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PMID: 9769323 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

Role of the stress-activated protein kinases in endothelin-induced cardiomyocyte hypertrophy.

The Journal of clinical investigation ·Vol. 102 ·No. 7 ·1998-10-01 ·Pages 1311-20

Choukroun G, Hajjar R, Kyriakis JM, Bonventre JV, Rosenzweig A, Force T

Abstract

The signal transduction pathways governing the hypertrophic response of cardiomyocytes are not well defined. Constitutive activation of the stress-activated protein kinase (SAPK) family of mitogen-activated protein (MAP) kinases or another stress-response MAP kinase, p38, by overexpression of activated mutants of various components of the pathways is sufficient to induce a hypertrophic response in cardiomyocytes, but it is not clear what role these pathways play in the response to physiologically relevant hypertrophic stimuli. To determine the role of the SAPKs in the hypertrophic response, we used adenovirus-mediated gene transfer of SAPK/ERK kinase-1 (KR) [SEK-1(KR)], a dominant inhibitory mutant of SEK-1, the immediate upstream activator of the SAPKs, to block signal transmission down the SAPK pathway in response to the potent hypertrophic agent, endothelin-1 (ET-1). SEK-1(KR) completely inhibited ET-1-induced SAPK activation without affecting activation of the other MAP kinases implicated in the hypertrophic response, p38 and extracellular signal-regulated protein kinases (ERK)-1/ERK-2. Expression of SEK-1(KR) markedly inhibited the ET-1-induced increase in protein synthesis. In contrast, the MAPK/ERK kinase inhibitor, PD98059, which blocks ERK activation, and the p38 inhibitor, SB203580, had no effect on ET-1-induced protein synthesis. ET-1 also induced a significant increase in atrial natriuretic factor mRNA expression as well as in the percentage of cells with highly organized sarcomeres, responses which were also blocked by expression of SEK-1(KR). In summary, inhibiting activation of the SAPK pathway abrogated the hypertrophic response to ET-1. These data are the first demonstration that the SAPKs are necessary for the development of agonist-induced cardiomyocyte hypertrophy, and suggest that in response to ET-1, they transduce critical signals governing the hypertrophic response.

