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首页> 外文期刊>Journal of Molecular Biology >Three-dimensional structure by cryo-electron microscopy of YvcC, an homodimeric ATP-binding cassette transporter from Bacillus subtilis.
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Three-dimensional structure by cryo-electron microscopy of YvcC, an homodimeric ATP-binding cassette transporter from Bacillus subtilis.

机译:低温电子显微镜下的YvcC三维结构,YvcC是枯草芽孢杆菌的同型二聚ATP结合盒转运蛋白。

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YvcC, a multidrug transporter from Bacillus subtilis, is a member of the ATP-binding cassette superfamily, highly homologous to each half of human multidrug-resistance P-glycoprotein and to several other bacterial half-ABC transporters. Here, the purified recombinant histidine-tagged YvcC has been reconstituted into a lipid bilayer. Controlled and partial detergent removal from YvcC-lipid micelles allowed the production of particularly interesting lipid-detergent-YvcC ring-shaped particles, about 40 nm in diameter, well suited for single particle analysis by cryo-electron microscopy. Furthermore, binding of these histidine-tagged ring-shaped particles to lipid layers functionalized with a Ni(2+)-chelating head group generated a preferential perpendicular orientation, eliminating the missing cone in the final three-dimensional reconstruction. From such analysis, a computed volume has been determined to 2.5 nm resolution giving a detailed insight into the structural organization of this half-ABC transporter within a membrane. The repetitive unit in the ring-shaped particles is consistent with a homodimeric organization of YvcC. Each subunit was composed of three domains: a 5 nm height transmembrane region, a stalk of about 4 nm in height and 2 nm in diameter, and a cytoplasmic lobe of about 5-6 nm in diameter. The latest domain, which fitted with the reported X-ray structure of HisP, was identified as the nucleotide-binding domain (NBD). The 3D reconstruction of the YvcC homodimer well compared with the very recent X-ray crystallographic data on the MsbA homodimer from Escherichia coli, supporting the existence of a central open chamber between the two subunits constituting the homodimer. In addition, the 3D reconstruction of YvcC embedded in a membrane revealed an asymmetric organization of the two NBDs sites within the homodimer, as well as a dimeric interaction between two homodimers.
机译:YvcC是枯草芽孢杆菌的多药转运蛋白,是ATP结合盒超家族的成员,与人多药耐药性P-糖蛋白的每一半部分和其他几种细菌半ABC转运蛋白高度同源。在此,纯化的重组组氨酸标签的YvcC已被重构为脂质双层。从YvcC-脂质微团中控制和部分去除去污剂可以生产出特别有趣的脂质洗涤剂-YvcC环形颗粒,其直径约为40 nm,非常适合通过低温电子显微镜进行单颗粒分析。此外,这些组氨酸标记的环状颗粒与用Ni(2+)螯合头部基团官能化的脂质层的结合产生了优先的垂直方向,从而消除了最终的三维重建过程中丢失的锥体。通过这种分析,已确定计算体积为2.5 nm分辨率,从而可以更深入地了解这种半ABC转运蛋白在膜内的结构组织。环状颗粒中的重复单元与YvcC的同二聚体结构一致。每个亚基由三个结构域组成:高度为5 nm的跨膜区域,高度为约4 nm,直径为2 nm的茎和直径为约5-6 nm的胞浆状叶。符合报道的HisP的X射线结构的最新域被鉴定为核苷酸结合域(NBD)。与来自大肠杆菌的MsbA同型二聚体的最新X射线晶体学数据相比,YvcC同型二聚体的3D重建效果很好,支持了构成同型二聚体的两个亚基之间存在中央开放腔室。此外,嵌入膜中的YvcC的3D重建揭示了同型二聚体中两个NBD位点的不对称组织,以及两个同型二聚体之间的二聚体相互作用。

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