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Full-Text Articles in Life Sciences

Genome-Wide Compensatory Changes Accompany Drug-Selected Mutations In The Plasmodium Falciparum Crt Gene, Hongying Jiang, Jigar J. Patel, Ming Yi, Jianbing Mu, Jinhui Ding, Robert Stephens, Roland A. Cooper, Michael T. Ferdig, Xin-Zhuan Su May 2016

Genome-Wide Compensatory Changes Accompany Drug-Selected Mutations In The Plasmodium Falciparum Crt Gene, Hongying Jiang, Jigar J. Patel, Ming Yi, Jianbing Mu, Jinhui Ding, Robert Stephens, Roland A. Cooper, Michael T. Ferdig, Xin-Zhuan Su

Roland A. Cooper

Mutations in PfCRT (Plasmodium falciparum chloroquine-resistant transporter), particularly the substitution at amino acid position 76, confer chloroquine (CQ) resistance in P. falciparum. Point mutations in the homolog of the mammalian multidrug resistance gene (pfmdr1) can also modulate the levels of CQ response. Moreover, parasites with the same pfcrt and pfmdr1 alleles exhibit a wide range of drug sensitivity, suggesting that additional genes contribute to levels of CQ resistance (CQR). Reemergence of CQ sensitive parasites after cessation of CQ use indicates that changes in PfCRT are deleterious to the parasite. Some CQR parasites, however, persist in the …


Pfcrt Is More Than The Plasmodium Falciparum Chloroquine Resistance Gene: A Functional And Evolutionary Perspective, Roland A. Cooper, Carmony L. Hartwig, Michael T. Ferdig May 2005

Pfcrt Is More Than The Plasmodium Falciparum Chloroquine Resistance Gene: A Functional And Evolutionary Perspective, Roland A. Cooper, Carmony L. Hartwig, Michael T. Ferdig

Roland A. Cooper

Genetic, physiological and pharmacological studies are gradually revealing the molecular basis of chloroquine resistance (CQR) in the malaria parasite, Plasmodium falciparum. Recent highlights include the discovery of a key gene associated with resistance, pfcrt (Plasmodium falciparum chloroquine resistance transporter; PfCRT), encoding a novel transporter, and the characterization of global selective sweeps of haplotypes containing a K76T amino acid change within this protein. Little is known about the cellular mechanism by which resistant parasites escape the effects of chloroquine (CQ), one of the most promising drugs ever deployed, due in part to an unresolved mechanism of action. The worldwide spread of …