|  Help  |  About  |  Contact Us

Publication : Identification of two nuclear protein binding sites and their role in the regulation of the murine multidrug resistance mdr1a promoter.

First Author  Cohen D Year  1994
Journal  DNA Cell Biol Volume  13
Issue  6 Pages  641-9
PubMed ID  7912938 Mgi Jnum  J:19107
Mgi Id  MGI:67307 Doi  10.1089/dna.1994.13.641
Citation  Cohen D, et al. (1994) Identification of two nuclear protein binding sites and their role in the regulation of the murine multidrug resistance mdr1a promoter. DNA Cell Biol 13(6):641-9
abstractText  Multidrug resistance genes (mdr) that encode P-glycoproteins (P-gp) are transcriptionally regulated in normal tissues and in some multidrug-resistant (MDR) cells. Several lines of evidence suggest that regulation of P-gp overexpression at the transcriptional level is also important in human tumors. In murine MDR cells, mdr1a and/or mdr1b genes are overexpressed and P-gp isoforms are overproduced. To identify the mdr1a promoter regions that are required for transcription, the promoter has been linked to the chloramphenicol acetyltransferase (CAT) gene in transient expression vectors. 5'-Deletions of the promoter sequences have demonstrated that the region between -155 to +89 bp is crucial for basal activity of the mdr1a gene. DNase I footprinting, methylation interference, and gel retardation assays identified two nuclear protein binding sites within these sequences. One of the nuclear protein binding sites contains an 11-bp DNA sequence that interacts with nuclear protein(s) and is conserved in the promoters of the murine mdr1a and mdr1b, hamster pgp1, and human MDR1 genes. The conserved SP1 site (5'-GGGCGGG-3') that is present further downstream was shown to interact with its nuclear factor. These observations suggest that at least part of mdr gene transcriptional regulation is mediated by conserved mdr cis-regulatory elements and common nuclear factors.
Quick Links:
 
Quick Links:
 

Expression

Publication --> Expression annotations

 

Other

1 Bio Entities

Trail: Publication

0 Expression