MDR1/P-glycoprotein function. I. Effect of hypotonicity and inhibitors on rhodamine 123 exclusion
J. L. Weaver, L. McKinney, P. V. Schoenlein, S. Goldenberg, M. M. Gottesman and A. Aszalos Division of Research and Testing, Food and Drug Administration, Laurel, Maryland 20708, USA. The MDR1 protein (P-glycoprotein) is a membrane ATPase whose expression results in resistance to several anti-tumor...
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Veröffentlicht in: | American Journal of Physiology: Cell Physiology 1996-05, Vol.270 (5), p.C1447-C1452 |
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Zusammenfassung: | J. L. Weaver, L. McKinney, P. V. Schoenlein, S. Goldenberg, M. M. Gottesman and A. Aszalos
Division of Research and Testing, Food and Drug Administration, Laurel, Maryland 20708, USA.
The MDR1 protein (P-glycoprotein) is a membrane ATPase whose expression
results in resistance to several anti-tumor drugs. It has been proposed
that the MDR1 protein, in addition to its pumplike properties, can function
as (Gill et al. Cell 71: 23-32, 1992; Altenberg et al. Cancer Res.
54:618-622, 1994) or mediate the activity of (Hardy et al. EMBO J. 14:
68-75, 1995) a hypotonic stress-induced Cl- current. In addition, one study
found that drug transport and Cl- channel-associated functions of MRD1 were
separable and mutually exclusive and that, when cells were swelled, the
MDR1 protein could not transport substrate. This hypothesis was tested in
four pairs of isogenic cell lines with MDR1 transfectants expression
8,000-55,000 MDR1 antibody binding sites per cell. Cytoplasmic exclusion of
rhodamine 123 was used as an indicator of MDR1 function to measure the
effect of hypotonic stress, MDR1 inhibitors, and Cl- channel blockers on
MRD1 transport function. It was found that MDR1 activity and its inhibition
by cyclosporine A or flufenamic acid were unaffected by hypotonicity alone
or in combination with Cl- channel blockers. |
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ISSN: | 0363-6143 0002-9513 1522-1563 |
DOI: | 10.1152/ajpcell.1996.270.5.c1447 |