首页> 外文期刊>Antimicrobial agents and chemotherapy. >High-affinity binding of silybin derivatives to the nucleotide-binding domain of a Leishmania tropica P-glycoprotein-like transporter and chemosensitization of a multidrug-resistant parasite to daunomycin.
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High-affinity binding of silybin derivatives to the nucleotide-binding domain of a Leishmania tropica P-glycoprotein-like transporter and chemosensitization of a multidrug-resistant parasite to daunomycin.

机译:水飞蓟宾衍生物与热带利什曼原虫P-糖蛋白样转运蛋白的核苷酸结合结构域的高亲和力结合以及多药耐药性寄生虫对道诺霉素的化学增感作用。

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摘要

In order to overcome the multidrug resistance mediated by P-glycoprotein-like transporters in Leishmania spp., we have studied the effects produced by derivatives of the flavanolignan silybin and related compounds lacking the monolignol unit on (i) the affinity of binding to a recombinant C-terminal nucleotide-binding domain of the L. tropica P-glycoprotein-like transporter and (ii) the sensitization to daunomycin on promastigote forms of a multidrug-resistant L. tropica line overexpressing the transporter. Oxidation of the flavanonol silybin to the corresponding flavonol dehydrosilybin, the presence of the monolignol unit, and the addition of a hydrophobic substituent such as dimethylallyl, especially at position 8 of ring A, considerably increased the binding affinity. The in vitro binding affinity of these compounds for the recombinant cytosolic domain correlated with their modulation of drug resistance phenotype. In particular, 8-(3,3-dimethylallyl)-dehydrosilybin effectively sensitized multidrug-resistant Leishmania spp. to daunomycin. The cytosolic domains are therefore attractive targets for the rational design of inhibitors against P-glycoprotein-like transporters.
机译:为了克服利什曼原虫中P-糖蛋白样转运蛋白介导的多药耐药性,我们研究了黄烷醇水飞蓟宾衍生物和缺乏单木质素单元的相关化合物对(i)与重组体结合的亲和力产生的影响。 L. tropica P-糖蛋白样转运蛋白的C端核苷酸结合结构域和(ii)对过表达该转运蛋白的多药抗性L.tropica品系的前鞭毛体形式上的道诺霉素致敏。黄烷醇水飞蓟宾氧化为相应的黄酮醇脱氢水飞蓟宾,存在单木质醇单元,并添加疏水性取代基(例如二甲基烯丙基),尤其是在环A的8位,大大提高了结合亲和力。这些化合物对重组胞质域的体外结合亲和力与其对药物抗性表型的调节有关。特别地,8-(3,3-二甲基烯丙基)-脱氢水飞蓟宾有效地敏化了多重耐药性利什曼原虫属。对道诺霉素。因此,胞质结构域是合理设计针对P-糖蛋白样转运蛋白的抑制剂的有吸引力的靶标。

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