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Updated: Apr 26, 2026

Live-cell Imaging of Lysosomal Membrane Permeabilization During Necroptosis
Published on: November 14, 2025
Necroptosis in health and diseases
1Department of Cell Biology, Harvard Medical School, 240 Longwood Avenue, Boston, MA 02115, USA.
Abstract:
Necroptosis is a form of regulated necrosis that can be activated by ligands of death receptors and stimuli that induce the expression of death receptor ligands under apoptotic deficient conditions. Activation of necroptosis by ligands of death receptors requires the kinase activity of RIP1, which mediates the activation of RIP3 and MLKL, two critical downstream mediators of necroptosis. Blocking the kinase activity of RIP1, a key druggable target in the necroptosis pathway, by necrostatins inhibits the activation of necroptosis and allows cell survival and proliferation in the presence of death receptor ligands. The activation of necroptosis is modulated by different forms of ubiquitination, including K63, linear and K48 ubiquitination, as well as phosphorylation of RIP1, RIP3 and MLKL. Necroptosis is suppressed by caspase-8/FADD-mediated apoptosis. Deficiency in caspase-8 and FADD leads to embryonic lethality, tissue degeneration and inflammation which can be suppressed by inhibition of RIP1 kinase and RIP3. On the other hand, the lack of RIP3 kinase activity leads to early embryonic lethality which can be suppressed by the loss of caspase-8, suggesting that although the kinase activity of RIP3 is involved in mediating necroptosis, the basal activity of RIP3 kinase may be required for suppressing caspase-8 mediated apoptosis. Necroptosis as well as RIP1- and RIP3-mediated inflammatory response have been implicated in mediating multiple human diseases including TNF-mediated hypothermia and systemic inflammation, ischemic reperfusion injury, neurodegeneration, Gaucher's disease, progressive atherosclerotic lesions, etc. Targeting RIP1 kinase may provide therapeutic benefits for the treatment of human diseases characterized by necrosis and inflammation.
Insights
Necroptosis, a regulated necrosis pathway, is triggered by death receptor ligands when apoptosis is deficient. Inhibiting RIP1 kinase with necrostatins blocks necroptosis, offering therapeutic potential for diseases involving necrosis and inflammation.
Area of Science:
- Cellular Biology
- Immunology
- Pathology
Background:
- Necroptosis is a regulated form of necrosis.
- It is activated by death receptor ligands, especially when apoptosis is impaired.
- Key mediators include RIP1, RIP3, and MLKL kinases.
Purpose of the Study:
- To elucidate the mechanisms of necroptosis activation and regulation.
- To explore the role of RIP1 kinase as a druggable target.
- To understand the implications of necroptosis in human diseases.
Main Methods:
- Investigated necroptosis activation via death receptor ligands.
- Utilized RIP1 kinase inhibitors (necrostatins).
- Examined the roles of RIP1, RIP3, MLKL, caspase-8, and FADD in cell death and inflammation.
Main Results:
- RIP1 kinase activity is essential for necroptosis.
- Blocking RIP1 kinase with necrostatins inhibits necroptosis, promoting cell survival.
- Deficiencies in caspase-8/FADD lead to inflammation suppressed by RIP1/RIP3 inhibition.
- RIP3 kinase activity is crucial for development and may suppress apoptosis.
Conclusions:
- Targeting RIP1 kinase offers therapeutic potential for diseases involving necrosis and inflammation.
- Necroptosis and RIP1/RIP3-mediated inflammation are implicated in various human diseases.
- Understanding necroptosis regulation is key for developing new treatments.
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