Barnes D A, Foote S J, Galatis D, Kemp D J, Cowman A F
Walter and Eliza Hall Institute of Medical Research, Royal Melbourne Hospital, Victoria, Australia.
EMBO J. 1992 Aug;11(8):3067-75. doi: 10.1002/j.1460-2075.1992.tb05378.x.
A chloroquine resistant cloned isolate of Plasmodium falciparum, FAC8, which carries an amplification in the pfmdr1 gene was selected for high-level chloroquine resistance, resulting in a cell line resistant to a 10-fold higher concentration of chloroquine. These cells were found to have lost the amplification in pfmdr1 and to no longer over-produce the protein product termed P-glycoprotein homologue 1 (Pgh1). The pfmdr1 gene from this highly resistant cell line was not found to encode any amino acid changes that would account for increased resistance. Verapamil, which reverses chloroquine resistance in FAC8, also reversed high-level chloroquine resistance. Furthermore, verapamil caused a biphasic reversal of chloroquine resistance as the high-level resistance was very sensitive to low amounts of verapamil. These data suggest that over-expression of the P-glycoprotein homologue is incompatible with high levels of chloroquine resistance. In order to show that these results were applicable to other chloroquine selected lines, two additional mutants were selected for resistance to high levels of chloroquine. In both cases they were found to deamplify pfmdr1. Interestingly, while the level of chloroquine resistance of these mutants increased, they became more sensitive to mefloquine. This suggests a linkage between the copy number of the pfmdr1 gene and the level of chloroquine and mefloquine resistance.
选择了一株恶性疟原虫氯喹抗性克隆分离株FAC8,该分离株的pfmdr1基因存在扩增,具有高水平氯喹抗性,由此获得了对氯喹浓度高10倍具有抗性的细胞系。发现这些细胞失去了pfmdr1基因的扩增,不再过量产生称为P-糖蛋白同源物1(Pgh1)的蛋白质产物。未发现来自这种高抗性细胞系的pfmdr1基因编码任何可解释抗性增加的氨基酸变化。能逆转FAC8氯喹抗性的维拉帕米,也能逆转高水平氯喹抗性。此外,维拉帕米引起氯喹抗性的双相逆转,因为高水平抗性对低剂量维拉帕米非常敏感。这些数据表明,P-糖蛋白同源物的过表达与高水平氯喹抗性不相容。为了表明这些结果适用于其他氯喹选择的细胞系,又选择了另外两个对高水平氯喹具有抗性的突变体。在这两种情况下,都发现它们的pfmdr1基因发生了去扩增。有趣的是,虽然这些突变体的氯喹抗性水平增加了,但它们对甲氟喹变得更敏感。这表明pfmdr1基因的拷贝数与氯喹和甲氟喹抗性水平之间存在联系。