MeSH Terms
Adenoviridae Animals Animals, Newborn Calcium-Calmodulin-Dependent Protein Kinases/antagonists & inhibitors,metabolism Cardiomegaly/enzymology,physiopathology Cells, Cultured Endothelin-1/pharmacology,physiology Enzyme Activation Enzyme Inhibitors/pharmacology Flavonoids/pharmacology Genetic Vectors Heart/physiology Imidazoles/pharmacology Mitogen-Activated Protein Kinase 3 Mitogen-Activated Protein Kinase Kinases Mitogen-Activated Protein Kinases Models, Cardiovascular Myocardium/cytology,enzymology Protein Serine-Threonine Kinases/genetics,metabolism Protein-Tyrosine Kinases/genetics,metabolism Pyridines/pharmacology Rats Recombinant Proteins/metabolism Signal Transduction/drug effects Transfection p38 Mitogen-Activated Protein Kinases
Chemicals
Endothelin-1 Enzyme Inhibitors Flavonoids Imidazoles Pyridines Recombinant Proteins Protein-Tyrosine Kinases Protein Serine-Threonine Kinases Calcium-Calmodulin-Dependent Protein Kinases Mitogen-Activated Protein Kinase 3 Mitogen-Activated Protein Kinases p38 Mitogen-Activated Protein Kinases Mitogen-Activated Protein Kinase Kinases SB 203580 2-(2-amino-3-methoxyphenyl)-4H-1-benzopyran-4-one
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Choukroun G
Renal Unit, and Department of Medicine, Harvard Medical School, Boston, Massachusetts 02115, USA. force@helix.mgh.harvard.edu
Hajjar R
Kyriakis J M
Bonventre J V
Rosenzweig A
Force T
References (62)
62 references, click to expand
  1. Activation of a human Ste20-like kinase by oxidant stress defines a novel stress response pathway.
    EMBO J. 1996 Sep 2;15(17):4537-46 PMID: 8887545
  2. A cytoplasmic inhibitor of the JNK signal transduction pathway.
    Science. 1997 Aug 1;277(5326):693-6 PMID: 9235893
  3. A MAP kinase targeted by endotoxin and hyperosmolarity in mammalian cells.
    Science. 1994 Aug 5;265(5173):808-11 PMID: 7914033
  4. Requirement for ceramide-initiated SAPK/JNK signalling in stress-induced apoptosis.
    Nature. 1996 Mar 7;380(6569):75-9 PMID: 8598911
  5. Peptide growth factors can provoke "fetal" contractile protein gene expression in rat cardiac myocytes.
    J Clin Invest. 1990 Feb;85(2):507-14 PMID: 1688886
  6. Specificity of receptor tyrosine kinase signaling: transient versus sustained extracellular signal-regulated kinase activation.
    Cell. 1995 Jan 27;80(2):179-85 PMID: 7834738
  7. Targeting the receptor-Gq interface to inhibit in vivo pressure overload myocardial hypertrophy.
    Science. 1998 Apr 24;280(5363):574-7 PMID: 9554846
  8. JNK1: a protein kinase stimulated by UV light and Ha-Ras that binds and phosphorylates the c-Jun activation domain.
    Cell. 1994 Mar 25;76(6):1025-37 PMID: 8137421
  9. The search for physiological substrates of MAP and SAP kinases in mammalian cells.
    Trends Cell Biol. 1997 Sep;7(9):353-61 PMID: 17708980
  10. The regulation of AP-1 activity by mitogen-activated protein kinases.
    J Biol Chem. 1995 Jul 14;270(28):16483-6 PMID: 7622446
  11. Endothelin induction of inositol phospholipid hydrolysis, sarcomere assembly, and cardiac gene expression in ventricular myocytes. A paracrine mechanism for myocardial cell hypertrophy.
    J Biol Chem. 1990 Nov 25;265(33):20555-62 PMID: 2173712
  12. Activation of the SAPK pathway by the human STE20 homologue germinal centre kinase.
    Nature. 1995 Oct 26;377(6551):750-4 PMID: 7477268
  13. Ventricular expression of a MLC-2v-ras fusion gene induces cardiac hypertrophy and selective diastolic dysfunction in transgenic mice.
    J Biol Chem. 1995 Sep 29;270(39):23173-8 PMID: 7559464
  14. Adenovirus infection stimulates the Raf/MAPK signaling pathway and induces interleukin-8 expression.
    J Virol. 1997 Jan;71(1):398-404 PMID: 8985363
  15. Is there major involvement of the renin-angiotensin system in cardiac hypertrophy?
    Circ Res. 1997 Nov;81(5):639-42 PMID: 9351435
  16. Inhibition of myocardial endothelin pathway improves long-term survival in heart failure.
    Nature. 1996 Nov 28;384(6607):353-5 PMID: 8934519
  17. Cardiac muscle cell hypertrophy and apoptosis induced by distinct members of the p38 mitogen-activated protein kinase family.
    J Biol Chem. 1998 Jan 23;273(4):2161-8 PMID: 9442057
