4.7 Article

Sphingosine-1-phosphate reduces ischaemia-reperfusion injury by phosphorylating the gap junction protein Connexin43

Journal

CARDIOVASCULAR RESEARCH
Volume 109, Issue 3, Pages 385-396

Publisher

OXFORD UNIV PRESS
DOI: 10.1093/cvr/cvw004

Keywords

Sphingosine-1-phosphate; Ischaemia-reperfusion injury; Connexin43

Funding

  1. Swiss National Science Foundation [310030_143343/1, 310030_162579/1, 310030_152639/1]
  2. Swiss Life Foundation
  3. Schmidheiny Foundation
  4. Fondation Prevot
  5. Swiss Heart Foundation
  6. US National Institutes of Health [GM55632]
  7. Danish National Research Foundation
  8. Danish Research Council [1331-00337B, 09-073571]
  9. Novo Nordisk Foundation
  10. Lundbeck Foundation
  11. Lundbeck Foundation [R126-2012-12400] Funding Source: researchfish
  12. Novo Nordisk Fonden [NNF13OC0003898] Funding Source: researchfish

Ask authors/readers for more resources

Increasing evidence points to lipoprotein composition rather than reverse cholesterol transport in the cardioprotective properties of high-density lipoproteins (HDLs). HDL binding to receptors at the surface of cardiomyocytes activates signalling pathways promoting survival, but downstream targets are largely unknown. Here, we investigate the pathways by which the sphingosine-1-phosphate (S1P) constituent of HDL limits cell death induced by cardiac ischaemia-reperfusion (I/R). Apolipoprotein M (ApoM) transgenic (Apom-Tg) mice, in which plasma S1P is increased by 296%, and wild-type (WT) mice were subjected to in vivo I/R. Infarct size, neutrophil infiltration into the infarcted area, and serum Troponin I were less pronounced in Apom-Tg mice. In vitro experiments suggest that this cardioprotection depends on direct effects of S1P on cardiomyocytes, whereas leucocyte recruitment seems only indirectly affected. Importantly, short-term S1P treatment at the onset of reperfusion was sufficient to reduce I/R injury in isolated perfused hearts. Mechanistic in vitro and ex vivo studies revealed that 5 min of S1P treatment induced phosphorylation of the gap junction protein Connexin43 (Cx43) on Serine368 (S368), which was mediated by S1P2 and S1P3, but not by S1P1, receptors in cardiomyocytes. Finally, S1P-induced reduction of infarct size after ex vivo I/R was lost in hearts of mice with a truncated C-terminus of Cx43 (Cx43(K258/KO)) or in which the S368 is mutated to a non-phosphorylatable alanine (Cx43(S368A/S368A)). Our study reveals an important molecular pathway by which modulating the apoM/S1P axis has a therapeutic potential in the fight against I/R injury in the heart.

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