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Título
Mitochondrial genome depletion dysregulates bile acid‐ and paracetamol‐induced expression of the transporters Mdr1, Mrp1 and Mrp4 in liver cells
Autor(es)
Palabras clave
ABC proteins;
paracetamol
bile acid
cholestasis
drug toxicity
liver
mitochondria
multidrug resistance
retrograde control
rho cells
Clasificación UNESCO
3209 Farmacología
Fecha de publicación
2011
Editor
Wiley. British Pharmacological Society
Citación
Perez, M. J., Gonzalez‐Sanchez, E., Gonzalez‐Loyola, A., Gonzalez‐Buitrago, J. M., & Marin, J. J. G. (2011). Mitochondrial genome depletion dysregulates bile acid‐and paracetamol‐induced expression of the transporters Mdr1, Mrp1 and Mrp4 in liver cells. British journal of pharmacology, 162(8), 1686-1699.
Resumen
[EN] BACKGROUND AND PURPOSE
Mitochondria are involved in the toxicity of several compounds, retro-control of gene expression and apoptosis activation.
The effect of mitochondrial genome (mtDNA) depletion on changes in ABC transporter protein expression in response to bile
acids and paracetamol was investigated.
EXPERIMENTAL APPROACH
Hepa 1-6 mouse hepatoma cells with 70% decrease in 16S/18S rRNA ratio (Rho cells) were obtained by long-term treatment
with ethidium bromide.
KEY RESULTS
Spontaneous apoptosis and reactive oxygen species (ROS) generation were decreased in Rho cells. Following
glycochenodeoxycholic acid (GCDCA) or paracetamol, Rho cells generated less ROS and were more resistant to cell death.
Apoptosis induced by GCDCA and Fas was also reduced. The basal expression of Mdr1 was significantly enhanced, but this
was not further stimulated by GCDCA or paracetamol, as observed in wild-type (WT) cells. Basal expression of Mrp1 and
Mrp4 was similar in WT and Rho cells, whereas they were up-regulated only in WT cells after GCDCA or paracetamol, along
with the transcription factors Shp and Nrf2, but not Fxr or Pxr. Increased expression of Nrf2 was accompanied by its
enhanced nuclear translocation. Glycoursodeoxycholic acid failed to cause any of the effects observed for GCDCA or
paracetamol.
CONCLUSIONS AND IMPLICATIONS
The Nrf2-mediated pathway is partly independent of ROS production. Nuclear translocation of Nrf2 is insufficient to
up-regulate Mdr1, Mrp1 and Mrp4, which requires the participation of other regulatory element(s) whose activation
URI
ISSN
0007-1188
DOI
10.1111/j.1476-5381.2010.01174.x
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