  18. T lymphocyte activation signals for interleukin-2 production involve activation of MKK6-p38 and MKK7-SAPK/JNK signaling pathways sensitive to cyclosporin A.
    J Biol Chem. 1998 May 15;273(20):12378-82 PMID: 9575191
  19. The atrial natriuretic factor promoter is a downstream target for Nkx-2.5 in the myocardium.
    Mol Cell Biol. 1996 Sep;16(9):4648-55 PMID: 8756621
  20. Mitogen-activated protein kinases mediate changes in gene expression, but not cytoskeletal organization associated with cardiac muscle cell hypertrophy.
    J Cell Biol. 1994 Sep;126(6):1565-72 PMID: 8089186
  21. Cellular stresses differentially activate c-Jun N-terminal protein kinases and extracellular signal-regulated protein kinases in cultured ventricular myocytes.
    J Biol Chem. 1995 Dec 15;270(50):29710-7 PMID: 8530360
  22. The MEKK-JNK pathway is stimulated by alpha1-adrenergic receptor and ras activation and is associated with in vitro and in vivo cardiac hypertrophy.
    J Biol Chem. 1997 May 30;272(22):14057-61 PMID: 9162028
  23. Cardiotrophin-1. Biological activities and binding to the leukemia inhibitory factor receptor/gp130 signaling complex.
    J Biol Chem. 1995 May 5;270(18):10915-22 PMID: 7738033
  24. Physiological effects of adenoviral gene transfer of sarcoplasmic reticulum calcium ATPase in isolated rat myocytes.
    Circulation. 1997 Jan 21;95(2):423-9 PMID: 9008460
  25. Inhibition of a signaling pathway in cardiac muscle cells by active mitogen-activated protein kinase kinase.
    Mol Biol Cell. 1995 Nov;6(11):1479-90 PMID: 8589450
  26. GATA4: a novel transcriptional regulator of cardiac hypertrophy?
    Circulation. 1997 Dec 2;96(11):3833-5 PMID: 9403603
  27. The cardiac tissue-restricted homeobox protein Csx/Nkx2.5 physically associates with the zinc finger protein GATA4 and cooperatively activates atrial natriuretic factor gene expression.
    Mol Cell Biol. 1998 Jun;18(6):3120-9 PMID: 9584153
  28. MAP kinase- and Rho-dependent signals interact to regulate gene expression but not actin morphology in cardiac muscle cells.
    EMBO J. 1997 Apr 15;16(8):1888-900 PMID: 9155015
  29. Opposing effects of Jun kinase and p38 mitogen-activated protein kinases on cardiomyocyte hypertrophy.
    Mol Cell Biol. 1998 Jun;18(6):3518-26 PMID: 9584192
  30. Induction of mitogen-activated protein kinase phosphatase 1 by the stress-activated protein kinase signaling pathway but not by extracellular signal-regulated kinase in fibroblasts.
    J Biol Chem. 1996 Jan 12;271(2):639-42 PMID: 8557667
  31. Autocrine release of angiotensin II mediates stretch-induced hypertrophy of cardiac myocytes in vitro.
    Cell. 1993 Dec 3;75(5):977-84 PMID: 8252633
  32. Mechanical stretch activates the stress-activated protein kinases in cardiac myocytes.
    FASEB J. 1996 Apr;10(5):631-6 PMID: 8621062
  33. Cardiac hypertrophy induced by mitogen-activated protein kinase kinase 7, a specific activator for c-Jun NH2-terminal kinase in ventricular muscle cells.
    J Biol Chem. 1998 Mar 6;273(10):5423-6 PMID: 9488659
  34. HRas-dependent pathways can activate morphological and genetic markers of cardiac muscle cell hypertrophy.
    J Biol Chem. 1993 Jan 25;268(3):2244-9 PMID: 8420993
  35. Activation of the novel stress-activated protein kinase SAPK4 by cytokines and cellular stresses is mediated by SKK3 (MKK6); comparison of its substrate specificity with that of other SAP kinases.
    EMBO J. 1997 Jun 16;16(12):3563-71 PMID: 9218798
  36. Growth factors induce nuclear translocation of MAP kinases (p42mapk and p44mapk) but not of their activator MAP kinase kinase (p45mapkk) in fibroblasts.
    J Cell Biol. 1993 Sep;122(5):1079-88 PMID: 8394845
  37. Chronic endothelin receptor blockade attenuates progressive ventricular dilation and improves cardiac function in rats with myocardial infarction: possible involvement of myocardial endothelin system in ventricular remodeling.
    Circulation. 1997 Dec 2;96(11):3963-73 PMID: 9403621
  38. Structure of the DNA-binding domains from NFAT, Fos and Jun bound specifically to DNA.
    Nature. 1998 Mar 5;392(6671):42-8 PMID: 9510247
  39. Mek1 phosphorylation site mutants activate Raf-1 in NIH 3T3 cells.
