Mutational analysis of P-glycoprotein: Suppression of caspase activation in the absence of ATP-dependent drug efflux

96Citations
Citations of this article
34Readers
Mendeley users who have this article in their library.
Get full text

Abstract

P-glycoprotein (P-gp) can induce multidrug resistance (MDR) through the ATP-dependent efflux of chemotherapeutic agents. We have previously shown that P-gp can inhibit nondrug apoptotic stimuli by suppressing the activation of caspases. To determine if this additional activity is functionally linked to ATP hydrolysis, we expressed wild-type and ATPase-mutant P-gp and showed that cells expressing mutant P-gp could not efflux chemotherapeutic drugs but remained relatively resistant to apoptosis. CEM lymphoma cells expressing mutant P-gp treated with vincristine showed a decrease in the fraction of cells with apoptotic morphology, cytochrome c release from the mitochondria and suppression of caspase activation, yet still accumulated in mitosis and showed a loss of clonogenic potential. The loss of clonogenicity in vincristine-treated cells expressing mutant P-gp was associated with accumulation of cells in mitosis and the presence of multinucleated cells consistent with mitotic catastrophe. The antiapoptotic effect of mutant P-gp was not affected by antibodies that inhibit the efflux function of the protein. These data are consistent with a dual activity model for P-gp-induced MDR involving both ATPase-dependent drug efflux and ATPase-independent inhibition of apoptosis. The structure-f unction analyses described herein provide novel insight into the mechanisms of action of P-gp in mediating MDR. © 2004 Nature Publishing Group All rights reserved.

Cite

CITATION STYLE

APA

Tainton, K. M., Smyth, M. J., Jackson, J. T., Tanner, J. E., Cerruti, L., Jane, S. M., … Johnstone, R. W. (2004). Mutational analysis of P-glycoprotein: Suppression of caspase activation in the absence of ATP-dependent drug efflux. Cell Death and Differentiation, 11(9), 1028–1037. https://doi.org/10.1038/sj.cdd.4401440

Register to see more suggestions

Mendeley helps you to discover research relevant for your work.

Already have an account?

Save time finding and organizing research with Mendeley

Sign up for free