ROS and ROS‐Mediated Cellular Signaling
АФК и клеточная сигнализация, опосредованная АФК
2016-01-01
SCID: 54.1/9evjbg7j
Discuss with AI
Keap1-Nrf2-ARE pathwayNF-κB and MAPK signalingPI3K-Akt pathwaycellular signalingreactive oxygen species (ROS)
Figures from the paper
Abstract (AI)
It has long been recognized that an increase of reactive oxygen species (ROS) can modify the cell-signaling proteins and have functional consequences, which successively mediate pathological processes such as atherosclerosis, diabetes, unchecked growth, neurodegeneration, inflammation, and aging. While numerous articles have demonstrated the impacts of ROS on various signaling pathways and clarify the mechanism of action of cell-signaling proteins, their influence on the level of intracellular ROS, and their complex interactions among multiple ROS associated signaling pathways, the systemic summary is necessary. In this review paper, we particularly focus on the pattern of the generation and homeostasis of intracellular ROS, the mechanisms and targets of ROS impacting on cell-signaling proteins (NF-κB, MAPKs, Keap1-Nrf2-ARE, and PI3K-Akt), ion channels and transporters (Ca(2+) and mPTP), and modifying protein kinase and Ubiquitination/Proteasome System.
Key Findings
1
Elevated reactive oxygen species modify cell-signaling proteins and contribute to pathological processes including atherosclerosis, diabetes, cancerous growth, neurodegeneration, inflammation, and aging.
2
Intracellular ROS levels are governed by interconnected generation and homeostatic mechanisms that influence signaling outcomes.
3
ROS affect calcium-related ion channels and transporters, including Ca2+ signaling and the mitochondrial permeability transition pore.
4
ROS regulate major signaling pathways involving NF-κB, MAPKs, Keap1-Nrf2-ARE, and PI3K-Akt.
5
ROS-mediated signaling involves modification of protein kinases and regulation of the ubiquitination/proteasome system, creating complex interactions among pathways.
Research Object
intracellular reactive oxygen species (ROS) and ROS-associated cellular signaling systems
Research Subject
the generation and homeostasis of intracellular ROS and the mechanisms and targets of ROS-mediated modulation of cell-signaling proteins, ion channels, transporters, protein kinases, and the ubiquitination/proteasome system
Publication Details
Publication Date
2016-01-01
Journal
Publisher
ISSN
Open access PDF
Access Type
Author Information
Download PDF
Subscribe to digest