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Crystallization and preliminary crystallographic characterization of glutamine synthetase from Medicago truncatula

机译:苜蓿中谷氨酰胺合成酶的结晶及初步晶体学表征

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摘要

The condensation of ammonium and glutamate into glutamine catalyzed by glutamine synthetase (GS) is a fundamental step in nitrogen metabolism in all kingdoms of life. In plants, this is preceded by the reduction of inorganic nitrogen to an ammonium ion and therefore effectively articulates nitrogen fixation and metabolism. Although the three-dimensional structure of the dodecameric bacterial GS was determined quite some time ago, the quaternary architecture of the plant enzyme has long been assumed to be octameric, mostly on the basis of low-resolution electron-microscopy studies. Recently, the crystallographic structure of a monocotyledonous plant GS was reported that revealed a homodecameric organization. In order to unambiguously establish the quaternary architecture of GS from dicotyledonous plants, GS1a from the model legume Medicago truncatula was overexpressed, purified and crystallized. The collection of synchrotron diffraction data to 2.35 Å resolution allowed the determination of the three-dimensional structure of this enzyme by molecular replacement.
机译:谷氨酰胺合成酶(GS)催化的铵盐和谷氨酸盐缩合为谷氨酰胺是所有生命王国中氮代谢的基本步骤。在植物中,先将无机氮还原为铵离子,从而有效地阐明固氮和新陈代谢。尽管十二聚体细菌GS的三维结构是在很久以前确定的,但长期以来一直假定植物酶的四级结构为八聚体,主要是基于低分辨率电子显微镜研究。最近,据报道单子叶植物GS的晶体结构揭示了同十聚体结构。为了明确地建立双子叶植物的GS的四级结构,模型豆科植物Medicago truncatula的GS1a被过表达,纯化和结晶。收集同步加速器衍射数据至2.35Å分辨率,可通过分子置换确定该酶的三维结构。

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