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Expression, purification, electron microscopy, N-glycosylation mutagenesis and molecular modeling of human P2X4 and Dictyostelium discoideum P2XA

机译:人P2X4和盘基网柄菌P2XA的表达,纯化,电子显微镜,N-糖基化诱变和分子建模

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摘要

The recent publication of the apo-, closed-state 3D crystal structure of zebrafish (zf) P2X4.1 has not only revolutionized the P2X research field, but also highlighted the need for further crystal structures, of receptors in different activation states, so that we can gain a complete molecular understanding of ion channel function. zfP2X4.1 was selected as a 3D-crystallization candidate because of its ability to form stable trimers in detergent solution, and purified from over-expression in baculovirus-infected Spodoptera frugiperda (Sf9) insect cells. In this work, we have used a similar approach to express both human P2X4 (hP2X4) and Dictyostelium discoideum P2XA (DdP2XA) in Sf9 cells. Although hP2X4 did not form stable trimers in detergent solution, both receptors bound to ATP-coupled resins, indicating that their extracellular domains were folded correctly. DdP2XA formed strong trimers in detergent solution, and we were able to selectively purify trimers using preparative electrophoresis, and build a 21 Å-resolution 3D structure using transmission electron microscopy and single particle analysis. Although the structure of DdP2XA possessed similar dimensions to those of the previously determined low-resolution hP2X4 structure and the zfP2X4.1 crystal structure, N-glycosylation mutagenesis and molecular modeling indicated differences between N-glycan usage and predicted accessibility in models of DdP2XA based on the zfP2X4.1 crystal structure. Our data demonstrate that DdP2XA expressed in insect cells retains ATP-binding capacity after detergent solubilization, is an ideal candidate for structural study, and possesses a significantly different 3D structure to that of both hP2X4 and zfP2X4.1.
机译:斑马鱼(zf)P2X4.1的载脂蛋白,闭态3D晶体结构的最新出版物不仅彻底改变了P2X研究领域,而且还强调了需要进一步激活处于不同激活状态的受体的晶体结构,因此我们可以获得对离子通道功能的完整分子理解。 zfP2X4.1被选为3D结晶候选物,因为它能够在去污剂溶液中形成稳定的三聚体,并从杆状病毒感染的草地贪夜蛾(Sf9)昆虫细胞中的过表达中纯化出来。在这项工作中,我们使用了类似的方法在Sf9细胞中表达人P2X4(hP2X4)和盘基网柄菌P2XA(DdP2XA)。尽管hP2X4在洗涤剂溶液中未形成稳定的三聚体,但两种受体均与ATP偶联树脂结合,表明它们的胞外域已正确折叠。 DdP2XA在去污剂溶液中形成了牢固的三聚体,我们能够使用制备性电泳选择性地纯化三聚体,并使用透射电子显微镜和单颗粒分析技术构建了21Å分辨率的3D结构。尽管DdP2XA的结构尺寸与先前确定的低分辨率hP2X4结构和zfP2X4.1晶体结构的尺寸相似,但N-糖基化诱变和分子建模表明,DdP2XA模型中N-糖基使用和预期可及性之间存在差异,基于zfP2X4.1晶体结构。我们的数据表明,昆虫细胞中表达的DdP2XA在去污剂溶解后仍保持ATP结合能力,是结构研究的理想候选者,并且具有与hP2X4和zfP2X4.1明显不同的3D结构。

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