Hypoxia Activates Jun-N-Terminal Kinase, Extracellular Signal–Regulated Protein Kinase, and p38 Kinase in Pulmonary Arteries
- 1 November 2000
- journal article
- Published by American Thoracic Society in American Journal of Respiratory Cell and Molecular Biology
- Vol. 23 (5) , 593-601
- https://doi.org/10.1165/ajrcmb.23.5.3921
Abstract
Chronic alveolar hypoxia is the major cause of pulmonary hypertension. The cellular mechanisms involved in hypoxia- induced pulmonary arterial remodeling are still poorly understood. Mitogen-activated protein kinase (MAPK) is a key enzyme in the signaling pathway leading to cellular growth and proliferation. The purpose of this investigation was to determine the roles that MAPKs, specifically Jun-N-terminal kinase (JNK), extracellular signal-regulated protein kinase (ERK), and p38 kinase, play in the hypoxia-induced pulmonary arterial remodeling. Rats were exposed to normobaric hypoxia (10% O(2)) for 1, 3, 7, or 14 d. Hypoxia caused significant remodeling in the pulmonary artery characterized by thickening of pulmonary arterial wall and increases in tissue mass and total RNA. JNK, ERK, and p38 kinase tyrosine phosphorylations and their activities were significantly increased by hypoxia. JNK activation peaked at Day 1 and ERK/p38 kinase activation peaked after 7 d of hypoxia. The results from immunohistochemistry show that hypoxia increased phospho-MAPK staining in both large and small intrapulmonary arteries. Hypoxia also upregulated vascular endothelial growth factor messenger RNA (mRNA) and platelet-derived growth factor receptor mRNA levels in pulmonary artery with a time course correlated to the activation of ERK and p38 kinase. The gene expressions of c-jun, c-fos, and egr-1, known as downstream effectors of MAPK, were also investigated. Hypoxia upregulated egr-1 mRNA but downregulated c-jun and c-fos mRNAs. These data suggest that hypoxia-induced activation of JNK is an early response to hypoxic stress and that activation of ERK and p38 kinase appears to be associated with hypoxia-induced pulmonary arterial remodeling.Keywords
This publication has 29 references indexed in Scilit:
- Reduced Ubiquitin-Dependent Degradation of c-Jun After Phosphorylation by MAP KinasesScience, 1997
- Induction of Apoptosis by ASK1, a Mammalian MAPKKK That Activates SAPK/JNK and p38 Signaling PathwaysScience, 1997
- Multiple intracellular MAP kinase signaling cascadesKidney International, 1996
- Egr-1-Induced Endothelial Gene Expression: A Common Theme in Vascular InjuryScience, 1996
- Exchange of Aspartate and AlaninePublished by Elsevier ,1996
- Primary Structure of BMK1: A New Mammalian MAP KinaseBiochemical and Biophysical Research Communications, 1995
- REGULATION OF NUCLEAR TRANSCRIPTION FACTORS BY STRESS SIGNALSClinical and Experimental Pharmacology and Physiology, 1995
- Deciphering the MAP kinase pathwayProgress in Growth Factor Research, 1994
- A MAP Kinase Targeted by Endotoxin and Hyperosmolarity in Mammalian CellsScience, 1994
- Endothelin-1 stimulates tyrosine phosphorylation and the activities of two mitogen-activated protein kinases in cultured vascular smooth muscle cellsJournal Of Hypertension, 1992