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Genetically engineering transferrin to improve its in vitro ability to deliver cytotoxins

机译:基因改造转铁蛋白以提高其体外传递细胞毒素的能力

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摘要

We previously demonstrated that decreasing the iron release rate of transferrin (Tf), by replacing the synergistic anion carbonate with oxalate, increases its in vitro drug carrier efficacy in HeLa cells. In the current work, the utility of this strategy has been further explored by generating two Tf mutants, K206E/R632A Tf and K206E/K534A Tf, exhibiting different degrees of iron release inhibition. The intracellular trafficking behavior of these Tf mutants has been assessed by measuring their association with HeLa cells. Compared to native Tf, the cellular association of K206E/R632A Tf and K206E/K534A Tf increased by 126 and 250%, respectively. Surface plasmon resonance studies clearly indicate that this increase in cellular association is due to a decrease in the iron release rate and not to differences in binding affinity of the mutants to the Tf receptor (TfR). Diphtheria toxin (DT) conjugates of K206E/R632A Tf and K206E/K534A Tf showed significantly increased cytotoxicity against HeLa cells with IC50 values of 1.00 pM and 0.93 pM, respectively, compared to a value of 1.73 pM for the native Tf conjugate. Besides further validating our strategy of inhibiting iron release, these Tf mutants provide proof-of-principle that site-directed mutagenesis offers an alternative method for improving the drug carrier efficacy of Tf.
机译:我们以前证明,通过用草酸盐代替协同的碳酸阴离子来降低转铁蛋白(Tf)的铁释放速率,可以提高其在HeLa细胞中的体外药物载体功效。在当前的工作中,通过产生两个表现出不同程度的铁释放抑制作用的Tf突变体K206E / R632A Tf和K206E / K534A Tf,进一步探索了该策略的实用性。这些Tf突变体的细胞内运输行为已通过测量它们与HeLa细胞的关联进行了评估。与天然Tf相比,K206E / R632A Tf和K206E / K534A Tf的细胞结合分别增加了126%和250%。表面等离振子共振研究清楚地表明,细胞缔合的这种增加是由于铁释放速率的降低,而不是由于突变体与Tf受体(TfR)的结合亲和力的差异。 K206E / R632A Tf和K206E / K534A Tf的白喉毒素(DT)缀合物对HeLa细胞的细胞毒性显着提高,IC50值分别为1.00 pM和0.93 pM,而天然Tf缀合物的IC50值为1.73 pM。除了进一步证实我们抑制铁释放的策略外,这些Tf突变体还提供了定点诱变的原理,可为提高Tf的药物载体效力提供另一种方法。

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