Homocysteine Restricts Copper Availability Leading to Suppression of Cytochrome C Oxidase Activity in Phenylephrine-Treated Cardiomyocytes

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Abstract

Cardiomyocyte hypertrophy induced by phenylephrine (PE) is accompanied by suppression of cytochrome c oxidase (CCO) activity, and copper (Cu) supplementation restores CCO activity and reverses the hypertrophy. The present study was aimed to understand the mechanism of PE-induced decrease in CCO activity. Primary cultures of neonatal rat cardiomyocytes were treated with PE at a final concentration of l00 μM in cultures for 72 h to induce cell hypertrophy. The CCO activity was determined by enzymatic assay and changes in CCO subunit COX-IV as well as copper chaperones for CCO (COX17, SCO2, and COX11) were determined by Western blotting. PE treatment increased both intracellular and extracellular homocysteine concentrations and decreased intracellular Cu concentrations. Studies in vitro found that homocysteine and Cu form complexes. Inhibition of the intracellular homocysteine synthesis in the PE-treated cardiomyocytes prevented the increase in the extracellular homocysteine concentration, retained the intracellular Cu concentration, and preserved the CCO activity. PE treatment decreased protein concentrations of the COX-IV, and the Cu chaperones COX17, COX11, and SCO2. These PE effects were prevented by either inhibition of the intracellular homocysteine synthesis or Cu supplementation. Therefore, PE-induced elevation of homocysteine restricts Cu availability through its interaction with Cu and suppression of Cu chaperones, leading to the decrease in CCO enzyme activity. © 2013 Zuo et al.

Figures

  • Figure 1. PE-induced changes in the intracellular (A) and extracellular homocysteine concentrations (B), and changes in the intracellular Cu concentrations (C) in primary cultures of neonatal rat cardiomyocytes. The cells were cultured in 10% FBS media for 24 h before medium change to serum-free media. The cells were then cultured for 72 h (Control), in the presence of 100 mM PE (PE), 1 mM Adox (Adox), or both PE and Adox (PE+Adox). The data were obtained from three independent experiments, and each experiment contains triplicate samples for each treatment. Values are means 6 SEM. * or # significantly different from control group and # significantly different from PE-treated group (P,0.05). doi:10.1371/journal.pone.0067549.g001
  • Figure 2. Changes in the CCO activity in the PE-treated primary cultures of neonatal rat cardiomyocytes. The cells were cultured and treated as the same as described for Fig 1. The data were obtained from three independent experiments, and each experiment contains triplicate samples for each treatment. Values are means 6 SEM. * significantly different from control group (P,0.05). doi:10.1371/journal.pone.0067549.g002
  • Figure 3. Immunoblots of COX17, COX11, SCO2 and COX-IV proteins from PE-treated primary cultures of neonatal rat cardiomyocytes and the effect of Adox. The cells were cultured and treated as the same as described for Fig 1. The bar graphs show the quantitative analysis of the intensity of immunoblots by densitometry. Values are means 6 SEM. * significantly different from control group (P,0.05). doi:10.1371/journal.pone.0067549.g003
  • Figure 4. Immunoblots of COX17, COX11, SCO2 and COX-IV proteins from the PE treated primary cultures of neonatal rat cardiomyocytes. Control (cultured for 72 h with non-PE or other treatment), PE (PE treated for 72 h), Cu (cultured without treatment for 48 h then treated with Cu for 24 h), and PE+Cu (PE treated for 48 h followed by Cu treatment for 24 h). The bar graphs show the quantitative analysis of the intensity of immunoblots by densitometry. Values are means 6 SEM. * significantly different from control group (P,0.05). doi:10.1371/journal.pone.0067549.g004

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Zuo, X., Dong, D., Sun, M., Xie, H., & Kang, Y. J. (2013). Homocysteine Restricts Copper Availability Leading to Suppression of Cytochrome C Oxidase Activity in Phenylephrine-Treated Cardiomyocytes. PLoS ONE, 8(6). https://doi.org/10.1371/journal.pone.0067549

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