Essential versus accessory aspects of cell death: recommendations of the NCCD 2015
L Galluzzi1, J M Bravo-San Pedro2, I Vitale3
11] Gustave Roussy Cancer Center, Villejuif, France [2] Equipe 11 labellisée par la Ligue Nationale contre le Cancer, Centre de Recherche des Cordeliers, Paris, France [3] Université Paris Descartes/Paris V, Sorbonne Paris Cité, Paris, France.
Abstract:
Cells exposed to extreme physicochemical or mechanical stimuli die in an uncontrollable manner, as a result of their immediate structural breakdown. Such an unavoidable variant of cellular demise is generally referred to as 'accidental cell death' (ACD). In most settings, however, cell death is initiated by a genetically encoded apparatus, correlating with the fact that its course can be altered by pharmacologic or genetic interventions. 'Regulated cell death' (RCD) can occur as part of physiologic programs or can be activated once adaptive responses to perturbations of the extracellular or intracellular microenvironment fail. The biochemical phenomena that accompany RCD may be harnessed to classify it into a few subtypes, which often (but not always) exhibit stereotyped morphologic features. Nonetheless, efficiently inhibiting the processes that are commonly thought to cause RCD, such as the activation of executioner caspases in the course of apoptosis, does not exert true cytoprotective effects in the mammalian system, but simply alters the kinetics of cellular demise as it shifts its morphologic and biochemical correlates. Conversely, bona fide cytoprotection can be achieved by inhibiting the transduction of lethal signals in the early phases of the process, when adaptive responses are still operational. Thus, the mechanisms that truly execute RCD may be less understood, less inhibitable and perhaps more homogeneous than previously thought. Here, the Nomenclature Committee on Cell Death formulates a set of recommendations to help scientists and researchers to discriminate between essential and accessory aspects of cell death.
Insights
Accidental cell death (ACD) is uncontrollable, while regulated cell death (RCD) is genetically controlled. Understanding RCD mechanisms is key for true cytoprotection, distinguishing essential from accessory processes.
Area of Science:
- Cell Biology
- Molecular Biology
- Biochemistry
Background:
- Cell death occurs through uncontrollable accidental cell death (ACD) or genetically encoded regulated cell death (RCD).
- RCD can be part of physiological processes or a response to failed adaptive mechanisms.
- Current interventions targeting RCD execution pathways yield limited cytoprotective effects.
Purpose of the Study:
- To clarify the distinctions between essential and accessory mechanisms in regulated cell death (RCD).
- To provide recommendations for discriminating between core and non-core aspects of RCD.
- To guide research on effective cytoprotective strategies.
Main Methods:
- Analysis of existing literature on cell death mechanisms.
- Formulation of consensus-based recommendations by the Nomenclature Committee on Cell Death.
- Comparative analysis of ACD and RCD pathways.
Main Results:
- ACD results from immediate structural breakdown, while RCD involves genetically regulated pathways.
- Inhibiting RCD executioners alters cell demise kinetics but does not provide true cytoprotection.
- Effective cytoprotection is achieved by inhibiting early lethal signal transduction.
Conclusions:
- The true execution mechanisms of RCD are less understood and potentially more homogeneous than previously thought.
- Distinguishing essential RCD components is crucial for developing effective cytoprotective therapies.
- Recommendations are provided to standardize the study and classification of cell death.
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