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首页> 外文期刊>Journal of Structural Biology >Toward understanding the mechanism of action of the yeast multidrug resistance transporter Pdr5p: A molecular modeling study
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Toward understanding the mechanism of action of the yeast multidrug resistance transporter Pdr5p: A molecular modeling study

机译:了解酵母多药耐药转运蛋白Pdr5p的作用机理:分子建模研究

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摘要

Pleotropic drug resistant protein 5 (Pdr5p) is a plasma membrane ATP-binding cassette (ABC) transporter and the major drug efflux pump in Saccharomyces cerevisiae. The Pdr5p family of fungal transporters possesses a number of structural features significantly different from other modeled or crystallized ABC transporters, which include a reverse topology, an atypical ATP-binding site, a very low sequence similarity in the transmembrane section and long linkers between domains. These features present a considerable hurdle in molecular modeling studies of these important transporters. Here, we report the creation of an atomic model of Pdr5p based on a combination of homology modeling and ab initio methods, incorporating information from consensus transmembrane segment prediction, residue lipophilicity, and sequence entropy. Reported mutations in the transmembrane substrate-binding pocket that altered drug-resistance were used to validate the model, and one mutation that changed the communication pattern between transmembrane and nucleotide-binding domains was used in model improvement. The predictive power of the model was demonstrated experimentally by the increased sensitivity of yeast mutants to clotrimazole having alanine substitutions for Thr1213 and Gln1253, which are predicted to be in the substrate-binding pocket, without reducing the amount of Pdr5p in the plasma membrane. The quality and reliability of our model are discussed in the context of various approaches used for modeling different parts of the structure
机译:亲多药耐药蛋白5(Pdr5p)是质膜ATP结合盒(ABC)转运蛋白,是酿酒酵母中的主要药物外排泵。 Pdr5p真菌转运蛋白家族具有许多与其他建模或结晶的ABC转运蛋白显着不同的结构特征,包括反向拓扑结构,非典型ATP结合位点,跨膜部分的序列相似性非常低以及结构域之间的长连接子。这些特征为这些重要转运蛋白的分子建模研究提供了相当大的障碍。在这里,我们报道了基于同源建模和从头算方法的Pdr5p原子模型的创建,该模型结合了来自共识跨膜片段预测,残基亲脂性和序列熵的信息。报告的跨膜底物结合口袋中的改变了耐药性的突变被用于验证模型,并且一种改变了跨膜和核苷酸结合域之间的通信方式的突变被用于模型改进。该模型的预测能力通过提高酵母突变体对具有丙氨酸取代Thr1213和Gln1253的克霉唑的敏感性来证明,该克霉唑被预测位于底物结合袋中,而不会减少质膜中Pdr5p的量。我们在对结构的不同部分进行建模的各种方法的背景下讨论了模型的质量和可靠性

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