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人水通道蛋白1的结晶及分辨率为3.28 Å的初步晶体学分析。

Crystallization and preliminary crystallographic analysis of human aquaporin 1 at a resolution of 3.28 Å.

作者信息

Ruiz Carrillo David, To Yiu Ying Janet, Darwis Dina, Soon Cin Huang, Cornvik Tobias, Torres Jaume, Lescar Julien

机构信息

School of Biological Sciences, Nanyang Technological University, 61 Biopolis Drive, Singapore 138673, Singapore.

School of Biological Sciences, Nanyang Technological University, 60 Nanyang Drive, Singapore 637551, Singapore.

出版信息

Acta Crystallogr F Struct Biol Commun. 2014 Dec 1;70(Pt 12):1657-63. doi: 10.1107/S2053230X14024558. Epub 2014 Nov 14.

Abstract

Aquaporin water channels (AQPs) are found in almost every organism from humans to bacteria. In humans, 13 classes of AQPs control water and glycerol homeostasis. Knockout studies have suggested that modulating the activity of AQPs could be beneficial for the treatment of several pathologies. In particular, aquaporin 1 is a key factor in cell migration and angiogenesis, and constitutes a possible target for anticancer compounds and also for the treatment of glaucoma. Here, a preliminary crystallographic analysis at 3.28 Å resolution of crystals of human aquaporin 1 (hAQP1) obtained from protein expressed in Sf9 insect cells is reported. The crystals belonged to the tetragonal space group I422, with unit-cell parameters a = b = 89.28, c = 174.9 Å, and contained one monomer per asymmetric unit. The hAQP1 biological tetramer is generated via the crystallographic fourfold axis. This work extends previous electron crystallographic studies that used material extracted from human red blood cells, in which the resolution was limited to approximately 3.8 Å. It will inform efforts to improve lattice contacts and the diffraction limit for the future structure-based discovery of specific hAQP1 inhibitors.

摘要

水通道蛋白(AQPs)存在于从人类到细菌的几乎每一种生物体中。在人类中,13类水通道蛋白控制着水和甘油的体内平衡。基因敲除研究表明,调节水通道蛋白的活性可能有助于治疗多种疾病。特别是,水通道蛋白1是细胞迁移和血管生成的关键因素,是抗癌化合物以及青光眼治疗的一个可能靶点。在此,报道了对从Sf9昆虫细胞中表达的蛋白质获得的人水通道蛋白1(hAQP1)晶体进行的3.28 Å分辨率的初步晶体学分析。晶体属于四方晶系空间群I422,晶胞参数a = b = 89.28,c = 174.9 Å,每个不对称单元包含一个单体。hAQP1生物四聚体通过晶体学四重轴产生。这项工作扩展了之前使用从人类红细胞中提取的材料进行的电子晶体学研究,之前研究的分辨率限制在约3.8 Å。它将为未来基于结构发现特定hAQP1抑制剂时改善晶格接触和衍射极限的努力提供信息。

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