Cyclic stretch activates p38 SAPK2-, ErbB2-, and AT1-dependent signaling in bladder smooth muscle cells
- 1 October 2000
- journal article
- research article
- Published by American Physiological Society in American Journal of Physiology-Cell Physiology
- Vol. 279 (4) , C1155-C1167
- https://doi.org/10.1152/ajpcell.2000.279.4.c1155
Abstract
Cyclic mechanical stretch of bladder smooth muscle cells (SMC) increases rates of DNA synthesis and stimulates transcription of the gene for heparin-binding epidermal growth factor-like growth factor (HB-EGF), an ErbB1/EGF receptor ligand that has been linked to hypertrophic bladder growth. In this study we sought to clarify the signaling pathways responsible for mechanotransduction of the stretch stimulus. HB-EGF mRNA levels, DNA synthesis, and AP-1/Ets DNA binding activities were induced by repetitive stretch of primary culture rat bladder SMC. Inhibitors of the p38 SAPK2 pathway, the angiotensin receptor type 1 (AT1), and the ErbB2 tyrosine kinase reduced each of these activities, while an inhibitor of the extracellular signal-regulated kinase mitogen-activated protein kinase (Erk-MAPK) pathway had no effect. Stretch rapidly activated stress-activated protein kinase 2 (p38 SAPK2) and Jun NH2-terminal kinase (JNK)/SAPK pathways but not the Erk-MAPK pathway and induced ErbB2 but not ErbB1 phosphorylation. Angiotensin II (ANG II) a bladder SMC mitogen previously linked to the stretch response, did not activate ErbB2, and ErbB2 activation occurred in response to stretch in the presence of an ANG receptor inhibitor, indicating that activation of the AT1-mediated pathway and the ErbB2-dependent pathway occurs by independent mechanisms. p38 SAPK2 and JNK/SAPK signaling also appeared to be independent of the ErbB2 and AT1 pathways. These findings indicate that stretch-stimulated DNA synthesis and gene expression in normal bladder SMC occur via multiple independent receptor systems (e.g., AT1 and ErbB2) and at least one MAPK pathway (p38 SAPK2). Further, we show that the Erk-MAPK pathway, which in most systems is linked to receptor-dependent cell growth responses, is not involved in progression to DNA synthesis or in the response of the HB-EGF gene to mechanical forces.Keywords
This publication has 54 references indexed in Scilit:
- Activation of mesangial cell signaling cascades in response to mechanical strainKidney International, 1999
- Lower urinary tract obstruction: clinical and experimental aspectsBritish Journal of Urology, 1998
- ErbB-2, the preferred heterodimerization partner of all ErbB receptors, is a mediator of lateral signalingThe EMBO Journal, 1997
- Role of transactivation of the EGF receptor in signalling by G-protein-coupled receptorsNature, 1996
- Comparison of the Effects of Mechanical Stimulation on Venous and Arterial Smooth Muscle Cells in vitroJournal of Vascular Research, 1996
- PD 098059 Is a Specific Inhibitor of the Activation of Mitogen-activated Protein Kinase Kinase in Vitro and in VivoJournal of Biological Chemistry, 1995
- Mechanical stress activates protein kinase cascade of phosphorylation in neonatal rat cardiac myocytes.Journal of Clinical Investigation, 1995
- Tyrosine Kinase Inhibition: An Approach to Drug DevelopmentScience, 1995
- A Specific Inhibitor of the Epidermal Growth Factor Receptor Tyrosine KinaseScience, 1994
- Autocrine release of angiotensin II mediates stretch-induced hypertrophy of cardiac myocytes in vitroCell, 1993