首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >A single amino acid substitution strongly modulates the activity and substrate specificity of the mouse mdr1 and mdr3 drug efflux pumps.
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A single amino acid substitution strongly modulates the activity and substrate specificity of the mouse mdr1 and mdr3 drug efflux pumps.

机译:单个氨基酸取代强烈调节小鼠mdr1和mdr3药物外排泵的活性和底物特异性。

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摘要

Specific protein domains and amino acids responsible for the apparent capacity of P-glycoprotein (mdr) to recognize and transport a large group of structurally unrelated drugs have not been identified. We have introduced a single Ser----Phe substitution within the predicted TM11 domain of mdr1 (position 941) and mdr3 (position 939) and analyzed the effect of these substitutions on the drug-resistance profiles of these two proteins. Mutations at this residue drastically altered the overall degree of drug resistance conveyed by mdr1 and mdr3. The modulating effect of this mutation on mdr1 and mdr3 varied for the drugs tested: it was very strong for colchicine and adriamycin and moderate for vinblastine. For mdr1, the Ser941----Phe941 substitution produced a unique mutant protein that retained the capacity to confer vinblastine resistance but lost the ability to confer adriamycin and colchicine resistance. These results strongly suggest that the predicted TM11 domain of proteins encoded by mdr and mdr-like genes plays an important role in the recognition and transport of their specific substrates.
机译:尚未确定负责P-糖蛋白(mdr)识别和转运一大批与结构无关的药物的表观能力的特定蛋白质结构域和氨基酸。我们已经在预测的mdr1(位置941)和mdr3(位置939)的TM11域内引入了一个Ser-Phe取代,并分析了这些取代对这两种蛋白的耐药性的影响。此残基上的突变极大地改变了mdr1和mdr3传达的总体耐药性。对于测试的药物,此突变对mdr1和mdr3的调节作用各不相同:秋水仙碱和阿霉素非常强,长春碱中等。对于mdr1,Ser941-Phe941取代产生了独特的突变蛋白,该蛋白保留赋予长春碱抗性的能力,但失去赋予阿霉素和秋水仙碱抗性的能力。这些结果强烈表明,由mdr和mdr-like基因编码的蛋白质的预测TM11结构域在识别和转运其特定底物中起重要作用。

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