Abstract

Arsenic-resistant cells (R15), derived from a human lung adenocarcinoma cell line (CL3), were 10-fold more resistant to sodium arsenite (As(III)). Because R15 cells accumulated less arsenic than parental CL3 cells, this arsenic resistance may be due to higher efflux and/or lower uptake of As(III). We therefore compared expression of the multidrug resistance-associated proteins MRP1, MRP2, and MRP3 in these two cell lines. MRP2 expression was 5-fold higher in R15 cells than in CL3 cells, whereas MRP1 and MRP3 expression levels were similar. Furthermore, verapamil and cyclosporin A, inhibitors of multidrug resistance transporters, significantly reduced the efflux of arsenic from R15. Thus, increased arsenic extrusion by MRP2 may contribute to arsenic resistance in R15 cells. We also examined the expression of several aquaglyceroporins (AQPs), which mediate As(III) uptake by cells. Little AQP7 or AQP9 mRNA was detected by reverse transcription-PCR in either cell line, whereas AQP3 mRNA expression was 2-fold lower in R15 cells than in CL3 cells. When AQP3 expression in CL3 cells was knocked down by RNA interference, CL3 cells accumulated less arsenic and became more resistant to As(III). Conversely, overexpression of AQP3 in human embryonic kidney 293T cells increased arsenic accumulation, and the cells were more susceptible to As(III) than 293T cells transfected with vector alone. These results suggest that AQP3 is involved in As(III) accumulation. Taken together, our results suggest that enhanced expression of MRP2 and lower expression of AQP3 are responsible for lower arsenic accumulation in arsenic-resistant R15 cells.

Highlights

  • Similar to other reports [22, 39], our results suggest that MRP2 has a crucial role in eliminating arsenic from R15 cells

  • Real-time quantitative PCR and Western blotting revealed no difference in the expression of OATP-C, an arsenic transporter that mediates the uptake of GSH conjugates of arsenite, in CL3 and R15 cells [31]

  • We previously demonstrated that HO-1 is up-regulated and cyclooxygenase-2 (COX-2) is down-regulated in R15 cells [15, 41]

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Summary

Introduction

TTC ATG CAG CCT GAG GGA GCA GAA AAG GG-3Ј Arsenic accumulation in R15 cells reached a steady state after 60 min and did not increase significantly thereafter (Fig. 2A). Overexpression of MRP2 in Arsenic-resistant R15 Cells—We evaluated the mRNA and protein levels of efflux transporters in CL3 and R15 cells using real-time quantitative PCR and Western blotting.

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