Is caspase‐dependent apoptosis only cell differentiation taken to the extreme?
- 8 November 2006
- journal article
- Published by Wiley in The FASEB Journal
- Vol. 21 (1) , 8-17
- https://doi.org/10.1096/fj.06-5912hyp
Abstract
The benefits of apoptosis for a multicellular organism are obvious and fit the current dogma that the maintenance and viability of such organisms are dependent on the selective elimination of unneeded or deleterious cell types. However, self destruction at the level of the individual cell defies the most basic precepts of biology (sustaining life). If apoptosis is viewed through this construct then one question becomes paramount, i.e., why would an individual cell and its progeny develop, retain, or evolve a mechanism the sole purpose of which is to eliminate itself? In consideration of such a paradox, it is reasonable to postulate that prospective apoptotic pathways coevolved with and or were co-opted from another basic cell function(s) that did not involve the death of the cell per se. In the following article, we present the hypothesis that the conserved biochemical pathways of apoptosis are integral components of terminal cell differentiation and it is the time of engagement and activity level of these pathways that ultimately determines the choice between cell death or cell maturation.—Fernando, P., Megeney, L. A. Is caspase-dependent apoptosis only cell differentiation taken to the extreme?Keywords
Funding Information
- Canadian Institutes of Health Research
- Muscular Dystrophy Association
- Heart and Stroke Foundation of Canada
This publication has 98 references indexed in Scilit:
- Caspase-independent cell deathNature Medicine, 2005
- Life's smile, death's grin: vital functions of apoptosis-executing proteinsCurrent Opinion in Cell Biology, 2004
- Origin of multicellular organisms as an inevitable consequence of dynamical systemsThe Anatomical Record, 2002
- On the origin, evolution, and nature of programmed cell death: a timeline of four billion yearsCell Death & Differentiation, 2002
- Rho GTPases: molecular switches that control the organization and dynamics of the actin cytoskeletonPhilosophical Transactions Of The Royal Society B-Biological Sciences, 2000
- Minireview: Apoptosis as seen through a lensApoptosis, 2000
- Membrane deformability and the capacity for shape change in the erythrocyteBlood, 1989
- Immunocytochemical localization of transient DNA strand breaks in differentiating myotubes using in situ nick-translationDevelopmental Biology, 1988
- DNA strand breaks and ADP-ribosyl transferase activation during cell differentiationNature, 1982
- Shrinkage necrosis: A distinct mode of cellular deathThe Journal of Pathology, 1971