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A 'Silent' Polymorphism in the MDR1 Gene Changes Substrate Specificity

机译:MDR1基因中的“沉默”多态性改变了底物特异性

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Synonymous single-nucleotide polymorphisms (SNPs) do not produce altered coding sequences, and therefore they are not expected to change the function of the protein in which they occur. We report that a synonymous SNP in the Multidrug Resistance 1 (MDR1) gene, part of a haplotype previously linked to altered function of the MDR1 gene product P-glycoprotein (P-gp), nonetheless results in P-gp with altered drug and inhibitor interactions. Similar mRNA and protein levels, but altered conformations, were found for wild-type.and polymorphic P-gp. We hypothesize that the presence of a rare codon, marked by the synonymous polymorphism, affects the timing of cotranslational folding and insertion of P-gp into the membrane, thereby altering the structure of substrate and inhibitor interaction sites.
机译:同义的单核苷酸多态性(SNP)不会产生改变的编码序列,因此,预计不会改变它们发生的蛋白质的功能。我们报告说,多药耐药性1(MDR1)基因中的同义SNP,以前与MDR1基因产物P-糖蛋白(P-gp)的功能改变相关的单倍型的一部分,但是导致P-gp与药物和抑制剂的改变互动。发现野生型和多态性P-gp的mRNA和蛋白质水平相似,但构象改变。我们假设以同义多态性为标志的稀有密码子的存在会影响共翻译折叠和将P-gp插入膜的时间,从而改变底物和抑制剂相互作用位点的结构。

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