Sphingosine‐1‐Phosphate Receptor 1 Regulates Cardiac Function by Modulating Ca2+ Sensitivity and Na+/H+ Exchange and Mediates Protection by Ischemic Preconditioning. Issue 5 (May 2016)
- Record Type:
- Journal Article
- Title:
- Sphingosine‐1‐Phosphate Receptor 1 Regulates Cardiac Function by Modulating Ca2+ Sensitivity and Na+/H+ Exchange and Mediates Protection by Ischemic Preconditioning. Issue 5 (May 2016)
- Main Title:
- Sphingosine‐1‐Phosphate Receptor 1 Regulates Cardiac Function by Modulating Ca2+ Sensitivity and Na+/H+ Exchange and Mediates Protection by Ischemic Preconditioning
- Authors:
- Keul, Petra
van Borren, Marcel M. G. J.
Ghanem, Alexander
Müller, Frank Ulrich
Baartscheer, Antonius
Verkerk, Arie O.
Stümpel, Frank
Schulte, Jan Sebastian
Hamdani, Nazha
Linke, Wolfgang A.
van Loenen, Pieter
Matus, Marek
Schmitz, Wilhelm
Stypmann, Jörg
Tiemann, Klaus
Ravesloot, Jan‐Hindrik
Alewijnse, Astrid E.
Hermann, Sven
Spijkers, Léon J. A.
Hiller, Karl‐Heinz
Herr, Deron
Heusch, Gerd
Schäfers, Michael
Peters, Stephan L. M.
Chun, Jerold
Levkau, Bodo - Abstract:
- Abstract : Background: Sphingosine‐1‐phosphate plays vital roles in cardiomyocyte physiology, myocardial ischemia–reperfusion injury, and ischemic preconditioning. The function of the cardiomyocyte sphingosine‐1‐phosphate receptor 1 (S1P1 ) in vivo is unknown. Methods and Results: Cardiomyocyte‐restricted deletion of S1P1 in mice (S1P1 α MHCC re ) resulted in progressive cardiomyopathy, compromised response to dobutamine, and premature death. Isolated cardiomyocytes from S1P1 α MHCC re mice revealed reduced diastolic and systolic Ca 2+ concentrations that were secondary to reduced intracellular Na + and caused by suppressed activity of the sarcolemmal Na + /H + exchanger NHE‐1 in the absence of S1P1 . This scenario was successfully reproduced in wild‐type cardiomyocytes by pharmacological inhibition of S1P1 or sphingosine kinases. Furthermore, Sarcomere shortening of S1P1 α MHCC re cardiomyocytes was intact, but sarcomere relaxation was attenuated and Ca 2+ sensitivity increased, respectively. This went along with reduced phosphorylation of regulatory myofilament proteins such as myosin light chain 2, myosin‐binding protein C, and troponin I. In addition, S1P1 mediated the inhibitory effect of exogenous sphingosine‐1‐phosphate on β‐adrenergic–induced cardiomyocyte contractility by inhibiting the adenylate cyclase. Furthermore, ischemic precondtioning was abolished in S1P1 α MHCC re mice and was accompanied by defective Akt activation during preconditioning. Conclusions:Abstract : Background: Sphingosine‐1‐phosphate plays vital roles in cardiomyocyte physiology, myocardial ischemia–reperfusion injury, and ischemic preconditioning. The function of the cardiomyocyte sphingosine‐1‐phosphate receptor 1 (S1P1 ) in vivo is unknown. Methods and Results: Cardiomyocyte‐restricted deletion of S1P1 in mice (S1P1 α MHCC re ) resulted in progressive cardiomyopathy, compromised response to dobutamine, and premature death. Isolated cardiomyocytes from S1P1 α MHCC re mice revealed reduced diastolic and systolic Ca 2+ concentrations that were secondary to reduced intracellular Na + and caused by suppressed activity of the sarcolemmal Na + /H + exchanger NHE‐1 in the absence of S1P1 . This scenario was successfully reproduced in wild‐type cardiomyocytes by pharmacological inhibition of S1P1 or sphingosine kinases. Furthermore, Sarcomere shortening of S1P1 α MHCC re cardiomyocytes was intact, but sarcomere relaxation was attenuated and Ca 2+ sensitivity increased, respectively. This went along with reduced phosphorylation of regulatory myofilament proteins such as myosin light chain 2, myosin‐binding protein C, and troponin I. In addition, S1P1 mediated the inhibitory effect of exogenous sphingosine‐1‐phosphate on β‐adrenergic–induced cardiomyocyte contractility by inhibiting the adenylate cyclase. Furthermore, ischemic precondtioning was abolished in S1P1 α MHCC re mice and was accompanied by defective Akt activation during preconditioning. Conclusions: Tonic S1P1 signaling by endogenous sphingosine‐1‐phosphate contributes to intracellular Ca 2+ homeostasis by maintaining basal NHE‐1 activity and controls simultaneously myofibril Ca 2+ sensitivity through its inhibitory effect on adenylate cyclase. Cardioprotection by ischemic precondtioning depends on intact S1P1 signaling. These key findings on S1P1 functions in cardiac physiology may offer novel therapeutic approaches to cardiac diseases. … (more)
- Is Part Of:
- Journal of the American Heart Association. Volume 5:Issue 5(2016)
- Journal:
- Journal of the American Heart Association
- Issue:
- Volume 5:Issue 5(2016)
- Issue Display:
- Volume 5, Issue 5 (2016)
- Year:
- 2016
- Volume:
- 5
- Issue:
- 5
- Issue Sort Value:
- 2016-0005-0005-0000
- Page Start:
- n/a
- Page End:
- n/a
- Publication Date:
- 2016-05
- Subjects:
- calcium sensitization -- heart failure -- ischemia reperfusion injury -- Na+/H+ exchanger -- preconditioning -- signal transduction -- sphingosine -- sphingosine‐1‐phosphate
Heart -- Diseases -- Periodicals
Cardiovascular system -- Diseases -- Periodicals
Cerebrovascular disease -- Periodicals
Cardiology -- Periodicals
616.1 - Journal URLs:
- http://jaha.ahajournals.org ↗
http://onlinelibrary.wiley.com/journal/10.1002/(ISSN)2047-9980 ↗
http://onlinelibrary.wiley.com/ ↗ - DOI:
- 10.1161/JAHA.116.003393 ↗
- Languages:
- English
- ISSNs:
- 2047-9980
- Deposit Type:
- Legaldeposit
- View Content:
- Available online (eLD content is only available in our Reading Rooms) ↗
- Physical Locations:
- British Library DSC - BLDSS-3PM
British Library HMNTS - ELD Digital store - Ingest File:
- 2043.xml