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酿酒酵母多药耐药蛋白Pdr5p的三维重建。

Three-dimensional reconstruction of the Saccharomyces cerevisiae multidrug resistance protein Pdr5p.

作者信息

Ferreira-Pereira Antonio, Marco Sergio, Decottignies Annabelle, Nader Joseph, Goffeau André, Rigaud Jean-Louis

机构信息

Departamento de Analises Clinicas e Toxicologicas, Faculdade de Farmacia, Universidade Federal do Rio de Janeiro, CEP 21949-900, Rio de Janeiro, Brazil.

出版信息

J Biol Chem. 2003 Apr 4;278(14):11995-9. doi: 10.1074/jbc.M212198200. Epub 2003 Jan 27.

Abstract

Pdr5p, the major multidrug exporter in Saccharomyces cerevisiae, is a member of the ATP-binding cassette (ABC) superfamily. Pdr5p shares similar mechanisms of substrate recognition and transport with the human MDR1-Pgp, despite an inverted topology of transmembrane and ATP-binding domains. The hexahistidine-tagged Pdr5p multidrug transporter was highly overexpressed in yeast strains where other ABC genes have been deleted. After solubilization and purification, the 160-kDa recombinant Pdr5p has been reconstituted into a lipid bilayer. Controlled detergent removal from Pdr5p-lipid-detergent micelles allowed the production of peculiar square-shaped particles coexisting with liposomes and proteoliposomes. These particles having 11 nm in side were well suited for single particle analysis by electron microscopy. From such analysis, a computed volume has been determined at 25-A resolution, giving insight into the structural organization of Pdr5p. Comparison with the reported structures of different bacterial ABC transporters was consistent with a dimeric organization of Pdr5p in the square particles. Each monomer was composed of three subregions corresponding to a membrane region of about 50 A in height that joins two well separated protruding stalks of about 40 A in height, ending each one with a cytoplasmic nucleotide-binding domain (NBD) lobe of about 50-60 A in diameter. The three-dimensional reconstruction of Pdr5p revealed a close arrangement and a structural asymmetric organization of the two NBDs that appeared oriented perpendicularly within a monomer. The existence of different angular positions of the NBDs, with respect to the stalks, suggest rotational movements during the catalytic cycle.

摘要

Pdr5p是酿酒酵母中的主要多药外排蛋白,属于ATP结合盒(ABC)超家族成员。尽管跨膜结构域和ATP结合结构域的拓扑结构相反,但Pdr5p与人类MDR1-Pgp具有相似的底物识别和转运机制。带有六组氨酸标签的Pdr5p多药转运蛋白在其他ABC基因已被缺失的酵母菌株中高度过表达。在溶解和纯化后,160 kDa的重组Pdr5p已被重构成脂质双层。从Pdr5p-脂质-去污剂胶束中可控地去除去污剂,使得能够产生与脂质体和蛋白脂质体共存的特殊方形颗粒。这些边长为11 nm的颗粒非常适合通过电子显微镜进行单颗粒分析。通过这种分析,已在25 Å分辨率下确定了计算体积,从而深入了解了Pdr5p的结构组织。与已报道的不同细菌ABC转运蛋白的结构比较表明,方形颗粒中的Pdr5p呈二聚体结构。每个单体由三个亚区域组成,对应于一个高度约为50 Å的膜区域,该膜区域连接两个高度约为40 Å且相距较远的突出茎,每个茎的末端是一个直径约为50 - 60 Å的胞质核苷酸结合结构域(NBD)叶。Pdr5p的三维重建揭示了两个NBD的紧密排列和结构不对称组织,这两个NBD在一个单体内似乎垂直定向。NBD相对于茎的不同角度位置的存在表明在催化循环过程中有旋转运动。

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