Related Experiment Video
Updated: Jul 28, 2026

Strategies for Tracking Anastasis, A Cell Survival Phenomenon that Reverses Apoptosis
Published on: February 16, 2015
Looking beneath the surface: the cell death pathway of Fas/APO-1 (CD95)
1Department of Genetics, Harvard Medical School and Howard Hughes Medical Institute, Boston, Massachusetts 02115, USA.
Summary:
The biochemical basis of programmed cell death is poorly understood in mammals. The cell surface receptor Fas/APO-1 (CD95) is one molecule known to be central to a number of mammalian cell death processes. Several studies in the past year have led to insights about the role of Fas/APO-1 in vivo and have also given some clues about the biochemical components of the Fas/APO-1 death pathway. This article reviews those studies and discuss models of Fas/APO-1 signaling and function.
Background:
Cell death occurs as a normal process in a wide variety of developmental and homeostatic contexts in metazoan organisms (1); it represents the timely and appropriate fate for many or even the majority of cells born in certain organ systems. Despite the importance and ubiquitous nature of such physiologic, or "programmed", cell death, little is known about the molecular events that mediate this process. That a conserved biochemical pathway exists is suggested by the observation that programmed cell death is almost always accompanied by a consistent set of morphologic changes, an appearance known as apoptosis (2). The identification of the genes that control programmed cell death in higher eukaryotes has been hampered by several inherent difficulties. First, the genetic tools so useful in dissecting cell death pathways in Caenorhabditis elegans (3) and Drosophila (4) have not been available in higher eukaryotes. Second, the death-inducing properties of such genes makes genetic selection an impractical means of identification. Third, it appears that many cell death genes are constitutively expressed and present in an inactive form (5), making it unlikely that they could be discovered by techniques relying upon differential gene expression. Finally, genes identified by virtue of an ability to induce death when overexpressed must be subjected to rigorous criteria to determine whether the cell death is of physiologic importance, since it is likely that overexpression of certain proteins may lead to toxic effects that are distinct from the in vivo roles of those proteins. Two approaches to date have yielded the most information about cell death processes: (i) identification of cell death genes by classical genetic means coupled with characterization of their mammalian homologs and (ii) screening for proteins capable of inducing cell death directly in mammalian cells. The Fas antigen/APO-1 is an example of a protein discovered using the latter approach, as it was first discovered as an inducer of cell death and later shown to be necessary and sufficient for certain programmed deaths in vivo. More recent studies have connected Fas to elements of cell death pathways in other species. It has been proposed that Fas is related to the Drosophila cell death protein Reaper, and that in signaling cell death Fas relies upon a relative of the C. elegans cell death protein CED-3. Fas may therefore represent an evolutionarily conserved component of a universal cell death pathway.
Insights
Programmed cell death, or apoptosis, is crucial in mammals but poorly understood. Recent studies illuminate the role of the Fas/APO-1 receptor in vivo and its associated death pathway components.
Area of Science:
- Molecular Biology
- Cell Biology
- Immunology
Background:
- Programmed cell death (apoptosis) is a fundamental biological process in multicellular organisms, essential for development and tissue homeostasis.
- The molecular mechanisms underlying mammalian programmed cell death remain largely elusive due to genetic tool limitations and the constitutive expression of death-related genes.
- The Fas antigen/APO-1 (CD95) is a key cell surface receptor involved in initiating programmed cell death.
Purpose of the Study:
- To review recent studies providing insights into the in vivo function of Fas/APO-1 in mammalian cell death.
- To discuss the biochemical components and signaling pathways associated with Fas/APO-1-mediated apoptosis.
- To explore models of Fas/APO-1 signaling and its role in programmed cell death.
Main Methods:
- Review of recent scientific literature on Fas/APO-1 and programmed cell death.
- Analysis of studies investigating the in vivo role of Fas/APO-1.
- Discussion of biochemical and genetic data related to the Fas/APO-1 death pathway.
Main Results:
- Recent research has advanced the understanding of Fas/APO-1's in vivo significance in mammalian cell death processes.
- Clues regarding the biochemical constituents of the Fas/APO-1 death signaling pathway have emerged.
- Fas/APO-1 may represent an evolutionarily conserved component of a universal cell death pathway, linking to proteins in other species.
Conclusions:
- The biochemical basis of programmed cell death in mammals is still not fully elucidated.
- Fas/APO-1 is a central molecule in various mammalian cell death pathways, with its role in vivo becoming clearer.
- Further research into Fas/APO-1 signaling is crucial for understanding programmed cell death.
Related Concept Videos
Overview of Cell Death
Cell death was observed in the early 19th century, but there was no experimental evidence to prove it. In 1842, Carl Vogt first discovered cell death in a metamorphic toad; however, it was not termed ‘cell death.’ Scientists discovered different cell death pathways only in the 20th century...
Apoptosis
The Extrinsic Apoptotic Pathway
The Intrinsic Apoptotic Pathway
Phagocytosis of Apoptotic Cells
Normal cells contain receptors that prevent them from being recognized by phagocytes.
Autophagic Cell Death
Autophagy and Apoptosis
Autophagy can activate apoptosis. In normal conditions, the autophagy activating protein Beclin-1 and pro-apoptotic...

