversely correlated with let-7.
Conclusions:
- A novel regulatory network of p53, CD95, let-7, and miR-34a impacts cancer cell survival, differentiation, and apoptosis.
- This network connects CD95-mediated apoptosis with p53-driven genotoxic stress responses.
- The findings suggest potential relevance for cancer stem cell biology and therapeutic strategies.
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