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Methuosis: nonapoptotic cell death associated with vacuolization of macropinosome and endosome compartments
William A Maltese1, Jean H Overmeyer1
1Department of Biochemistry and Cancer Biology, University of Toledo College of Medicine and Life Sciences, Toledo, Ohio.
Abstract:
Apoptosis is the most widely recognized form of physiological programmed cell death. During the past three decades, various nonapoptotic forms of cell death have gained increasing attention, largely because of their potential importance in pathological processes, toxicology, and cancer therapy. A recent addition to the panoply of cell death phenotypes is methuosis. The neologism is derived from the Greek methuo (to drink to intoxication) because the hallmark of this form of cell death is displacement of the cytoplasm by large fluid-filled vacuoles derived from macropinosomes. The demise of the cell resembles many forms of necrosis, insofar as there is a loss of metabolic capacity and plasma membrane integrity, without the cell shrinkage and nuclear fragmentation associated with apoptosis. Methuosis was initially defined in glioblastoma cells after ectopic expression of activated Ras, but recent reports have described small molecules that can induce the features of methuosis in a broad spectrum of cancer cells, including those that are resistant to conventional apoptosis-inducing drugs. This review summarizes the available information about the distinguishing morphological characteristics and underlying mechanisms of methuosis. We compare and contrast methuosis with other cytopathological conditions in which accumulation of clear cytoplasmic vacuoles is a prominent feature. Finally, we highlight key questions that need to be answered to determine whether methuosis truly represents a unique form of regulated cell death.
Insights
Methuosis is a newly identified cell death form characterized by fluid-filled vacuoles, distinct from apoptosis. It shows promise in cancer therapy, especially for drug-resistant cells.
Area of Science:
- Cell Biology
- Biochemistry
- Oncology
Background:
- Apoptosis is a well-known programmed cell death. Non-apoptotic cell death forms are gaining attention for their roles in disease and therapy.
- Methuosis, a recently defined cell death phenotype, is characterized by cytoplasmic vacuolation.
Purpose of the Study:
- To review the morphological characteristics and mechanisms of methuosis.
- To compare methuosis with other vacuolated cell death forms.
- To identify key questions for classifying methuosis as a unique regulated cell death.
Main Methods:
- Literature review of studies on methuosis.
- Morphological analysis of cell death phenotypes.
- Comparison of methuosis with other vacuolated cell death conditions.
Main Results:
- Methuosis involves cytoplasmic displacement by macropinosome-derived vacuoles.
- Cellular demise in methuosis resembles necrosis (loss of metabolic capacity, membrane integrity) but lacks apoptosis features (cell shrinkage, nuclear fragmentation).
- Methuosis can be induced in various cancer cells, including apoptosis-resistant ones, by small molecules.
Conclusions:
- Methuosis represents a distinct cell death phenotype with potential therapeutic applications.
- Further research is needed to fully elucidate the mechanisms and unique nature of methuosis as a regulated cell death.
- Understanding methuosis could offer new strategies for cancer treatment, particularly for resistant tumors.
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