Disturbance of copper homeostasis is a mechanism for homocysteine-induced vascular endothelial cell injury.
Elevation of serum homocysteine (Hcy) levels is a risk factor for cardiovascular diseases. Previous studies suggested that Hcy interferes with copper (Cu) metabolism in vascular endothelial cells. The present study was undertaken to test the hypothesis that Hcy-induced disturbance of Cu homeostasis...
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doaj-0d35a85598854ef780ba7c0eef6142ec2020-11-24T21:54:20ZengPublic Library of Science (PLoS)PLoS ONE1932-62032013-01-01810e7620910.1371/journal.pone.0076209Disturbance of copper homeostasis is a mechanism for homocysteine-induced vascular endothelial cell injury.Daoyin DongBiao WangWen YinXueqing DingJingjing YuY James KangElevation of serum homocysteine (Hcy) levels is a risk factor for cardiovascular diseases. Previous studies suggested that Hcy interferes with copper (Cu) metabolism in vascular endothelial cells. The present study was undertaken to test the hypothesis that Hcy-induced disturbance of Cu homeostasis leads to endothelial cell injury. Exposure of human umbilical vein endothelial cells (HUVECs) to concentrations of Hcy at 0.01, 0.1 or 1 mM resulted in a concentration-dependent decrease in cell viability and an increase in necrotic cell death. Pretreatment of the cells with a final concentration of 5 µM Cu in cultures prevented the effects of Hcy. Hcy decreased intracellular Cu concentrations. HPLC-ICP-MS analysis revealed that Hcy caused alterations in the distribution of intracellular Cu; more Cu was redistributed to low molecular weight fractions. ESI-Q-TOF detected the formation of Cu-Hcy complexes. Hcy also decreased the protein levels of Cu chaperone COX17, which was accompanied by a decrease in the activity of cytochrome c oxidase (CCO) and a collapse of mitochondrial membrane potential. These effects of Hcy were all preventable by Cu pretreatment. The study thus demonstrated that Hcy disturbs Cu homeostasis and limits the availability of Cu to critical molecules such as COX17 and CCO, leading to mitochondrial dysfunction and endothelial cell injury.http://europepmc.org/articles/PMC3799909?pdf=render |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Daoyin Dong Biao Wang Wen Yin Xueqing Ding Jingjing Yu Y James Kang |
spellingShingle |
Daoyin Dong Biao Wang Wen Yin Xueqing Ding Jingjing Yu Y James Kang Disturbance of copper homeostasis is a mechanism for homocysteine-induced vascular endothelial cell injury. PLoS ONE |
author_facet |
Daoyin Dong Biao Wang Wen Yin Xueqing Ding Jingjing Yu Y James Kang |
author_sort |
Daoyin Dong |
title |
Disturbance of copper homeostasis is a mechanism for homocysteine-induced vascular endothelial cell injury. |
title_short |
Disturbance of copper homeostasis is a mechanism for homocysteine-induced vascular endothelial cell injury. |
title_full |
Disturbance of copper homeostasis is a mechanism for homocysteine-induced vascular endothelial cell injury. |
title_fullStr |
Disturbance of copper homeostasis is a mechanism for homocysteine-induced vascular endothelial cell injury. |
title_full_unstemmed |
Disturbance of copper homeostasis is a mechanism for homocysteine-induced vascular endothelial cell injury. |
title_sort |
disturbance of copper homeostasis is a mechanism for homocysteine-induced vascular endothelial cell injury. |
publisher |
Public Library of Science (PLoS) |
series |
PLoS ONE |
issn |
1932-6203 |
publishDate |
2013-01-01 |
description |
Elevation of serum homocysteine (Hcy) levels is a risk factor for cardiovascular diseases. Previous studies suggested that Hcy interferes with copper (Cu) metabolism in vascular endothelial cells. The present study was undertaken to test the hypothesis that Hcy-induced disturbance of Cu homeostasis leads to endothelial cell injury. Exposure of human umbilical vein endothelial cells (HUVECs) to concentrations of Hcy at 0.01, 0.1 or 1 mM resulted in a concentration-dependent decrease in cell viability and an increase in necrotic cell death. Pretreatment of the cells with a final concentration of 5 µM Cu in cultures prevented the effects of Hcy. Hcy decreased intracellular Cu concentrations. HPLC-ICP-MS analysis revealed that Hcy caused alterations in the distribution of intracellular Cu; more Cu was redistributed to low molecular weight fractions. ESI-Q-TOF detected the formation of Cu-Hcy complexes. Hcy also decreased the protein levels of Cu chaperone COX17, which was accompanied by a decrease in the activity of cytochrome c oxidase (CCO) and a collapse of mitochondrial membrane potential. These effects of Hcy were all preventable by Cu pretreatment. The study thus demonstrated that Hcy disturbs Cu homeostasis and limits the availability of Cu to critical molecules such as COX17 and CCO, leading to mitochondrial dysfunction and endothelial cell injury. |
url |
http://europepmc.org/articles/PMC3799909?pdf=render |
work_keys_str_mv |
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