» Articles » PMID: 37190064

Pathophysiological Impact of the MEK5/ERK5 Pathway in Oxidative Stress

Overview
Journal Cells
Publisher MDPI
Date 2023 May 16
PMID 37190064
Authors
Affiliations
Soon will be listed here.
Abstract

Oxidative stress regulates many physiological and pathological processes. Indeed, a low increase in the basal level of reactive oxygen species (ROS) is essential for various cellular functions, including signal transduction, gene expression, cell survival or death, as well as antioxidant capacity. However, if the amount of generated ROS overcomes the antioxidant capacity, excessive ROS results in cellular dysfunctions as a consequence of damage to cellular components, including DNA, lipids and proteins, and may eventually lead to cell death or carcinogenesis. Both in vitro and in vivo investigations have shown that activation of the mitogen-activated protein kinase kinase 5/extracellular signal-regulated kinase 5 (MEK5/ERK5) pathway is frequently involved in oxidative stress-elicited effects. In particular, accumulating evidence identified a prominent role of this pathway in the anti-oxidative response. In this respect, activation of krüppel-like factor 2/4 and nuclear factor erythroid 2-related factor 2 emerged among the most frequent events in ERK5-mediated response to oxidative stress. This review summarizes what is known about the role of the MEK5/ERK5 pathway in the response to oxidative stress in pathophysiological contexts within the cardiovascular, respiratory, lymphohematopoietic, urinary and central nervous systems. The possible beneficial or detrimental effects exerted by the MEK5/ERK5 pathway in the above systems are also discussed.

Citing Articles

Gut matters in microgravity: potential link of gut microbiota and its metabolites to cardiovascular and musculoskeletal well-being.

Ibrahim Z, Khan N, Siddiqui R, Qaisar R, Marzook H, Soares N Nutr Metab (Lond). 2024; 21(1):66.

PMID: 39123239 PMC: 11316329. DOI: 10.1186/s12986-024-00836-6.


Methylglyoxal in Cardiometabolic Disorders: Routes Leading to Pathology Counterbalanced by Treatment Strategies.

Berdowska I, Matusiewicz M, Fecka I Molecules. 2023; 28(23).

PMID: 38067472 PMC: 10708463. DOI: 10.3390/molecules28237742.


Effects of Radiation-Induced Skin Injury on Hyaluronan Degradation and Its Underlying Mechanisms.

Dong J, Ren B, Tian Y, Peng G, Zhai H, Meng Z Molecules. 2023; 28(21).

PMID: 37959868 PMC: 10647323. DOI: 10.3390/molecules28217449.


Therapeutic Approaches for the Treatment of Interstitial Lung Disease: An Exploratory Review on Molecular Mechanisms.

Amin R, Pandey R, Vaishali K, Acharya V, Sinha M, Kumar N Mini Rev Med Chem. 2023; 24(6):618-633.

PMID: 37587813 DOI: 10.2174/1389557523666230816090112.

References
1.
Touyz R, Yao G, Viel E, Amiri F, Schiffrin E . Angiotensin II and endothelin-1 regulate MAP kinases through different redox-dependent mechanisms in human vascular smooth muscle cells. J Hypertens. 2004; 22(6):1141-9. DOI: 10.1097/00004872-200406000-00015. View

2.
Zhuang K, Zhang J, Xiong M, Wang X, Luo X, Han L . CDK5 functions as a tumor promoter in human colorectal cancer via modulating the ERK5-AP-1 axis. Cell Death Dis. 2016; 7(10):e2415. PMC: 5133995. DOI: 10.1038/cddis.2016.333. View

3.
Potdar S, Parmar M, Ray S, Cavanaugh J . Protective effects of the resveratrol analog piceid in dopaminergic SH-SY5Y cells. Arch Toxicol. 2017; 92(2):669-677. DOI: 10.1007/s00204-017-2073-z. View

4.
Suzaki Y, Yoshizumi M, Kagami S, Koyama A, Taketani Y, Houchi H . Hydrogen peroxide stimulates c-Src-mediated big mitogen-activated protein kinase 1 (BMK1) and the MEF2C signaling pathway in PC12 cells: potential role in cell survival following oxidative insults. J Biol Chem. 2002; 277(11):9614-21. DOI: 10.1074/jbc.M111790200. View

5.
Lee E, Boldo L, Fernandez B, Feelisch M, Harmsen M . Suppression of TAK1 pathway by shear stress counteracts the inflammatory endothelial cell phenotype induced by oxidative stress and TGF-β1. Sci Rep. 2017; 7:42487. PMC: 5314358. DOI: 10.1038/srep42487. View