Abstract

RNA helicase A (RHA) is a member of the DEAD/H family of RNA helicases and unwinds duplex RNA and DNA. Recent studies have shown that RHA regulates the activity of gene promoters. However, little information is available about the in vivo relevance of RHA in the regulation of natural genes. We previously characterized a nuclear protein (MEF1) that binds to the proximal promoter of the multidrug resistance gene (MDR1) and up-regulates the promoter activity. In the present study, we isolated and identified RHA as a component of the MEF1 complex by using DNA-affinity chromatography and mass spectrometry. The antibody against RHA specifically disrupted the complex formation in electrophoretic mobility shift assay, confirming the identity of RHA. Western blotting showed that RHA in drug-resistant cells had a higher molecular weight than that in drug-sensitive cells. Similar results were obtained when FLAG-tagged RHA was overexpressed in these cells. This size difference probably reflects posttranslational modification(s) of RHA in drug-resistant cells. Chromatin immunoprecipitation revealed that RHA occupies the MDR1 promoter in vivo. Overexpression of RHA enhanced expression of the MDR1 promoter/reporter construct and endogenous P-glycoprotein (P-gp), the MDR1 gene product, and increased drug resistance of drug-resistant cells but not the drug-sensitive counterpart. Introduction of short interfering RNA targeting the RHA gene sequence selectively knocked-down RHA expression and concomitantly reduced P-gp level. Thus, our study demonstrates, for the first time, the involvement of RHA in up-regulation of the MDR1 gene. Interactions of RHA with other protein factors in the MEF1 complex bound to the promoter element may contribute to P-gp overexpression and multidrug resistance phenotype in drug-resistant cancer cells.

Highlights

  • Introduction of RNA helicase A (RHA) Expression Vector orshort interfering RNA (siRNA) into Cells by Electroporation—HL-60/Vinc cells (1 ϫ 106) suspended in 200 ␮l of serumfree medium were mixed with 4 ␮g of either pcDNA3 or pcDNA3-FLAG-RHA expression plasmid and electroporated in the Gene Pulser Xcell System (Bio-Rad) using the pre-set protocol for HL-60 cells

  • We report that RHA is a component of a multiprotein complex that interacts with the Ϫ118/Ϫ111 sequence, designated as a CAAT-like motif (26), in the MDR1 promoter of a drug-resistant cell line derived from acute myelogenous leukemia cell line HL-60 that is drug sensitive

  • RHA Is a Component of MEF1 Complex That Interacts with the CAAT-like Motif—Our laboratory has previously identified a novel cis-acting element, CAAT-like, in the proximal promoter of the MDR1 gene and characterized a nuclear protein, MEF1, present in the multidrug-resistant HL-60/VCR cells that binds to the CAAT-like sequence

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Summary

Introduction

Introduction of RHA Expression Vector orsiRNA into Cells by Electroporation—HL-60/Vinc cells (1 ϫ 106) suspended in 200 ␮l of serumfree medium were mixed with 4 ␮g of either pcDNA3 (empty vector) or pcDNA3-FLAG-RHA expression plasmid and electroporated in the Gene Pulser Xcell System (Bio-Rad) using the pre-set protocol for HL-60 cells. We previously characterized a nuclear protein (MEF1) that binds to the proximal promoter of the multidrug resistance gene (MDR1) and up-regulates the promoter activity.

Results
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