Dual regulation of P-glycoprotein expression by Trichostatin A in cancer cell lines


Autoria(s): Mata Balaguer, Trinidad; Gómez Martínez, Ángeles; García Morales, Pilar; Lacueva Gómez, Javier; Calpena Rico, Rafael; Rocamora Reverte, Lourdes; López Riquelme, Natividad; Martínez Lacaci, Isabel; Ferragut, José A.; Saceda, Miguel
Contribuinte(s)

Universidad de Alicante. Departamento de Fisiología, Genética y Microbiología

Transducción de Señales en Bacterias

Data(s)

31/07/2012

31/07/2012

30/07/2012

Resumo

Background. It has been reported that the histone deacetylase inhibitor (iHDAc) trichostatin A (TSA) induces an increase in MDR1 gene transcription (ABCB1). This result would compromise the use of iHDACs in combination with other cytotoxic agents that are substrates of P-glycoprotein (Pgp). It has also been reported the use of alternative promoters by the ABCB1 gene and the existence of a traslational control of Pgp protein. Finally, the ABCB1 gene is located in a genetic locus with the nested gene RUNDC3B in the complementary DNA strand, raising the possibility that RUNDC3B expression could interfere with ABCB1 alternative promoter regulation. Methods. A combination of RT-PCR, real time RT-PCR, Western blot and drug accumulation assays by flow cytometry have been used in this study. Results. The iHDACs-induced increase in MDR1 mRNA levels is not followed by a subsequent increase in Pgp protein levels or activity in several pancreatic and colon carcinoma cell lines, suggesting a traslational control of Pgp in these cell lines. In addition, the MDR1 mRNA produced in these cell lines is shorter in its 5' end that the Pgp mRNA produced in cell lines expressing Pgp protein. The different size of the Pgp mRNA is due to the use of alternative promoters. We also demonstrate that these promoters are differentially regulated by TSA. The translational blockade of Pgp mRNA in the pancreatic carcinoma cell lines could be related to alterations in the 5' end of the MDR1 mRNA in the Pgp protein expressing cell lines. In addition, we demonstrate that the ABCB1 nested gene RUNDC3B expression although upregulated by TSA is independent of the ABCB1 alternative promoter used. Conclusions. The results show that the increase in MDR1 mRNA expression after iHDACs treatment is clinically irrelevant since this mRNA does not render an active Pgp protein, at least in colon and pancreatic cancer cell lines. Furthermore, we have demonstrated that TSA in fact, differentially regulates both ABCB1 promoters, downregulating the upstream promoter that is responsible for active P-glycoprotein expression. These results suggest that iHDACs such as TSA may in fact potentiate the effects of antitumoral drugs that are substrates of Pgp. Finally, we have also demonstrate that TSA upregulates RUNDC3B mRNA independently of the ABCB1 promoter in use.

This work was supported by Spanish Health Ministry grants FIS-PI050969 and FIS-PI080901 and FIBElx-06/09 and 07/14 to MS, and by Caja Murcia to TMB.

Identificador

MATA-BALAGUER, Trinidad, et al. “Dual regulation of P-glycoprotein expression by Trichostatin A in cancer cell lines”. BMC Molecular Biology, 2012, 13:25. ISSN 1471-2199 [provisional PDF]

1471-2199

http://hdl.handle.net/10045/23740

10.1186/1471-2199-13-25

Idioma(s)

eng

Publicador

BioMed Central

Relação

http://dx.doi.org/10.1186/1471-2199-13-25

Direitos

© 2012 Mata-Balaguer et al. ; licensee BioMed Central Ltd. This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.

info:eu-repo/semantics/openAccess

Palavras-Chave #PGP #TSA #Cancer #Genética #Bioquímica y Biología Molecular
Tipo

info:eu-repo/semantics/article