    J Biol Chem. 1996 Dec 6;271(49):31612-8 PMID: 8940180
  40. The stress-activated protein kinase pathway mediates cell death following injury induced by cis-platinum, UV irradiation or heat.
    Curr Biol. 1996 May 1;6(5):606-13 PMID: 8805279
  41. A calcineurin-dependent transcriptional pathway for cardiac hypertrophy.
    Cell. 1998 Apr 17;93(2):215-28 PMID: 9568714
  42. Angiotensin II stimulates c-Jun NH2-terminal kinase in cultured cardiac myocytes of neonatal rats.
    Circ Res. 1997 Jan;80(1):139-46 PMID: 8978332
  43. Role of SAPK/ERK kinase-1 in the stress-activated pathway regulating transcription factor c-Jun.
    Nature. 1994 Dec 22-29;372(6508):794-8 PMID: 7997269
  44. GTPase-deficient G alpha 16 and G alpha q induce PC12 cell differentiation and persistent activation of cJun NH2-terminal kinases.
    Mol Cell Biol. 1996 Feb;16(2):648-56 PMID: 8552093
  45. The stress-activated protein kinases are major c-Jun amino-terminal kinases activated by ischemia and reperfusion.
    J Biol Chem. 1994 Oct 21;269(42):26546-51 PMID: 7929379
  46. Transcriptional squelching re-examined.
    Nature. 1997 Nov 27;390(6658):349-50 PMID: 9389473
  47. Stimulation of the stress-activated mitogen-activated protein kinase subfamilies in perfused heart. p38/RK mitogen-activated protein kinases and c-Jun N-terminal kinases are activated by ischemia/reperfusion.
    Circ Res. 1996 Aug;79(2):162-73 PMID: 8755992
  48. A role for the p38 mitogen-activated protein kinase pathway in myocardial cell growth, sarcomeric organization, and cardiac-specific gene expression.
    J Cell Biol. 1997 Oct 6;139(1):115-27 PMID: 9314533
  49. Endothelin ETA receptor antagonist blocks cardiac hypertrophy provoked by hemodynamic overload.
    Circulation. 1994 May;89(5):2198-203 PMID: 8181145
  50. The stress-activated protein kinase subfamily of c-Jun kinases.
    Nature. 1994 May 12;369(6476):156-60 PMID: 8177321
  51. Protein measurement with the Folin phenol reagent.
    J Biol Chem. 1951 Nov;193(1):265-75 PMID: 14907713
  52. Role of p38 and JNK mitogen-activated protein kinases in the activation of ternary complex factors.
    Mol Cell Biol. 1997 May;17(5):2360-71 PMID: 9111305
  53. Sounding the alarm: protein kinase cascades activated by stress and inflammation.
    J Biol Chem. 1996 Oct 4;271(40):24313-6 PMID: 8798679
  54. Negative effect of the transcriptional activator GAL4.
    Nature. 1988 Aug 25;334(6184):721-4 PMID: 3412449
  55. JNK is involved in signal integration during costimulation of T lymphocytes.
    Cell. 1994 Jun 3;77(5):727-36 PMID: 8205621
  56. Dissociation of p44 and p42 mitogen-activated protein kinase activation from receptor-induced hypertrophy in neonatal rat ventricular myocytes.
    J Biol Chem. 1996 Apr 5;271(14):8452-7 PMID: 8626545
  57. Phosphorylation of c-jun mediated by MAP kinases.
    Nature. 1991 Oct 17;353(6345):670-4 PMID: 1922387
  58. Endothelin-1 and its binding sites are upregulated in pressure overload cardiac hypertrophy.
    Am J Physiol. 1995 May;268(5 Pt 2):H2084-91 PMID: 7771559
  59. Mechanical stretch rapidly activates multiple signal transduction pathways in cardiac myocytes: potential involvement of an autocrine/paracrine mechanism.
    EMBO J. 1993 Apr;12(4):1681-92 PMID: 8385610
  60. Raf-1 kinase activity is necessary and sufficient for gene expression changes but not sufficient for cellular morphology changes associated with cardiac myocyte hypertrophy.
    J Biol Chem. 1994 Dec 2;269(48):30580-6 PMID: 7982977
  61. Stress-activated protein kinases in cardiovascular disease.
    Circ Res. 1996 Jun;78(6):947-53 PMID: 8635244
  62. Control of cardiac gene expression by mechanical stress.
    Annu Rev Physiol. 1993;55:55-75 PMID: 8466185
Article Info
Journal
The Journal of clinical investigation
Abbr.
J Clin Invest
ISSN
0021-9738
Published
1998-10-01
Pages
1311-20
Language
English
Region
United States
NLM ID
7802877
PMCID
PMC508978
Subset
IM
Grants
NIGMS NIH HHS · GM46577 · United States
NHLBI NIH HHS · HL50361 · United States
NHLBI NIH HHS · HL57623 · United States
Analysis Services
Analysis Services

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