Amplification and expression of genes associated with multidrug resistance in mammalian cells Journal Article


Authors: Scotto, K. W.; Biedler, J. L.; Melera, P. W.
Article Title: Amplification and expression of genes associated with multidrug resistance in mammalian cells
Abstract: In multidrug resistance, which is observed clinically and in tissue culture, cells that are challenged with certain cytotoxic drugs develop resistance not only to the selective agent but also to other, seemingly unrelated, agents. The multidrug-resistant phenotype is associated with DNA sequence amplification and with the overproduction of a number of cytosolic and membrane glycoproteins. The differential amplification and altered expression of at least two related genes, termed multidrug-resistant associated genes has been shown in multidrug-resistant Chinese hamster cells. In multidrug-resistant mouse and human cells, genes homologous to those in Chinese hamster cells are also amplified. The level of expression of these genes varied and did not correlate with their copy number. Furthermore, in Chinese hamster cells, the development of resistance to a single drug and multidrug resistance were closely related, but uncoupled, events. The overexpression of the multidrug-resistant genes was better correlated with the degree of resistance to the selective agent than it was with the extent of multidrug resistance.
Keywords: human cell; review; cytotoxic agent; nonhuman; animal cell; mouse; animal; mice; heredity; gene amplification; gene expression; cell line; vincristine; drug resistance; rna; gene expression regulation; cloning, molecular; dna; genetic engineering; daunorubicin; lung; dactinomycin; nucleic acid hybridization; glycoprotein; colchicine; mammal cell; cricetulus; human; priority journal; support, u.s. gov't, p.h.s.; hamsters; chinese hamster
Journal Title: Science
Volume: 232
Issue: 4751
ISSN: 0036-8075
Publisher: American Association for the Advancement of Science  
Date Published: 1986-05-09
Start Page: 751
End Page: 755
Language: English
DOI: 10.1126/science.2421411
PUBMED: 2421411
PROVIDER: scopus
DOI/URL:
Notes: Article -- Export Date: 18 August 2021 -- Source: Scopus
Altmetric
Citation Impact
BMJ Impact Analytics
MSK Authors
  1. June   Biedler
    83 Biedler