Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Omics approaches to better understand the molecular mechanism of necroptosis and their translational implications

View through CrossRef
Necroptosis is a type of programed cell death characterized by an inflammatory phenotype due to extensive membrane permeabilization and rupture. Initiation of necroptosis involves activation of tumor necrosis factor receptors by tumor necrosis factor alpha (TNFα) followed by coordinated activities of receptor-interacting protein kinases and mixed lineage kinase-like protein (MLKL). Subsequently, MLKL undergoes phosphorylation and translocates to the plasma membrane, leading to permeabilization. Such permeabilization results in the release of various cytokines and causes extensive inflammatory activity at the organismal level. This inflammatory activity is one of the major differences between apoptosis and necroptosis and links necroptosis to several human pathologies that exhibit inflammation, in addition to the ultimate cell death phenotype. Given the crosstalk between the activation of cell death pathway and inflammatory activity, approaches that provide insights on the regulation of transcripts, proteins and their processing at the global level have substantially improved our understanding of necroptosis and its involvement in different disease states. In this review, we highlight recent omic studies probing the transcriptome, proteome and lipidome which elucidate potential new mechanisms and signaling pathways during necroptosis and the necroptosis-associated inflammatory activity observed in various diseases. We specifically focus on studies investigating the transcriptome and intracellular and released proteome that contribute to inflammatory nature of necroptotic cells. We also highlight different lipids that have been implicated in necroptosis and lipidomic studies identifying lipid players in necroptosis. Finally, we review studies which suggest certain necroptosis-related genes as potential prognosis markers for different cancers and discuss their translational implications.
Title: Omics approaches to better understand the molecular mechanism of necroptosis and their translational implications
Description:
Necroptosis is a type of programed cell death characterized by an inflammatory phenotype due to extensive membrane permeabilization and rupture.
Initiation of necroptosis involves activation of tumor necrosis factor receptors by tumor necrosis factor alpha (TNFα) followed by coordinated activities of receptor-interacting protein kinases and mixed lineage kinase-like protein (MLKL).
Subsequently, MLKL undergoes phosphorylation and translocates to the plasma membrane, leading to permeabilization.
Such permeabilization results in the release of various cytokines and causes extensive inflammatory activity at the organismal level.
This inflammatory activity is one of the major differences between apoptosis and necroptosis and links necroptosis to several human pathologies that exhibit inflammation, in addition to the ultimate cell death phenotype.
Given the crosstalk between the activation of cell death pathway and inflammatory activity, approaches that provide insights on the regulation of transcripts, proteins and their processing at the global level have substantially improved our understanding of necroptosis and its involvement in different disease states.
In this review, we highlight recent omic studies probing the transcriptome, proteome and lipidome which elucidate potential new mechanisms and signaling pathways during necroptosis and the necroptosis-associated inflammatory activity observed in various diseases.
We specifically focus on studies investigating the transcriptome and intracellular and released proteome that contribute to inflammatory nature of necroptotic cells.
We also highlight different lipids that have been implicated in necroptosis and lipidomic studies identifying lipid players in necroptosis.
Finally, we review studies which suggest certain necroptosis-related genes as potential prognosis markers for different cancers and discuss their translational implications.

Related Results

Novel functions of LUBAC-mediated M1 poly-ubiquitination in TNFR1-mediated necroptosis
Novel functions of LUBAC-mediated M1 poly-ubiquitination in TNFR1-mediated necroptosis
Necroptosis is an immunogenic form of programmed cell death characterized by plasma membrane accumulation of activated mixed lineage kinase domain-like (MLKL) that eventually leads...
Why Pakistan Must Lead in Regional Multi-Omics Research for Precision Medicine
Why Pakistan Must Lead in Regional Multi-Omics Research for Precision Medicine
Precision medicine has emerged as one of the most transformative movements in global healthcare, shifting the clinical emphasis from generalized treatments to highly individualized...
Necroptosis in Macrophage Foam Cells Promotes Fat Graft Fibrosis in Mice
Necroptosis in Macrophage Foam Cells Promotes Fat Graft Fibrosis in Mice
Background: Fibrosis is a major grafting-related complication that leads to fat tissue dysfunction. Macrophage-induced inflammation is related to the development of fat tissue fibr...
Omics-Based Investigations of Breast Cancer
Omics-Based Investigations of Breast Cancer
Breast cancer (BC) is characterized by an extensive genotypic and phenotypic heterogeneity. In-depth investigations into the molecular bases of BC phenotypes, carcinogenesis, progr...
Necroptosis-inducible Nanoliposomes for Enhanced Cancer Sonoimmunotherapy in Vitro
Necroptosis-inducible Nanoliposomes for Enhanced Cancer Sonoimmunotherapy in Vitro
Abstract Background: Necroptosis has emerged as a therapeutic target for stimulating antitumor immune responses in dying tumor cells. However, its suppressed expression of ...
Identification of necroptosis-related genes in Parkinson’s disease by integrated bioinformatics analysis and experimental validation
Identification of necroptosis-related genes in Parkinson’s disease by integrated bioinformatics analysis and experimental validation
BackgroundParkinson’s disease (PD) is the second most common neurodegeneration disease worldwide. Necroptosis, which is a new form of programmed cell death with high relationship w...
IFNγ-Induced Necroptosis Contributes to Hematopoietic Stem and Progenitor Cell Death and Bone Marrow Failure
IFNγ-Induced Necroptosis Contributes to Hematopoietic Stem and Progenitor Cell Death and Bone Marrow Failure
Abstract RIPK1 has important kinase-dependent and kinase-independent scaffolding functions that prevent or activate necroptosis or apoptosis. Complete RIPK1 deficien...

Back to Top