Overexpression of human selenoprotein H in neuronal cells enhances mitochondrial biogenesis and function through activation of protein kinase A, protein kinase B, and cyclic adenosine monophosphate response element-binding protein pathway

被引:28
作者
Mehta, Suresh L. [1 ]
Mendelev, Natalia [1 ]
Kumari, Santosh [1 ]
Li, P. Andy [1 ,2 ]
机构
[1] N Carolina Cent Univ, Dept Pharmaceut Sci, Coll Art & Sci, BRITE, Durham, NC 27707 USA
[2] Ningxia Med Univ, Dept Pathol, Ningxia Key Lab Cerebrocranial Dis, Yinchuan 750004, Peoples R China
关键词
Akt; Mitochondria; Mitochondrial biogenesis; Protein kinase A; Protein kinase B PGC-1 alpha; Selenoprotein; Transfection; Ultraviolet irradiation; CREB-BINDING; GLUTATHIONE-PEROXIDASE; HUMAN PLASMA; COACTIVATOR; TRANSCRIPTION; FAMILY; DNA; IDENTIFICATION; HYDROPEROXIDE; RESPIRATION;
D O I
10.1016/j.biocel.2012.11.022
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Mitochondrial biogenesis is activated by nuclear encoded transcription co-activator peroxisome proliferator-activated receptor gamma coactivator-1 alpha (PGC-1 alpha), which is regulated by several upstream factors including protein kinase A and Akt/protein kinase B. We have previously shown that selenoprotein H enhances the levels of nuclear regulators for mitochondrial biogenesis, increases mitochondrial mass and improves mitochondrial respiratory rate, under physiological condition. Furthermore, overexpression of selenoprotein H protects neuronal HT22 cells from ultraviolet B irradiation-induced cell damage by lowering reactive oxygen species production, and inhibiting activation of caspase-3 and -9, as well as p53. The objective of this study is to identify the cell signaling pathways by which selenoprotein H initiates mitochondrial biogenesis. We first confirmed our previous observation that selenoprotein H transfected HT22 cells increased the protein levels of nuclear-encoded mitochondrial biogenesis factors, peroxisome proliferator-activated receptor gamma coactivator-1 alpha, nuclear respiratory factor 1 and mitochondrial transcription factor A. We then observed that total and phosphorylation of protein kinase A, Akt/protein kinase B and cyclic adenosine monophosphate response element-binding protein (CREB) were significantly increased in selenoprotein H transfected cells compared to vector transfected HT22 cells. To verify whether the observed stimulating effects on mitochondrial biogenesis pathways are caused by selenoprotein H and mediated through CREB, we knocked down selenoprotein H mRNA level using siRNA and inhibited CREB with napthol AS-E phosphate in selenoprotein H transfected cells and repeated the measurements of the aforementioned biomarkers. Our results revealed that silencing of selenoprotein H not only decreased the protein levels of PGC-1 alpha, nuclear respiratory factor 1 and mitochondrial transcription factor A, but also decreased the total and phosphorylation levels of protein kinase A, protein kinase B, and CREB. Similarly, CREB inhibition reduced CREB activation and PGC-1 alpha protein levels in selenoprotein H transfected cells. Moreover, selenoprotein H transfection increased the activity of mitochondrial complexes and prevented the ultraviolet B induced fall of mitochondrial membrane potential. We conclude that the effects of selenoprotein H on mitochondrial biogenesis and mitochondrial function are probably mediated through protein kinase A-CREB-PGC-1 alpha and Akt/protein kinase B-CREB-PGC-1 alpha pathways. (c) 2012 Elsevier Ltd. All rights reserved.
引用
收藏
页码:604 / 611
页数:8
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