Cargando…

Involvement of the Multidrug Resistance Protein 3 in Drug Sensitivity and Its Expression in Human Glioma

The multidrug resistance protein (MRP) family belongs to the ATP‐binding cassette superfamily (ABC) of transporters, which are involved in ATP‐dependent transport of hydrophobic compounds. One of the MRP family, MRP1, is partially associated with the multidrug resistance phe‐notype in brain tumors....

Descripción completa

Detalles Bibliográficos
Autores principales: Haga, Sei, Hinoshita, Eiji, Ikezaki, Kiyonobu, Fukui, Masashi, Scheffer, George L., Uchiumi, Takeshi, Kuwano, Michihiko
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Blackwell Publishing Ltd 2001
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5926688/
https://www.ncbi.nlm.nih.gov/pubmed/11223551
http://dx.doi.org/10.1111/j.1349-7006.2001.tb01084.x
_version_ 1783318954838589440
author Haga, Sei
Hinoshita, Eiji
Ikezaki, Kiyonobu
Fukui, Masashi
Scheffer, George L.
Uchiumi, Takeshi
Kuwano, Michihiko
author_facet Haga, Sei
Hinoshita, Eiji
Ikezaki, Kiyonobu
Fukui, Masashi
Scheffer, George L.
Uchiumi, Takeshi
Kuwano, Michihiko
author_sort Haga, Sei
collection PubMed
description The multidrug resistance protein (MRP) family belongs to the ATP‐binding cassette superfamily (ABC) of transporters, which are involved in ATP‐dependent transport of hydrophobic compounds. One of the MRP family, MRP1, is partially associated with the multidrug resistance phe‐notype in brain tumors. In this study, we asked whether another MRP family gene, MRP3, could affect drug sensitivity to anticancer agents in human glioma cell lines and clinical glioma specimens. We first produced two antisense transfectants by introduction of antisense MRP3 cDNA into the glioma cell line NHG2, which endogenously expresses MRP3. The two MRP3 antisense transfectants showed 2‐ to 5‐fold increases in drug sensitivity to etoposide and cisplatin compared with NHG2 cells, but their sensitivity to vincristine or nitrosourea was not changed. Two MRP3 cDNA sense transfectants of pig kidney cell lines showed 4‐ to 6‐fold drug resistance to etoposide, but only 1.4‐ to 1.5‐fold to cisplatin. We next compared the mRNA levels of four ABC transporters, multi‐drug resistance 1 (MDR1), MRP1, MRP2 and MRP3 in clinical samples, including 34 patients with gliomas, by quantitative RT‐PCR analysis. In some of the clinical samples, increased expression of MRP1 and MRP3 was apparent in malignant gliomas. In situ hybridization revealed that glioma cells were stained with MRP3 probe. MRP3 may modulate drug sensitivity to certain anticancer agents in human gliomas.
format Online
Article
Text
id pubmed-5926688
institution National Center for Biotechnology Information
language English
publishDate 2001
publisher Blackwell Publishing Ltd
record_format MEDLINE/PubMed
spelling pubmed-59266882018-05-11 Involvement of the Multidrug Resistance Protein 3 in Drug Sensitivity and Its Expression in Human Glioma Haga, Sei Hinoshita, Eiji Ikezaki, Kiyonobu Fukui, Masashi Scheffer, George L. Uchiumi, Takeshi Kuwano, Michihiko Jpn J Cancer Res Article The multidrug resistance protein (MRP) family belongs to the ATP‐binding cassette superfamily (ABC) of transporters, which are involved in ATP‐dependent transport of hydrophobic compounds. One of the MRP family, MRP1, is partially associated with the multidrug resistance phe‐notype in brain tumors. In this study, we asked whether another MRP family gene, MRP3, could affect drug sensitivity to anticancer agents in human glioma cell lines and clinical glioma specimens. We first produced two antisense transfectants by introduction of antisense MRP3 cDNA into the glioma cell line NHG2, which endogenously expresses MRP3. The two MRP3 antisense transfectants showed 2‐ to 5‐fold increases in drug sensitivity to etoposide and cisplatin compared with NHG2 cells, but their sensitivity to vincristine or nitrosourea was not changed. Two MRP3 cDNA sense transfectants of pig kidney cell lines showed 4‐ to 6‐fold drug resistance to etoposide, but only 1.4‐ to 1.5‐fold to cisplatin. We next compared the mRNA levels of four ABC transporters, multi‐drug resistance 1 (MDR1), MRP1, MRP2 and MRP3 in clinical samples, including 34 patients with gliomas, by quantitative RT‐PCR analysis. In some of the clinical samples, increased expression of MRP1 and MRP3 was apparent in malignant gliomas. In situ hybridization revealed that glioma cells were stained with MRP3 probe. MRP3 may modulate drug sensitivity to certain anticancer agents in human gliomas. Blackwell Publishing Ltd 2001-02 /pmc/articles/PMC5926688/ /pubmed/11223551 http://dx.doi.org/10.1111/j.1349-7006.2001.tb01084.x Text en
spellingShingle Article
Haga, Sei
Hinoshita, Eiji
Ikezaki, Kiyonobu
Fukui, Masashi
Scheffer, George L.
Uchiumi, Takeshi
Kuwano, Michihiko
Involvement of the Multidrug Resistance Protein 3 in Drug Sensitivity and Its Expression in Human Glioma
title Involvement of the Multidrug Resistance Protein 3 in Drug Sensitivity and Its Expression in Human Glioma
title_full Involvement of the Multidrug Resistance Protein 3 in Drug Sensitivity and Its Expression in Human Glioma
title_fullStr Involvement of the Multidrug Resistance Protein 3 in Drug Sensitivity and Its Expression in Human Glioma
title_full_unstemmed Involvement of the Multidrug Resistance Protein 3 in Drug Sensitivity and Its Expression in Human Glioma
title_short Involvement of the Multidrug Resistance Protein 3 in Drug Sensitivity and Its Expression in Human Glioma
title_sort involvement of the multidrug resistance protein 3 in drug sensitivity and its expression in human glioma
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5926688/
https://www.ncbi.nlm.nih.gov/pubmed/11223551
http://dx.doi.org/10.1111/j.1349-7006.2001.tb01084.x
work_keys_str_mv AT hagasei involvementofthemultidrugresistanceprotein3indrugsensitivityanditsexpressioninhumanglioma
AT hinoshitaeiji involvementofthemultidrugresistanceprotein3indrugsensitivityanditsexpressioninhumanglioma
AT ikezakikiyonobu involvementofthemultidrugresistanceprotein3indrugsensitivityanditsexpressioninhumanglioma
AT fukuimasashi involvementofthemultidrugresistanceprotein3indrugsensitivityanditsexpressioninhumanglioma
AT scheffergeorgel involvementofthemultidrugresistanceprotein3indrugsensitivityanditsexpressioninhumanglioma
AT uchiumitakeshi involvementofthemultidrugresistanceprotein3indrugsensitivityanditsexpressioninhumanglioma
AT kuwanomichihiko involvementofthemultidrugresistanceprotein3indrugsensitivityanditsexpressioninhumanglioma