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Functional role of arginine 375 in transmembrane helix 6 of multidrug resistance protein 4 (MRP4/ABCC4).

机译:精氨酸375在多药抗性蛋白4(MRP4 / ABCC4)的跨膜螺旋6中的功能作用。

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摘要

Multidrug resistance protein (MRP) 4 transports a variety of endogenous and xenobiotic organic anions. MRP4 is widely expressed in the body and specifically localized to the renal apical proximal tubule cell membrane, where it mediates the excretion of these compounds into urine. To characterize the MRP4 substrate-binding site, the amino acids Phe368, Phe369, Glu374, Arg375, and Glu378 of transmembrane helix 6, and Arg998 of helix 12, localized in the intracellular half of the central pore, were mutated into the corresponding amino acids of MRP1 and MRP2. Membrane vesicles isolated from human embryonic kidney 293 cells overexpressing these mutants showed significantly reduced methotrexate (MTX) and cGMP transport activity compared with vesicles that expressed wild-type MRP4. The only exception was substitution of Arg375 with serine, which had no effect on cGMP transport but significantly decreased the affinity of MTX. Substitution of the same amino acid with a positively charged lysine returned the MTX affinity to that of the wild type. Furthermore, MTX inhibition of MRP4-mediated cGMP transport was noncompetitive, and the inhibition constant was increased by introduction of the R375S mutation. A homology model of MRP4 showed that Arg375 and Arg998 face right into the central aqueous pore of MRP4. We conclude that positively charged amino acids in transmembrane helices 6 and 12 contribute to the MRP4 substrate-binding pocket.
机译:耐多药蛋白(MRP)4可转运多种内源性和异源性有机阴离子。 MRP4在体内广泛表达,并特别定位于肾顶端近端小管细胞膜,在其中它介导这些化合物向尿液的排泄。为了表征MRP4底物结合位点,将位于中央孔的细胞内一半的跨膜螺旋6的氨基酸Phe368,Phe369,Glu374,Arg375和Glu378和螺旋12的Arg998突变为相应的氨基酸MRP1和MRP2。与表达野生型MRP4的囊泡相比,从高表达这些突变体的人胚肾293细胞分离的膜囊泡显示甲氨蝶呤(MTX)和cGMP转运活性显着降低。唯一的例外是用丝氨酸取代Arg375,这对cGMP转运没有影响,但显着降低了MTX的亲和力。用带正电的赖氨酸取代相同的氨基酸可使MTX亲和力恢复为野生型。此外,MTX对MRP4介导的cGMP转运的抑制是非竞争性的,并且通过引入R375S突变而增加了抑制常数。 MRP4的同源性模型显示,Arg375和Arg998正对着MRP4的中央水孔。我们得出结论,跨膜螺旋6和12中带正电荷的氨基酸有助于MRP4底物结合口袋。

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