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Comparison of human and Drosophila atlastin GTPases

机译:人和果蝇atlastin GTPases的比较

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摘要

Formation of the endoplasmic reticulum (ER) network requires homotypic membrane fusion, which involves a class of atlastin (ATL) GTPases. Purified Drosophila ATL is capable of mediating vesicle fusion in vitro , but such activity has not been reported for any other ATLs. Here, we determined the preliminary crystal structure of the cytosolic segment of Drosophila ATL in a GDP-bound state. The structure reveals a GTPase domain dimer with the subsequent three-helix bundles associating with their own GTPase domains and pointing in opposite directions. This conformation is similar to that of human ATL1, to which GDP and high concentrations of inorganic phosphate, but not GDP only, were included. Drosophila ATL restored ER morphology defects in mammalian cells lacking ATLs, and measurements of nucleotide-dependent dimerization and GTPase activity were comparable for Drosophila ATL and human ATL1. However, purified and reconstituted human ATL1 exhibited no in vitro fusion activity. When the cytosolic segment of human ATL1 was connected to the transmembrane (TM) region and C-terminal tail (CT) of Drosophila ATL, the chimera still exhibited no fusion activity, though its GTPase activity was normal. These results suggest that GDP-bound ATLs may adopt multiple conformations and the in vitro fusion activity of ATL cannot be achieved by a simple collection of functional domains
机译:内质网(ER)网络的形成需要同型膜融合,这涉及一类atlastin(ATL)GTPases。纯化的果蝇ATL能够在体外介导囊泡融合,但尚未针对任何其他ATL报告这种活性。在这里,我们确定了果蝇ATL处于GDP结合状态的胞质段的初步晶体结构。该结构揭示了一个GTPase域二聚体,随后的三螺旋束与它们自己的GTPase域相关联并指向相反的方向。此构型与人类ATL1相似,其中包括GDP和高浓度的无机磷酸盐,而不仅仅是GDP。果蝇ATL在缺少ATL的哺乳动物细胞中恢复了ER形态缺陷,核苷酸依赖性二聚体和GTPase活性的测定与果蝇ATL和人类ATL1相当。但是,纯化和重建的人ATL1没有表现出体外融合活性。当人ATL1的胞质节段连接到果蝇ATL的跨膜(TM)区和C末端尾部(CT)时,尽管它的GTPase活性是正常的,但嵌合体仍然没有融合活性。这些结果表明,与GDP绑定的ATL可能采用多种构象,而ATL的体外融合活性不能通过简单收集功能域来实现

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