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Targeting ERK3/MK5 complex for treatment of obesity and diabetes.

Authors :
Loza-Valdes, Angel
El-Merahbi, Rabih
Kassouf, Toufic
Demczuk, Agnieszka
Reuter, Saskia
Viera, Jonathan Trujillo
Karwen, Till
Noh, Minhe
Löffler, Mona C.
Romero-Becerra, Rafael
Torres, Jorge L.
Marcos, Miguel
Sabio, Guadalupe
Wojda, Urszula
Sumara, Grzegorz
Source :
Biochemical & Biophysical Research Communications. Jul2022, Vol. 612, p119-125. 7p.
Publication Year :
2022

Abstract

Kinases represent one of the largest druggable families of proteins. Importantly, many kinases are aberrantly activated/de-activated in multiple organs during obesity, which contributes to the development of diabetes and associated diseases. Previous results indicate that the complex between Extracellular-regulated kinase 3 (ERK3) and Mitogen-Activated Protein Kinase (MAPK)-activated protein kinase 5 (MK5) suppresses energy dissipation and promotes fatty acids (FAs) output in adipose tissue and, therefore promotes obesity and diabetes. However, the therapeutic potential of targeting this complex at the systemic level has not been fully explored. Here we applied a translational approach to target the ERK3/MK5 complex in mice. Importantly, deletion of ERK3 in the whole body or administration of MK5-specific inhibitor protects against obesity and promotes insulin sensitivity. Finally, we show that the expression of ERK3 and MK5 correlates with the degree of obesity and that ERK3/MK5 complex regulates energy dissipation in human adipocytes. Altogether, we demonstrate that ERK3/MK5 complex can be targeted in vivo to preserve metabolic health and combat obesity and diabetes. • Genetic or pharmacological targeting of the ERK3/MK5 complex reduces fat mas. • Inactivation of the ERK3/MK5 improves glucose metabolism in mice fed HFD. • ERK3 inactivation increases energy dissipation in human adipocytes. • ERK3/MK5 levels are increased in obesity in human adipose tissue. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
0006291X
Volume :
612
Database :
Academic Search Index
Journal :
Biochemical & Biophysical Research Communications
Publication Type :
Academic Journal
Accession number :
157030304
Full Text :
https://doi.org/10.1016/j.bbrc.2022.04.070