4.7 Article

Echinochrome A Increases Mitochondrial Mass and Function by Modulating Mitochondrial Biogenesis Regulatory Genes

Journal

MARINE DRUGS
Volume 12, Issue 8, Pages 4602-4615

Publisher

MDPI
DOI: 10.3390/md12084602

Keywords

echinochrome A; mitochondrial biogenesis; oxygen consumption rate

Funding

  1. Priority Research Centers Program through the National Research Foundation of Korea (NRF) - Ministry of Education, Science, and Technology, Republic of Korea [2010-0020224, 2012R1A2A1A03007595, 2011-0028925]
  2. Program Far East of the Presidium of the Russian Academy of Sciences

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Echinochrome A (Ech A) is a natural pigment from sea urchins that has been reported to have antioxidant properties and a cardio protective effect against ischemia reperfusion injury. In this study, we ascertained whether Ech A enhances the mitochondrial biogenesis and oxidative phosphorylation in rat cardio myoblast H9c2 cells. To study the effects of Ech A on mitochondrial biogenesis, we measured mitochondrial mass, level of oxidative phosphorylation, and mitochondrial biogenesis regulatory gene expression. Ech A treatment did not induce cytotoxicity. However, Ech A treatment enhanced oxygen consumption rate and mitochondrial ATP level. Likewise, Ech A treatment increased mitochondrial contents in H9c2 cells. Furthermore, Ech A treatment up-regulated biogenesis of regulatory transcription genes, including proliferator-activated receptor gamma co-activator (PGC)-1 alpha, estrogen-related receptor (ERR)-alpha, peroxisome proliferator-activator receptor (PPAR)-gamma, and nuclear respiratory factor (NRF)-1 and such mitochondrial transcription regulatory genes as mitochondrial transcriptional factor A (TFAM), mitochondrial transcription factor B2 (TFB2M), mitochondrial DNA direct polymerase (POLMRT), single strand binding protein (SSBP) and Tu translation elongation factor (TUFM). In conclusion, these data suggest that Ech A is a potentiated marine drug which enhances mitochondrial biogenesis.

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