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Employing Information Theoretic Measures and Mutagenesis to Identify Residues Critical for Drug-Proton Antiport Function in Mdr1p of Candida albicans

机译:利用信息论方法和诱变方法鉴定在白色念珠菌的Mdr1p中质子反转运功能至关重要的残基

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摘要

By employing information theoretic measures, this study presents a structure and functional analysis of a multidrug-proton antiporter Mdr1p of Candida albicans. Since CaMdr1p belongs to drug-proton antiporter (DHA1) family of Major Facilitator Superfamily (MFS) of transporters, we contrasted DHA1 (antiporters) with Sugar Porter family (symporters). Cumulative Relative Entropy (CRE) calculated for these two sets of alignments enabled us to selectively identify conserved residues of not only CaMdr1p but for the entire DHA1 family. Based on CRE, the highest scoring thirty positions were selected and predicted to impart functional specificity to CaMdr1p as well as to other drug-proton antiporters. Nineteen positions wherein the CaMdr1p residue matched with the most frequent amino acid at a particular alignment position of DHA1 members were subjected to site-directed mutagenesis and were replaced with either alanine or leucine. All these mutant variants, except one, displayed either complete or selective sensitivity to the tested drugs. The enhanced susceptibility of these mutant variants was corroborated with the simultaneously abrogated efflux of substrates. Taken together, based on scaled CRE between two MFS sub-families, we could accurately predict the functionally relevant residues of CaMdr1p. An extrapolation of these predictions to the entire DHA1 family members as validated from previously published data shows that these residues are functionally critical in other members of the DHA1 family also.
机译:通过运用信息理论方法,本研究提出了白色念珠菌的多药-质子反转运蛋白Mdr1p的结构和功能分析。由于CaMdr1p属于转运蛋白主要促进者超家族(MFS)的质子反转运蛋白(DHA1)家族,因此我们将DHA1(反转运蛋白)与Sugar Porter家族(同系转运蛋白)进行了对比。为这两套比对计算的累积相对熵(CRE)使我们能够选择性地鉴定不仅CaMdr1p的保守残基,而且还有整个DHA1家族的保守残基。基于CRE,选择得分最高的30个位置,并预测它们将赋予CaMdr1p以及其他药物-质子反转运蛋白功能特异性。将其中CaMdr1p残基与DHA1成员特定排列位置上最频繁的氨基酸匹配的19个位置进行定点诱变,并替换为丙氨酸或亮氨酸。除一个以外,所有这些突变体变体对被测药物均表现出完全或选择性的敏感性。这些突变体变异的增强的敏感性与同时消除的底物流出得到了证实。综上所述,基于两个MFS子家族之间的CRE比例,我们可以准确预测CaMdr1p在功能上相关的残基。根据先前公布的数据验证,将这些预测推算至整个DHA1家族成员表明,这些残基在DHA1家族的其他成员中也具有关键功能。

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