2-oxoglutarate triggers assembly of active dodecameric Methanosarcina mazei glutamine synthetase.

IF 6.4 1区 生物学 Q1 BIOLOGY
eLife Pub Date : 2025-03-31 DOI:10.7554/eLife.97484
Eva Herdering, Tristan Reif-Trauttmansdorff, Anuj Kumar, Tim Habenicht, Georg Hochberg, Stefan Bohn, Jan Schuller, Ruth Anne Schmitz
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引用次数: 0

Abstract

Glutamine synthetases (GS) are central enzymes essential for the nitrogen metabolism across all domains of life. Consequently, they have been extensively studied for more than half a century. Based on the ATP-dependent ammonium assimilation generating glutamine, GS expression and activity are strictly regulated in all organisms. In the methanogenic archaeon Methanosarcina mazei, it has been shown that the metabolite 2-oxoglutarate (2-OG) directly induces the GS activity. Besides, modulation of the activity by interaction with small proteins (GlnK1 and sP26) has been reported. Here, we show that the strong activation of M. mazei GS (GlnA1) by 2-OG is based on the 2-OG dependent dodecamer assembly of GlnA1 by using mass photometry (MP) and single particle cryo-electron microscopy (cryo-EM) analysis of purified strep-tagged GlnA1. The dodecamer assembly from dimers occurred without any detectable intermediate oligomeric state and was not affected in the presence of GlnK1. The 2.39 Å cryo-EM structure of the dodecameric complex in the presence of 12.5 mM 2-OG demonstrated that 2-OG is binding between two monomers. Thereby, 2-OG appears to induce the dodecameric assembly in a cooperative way. Furthermore, the active site is primed by an allosteric interaction cascade caused by 2-OG-binding towards an adaption of an open active state conformation. In the presence of additional glutamine, strong feedback inhibition of GS activity was observed. Since glutamine dependent disassembly of the dodecamer was excluded by MP, feedback inhibition most likely relies on the binding of glutamine to the catalytic site. Based on our findings, we propose that under nitrogen limitation the induction of M. mazei GS into a catalytically active dodecamer is not affected by GlnK1 and crucially depends on the presence of 2-OG.

2-氧戊二酸触发十二聚甲基甲烷谷氨酰胺合成酶的组装。
谷氨酰胺合成酶(GS)是生命各个领域氮代谢所必需的中心酶。因此,人们对它们进行了半个多世纪的广泛研究。基于atp依赖的氨同化产生谷氨酰胺,GS的表达和活性在所有生物中都受到严格调控。在产甲烷古菌Methanosarcina mazei中,代谢产物2-氧葡萄糖酸酯(2-OG)直接诱导GS活性。此外,已经报道了通过与小蛋白(GlnK1和sP26)相互作用来调节其活性。通过质谱(MP)和单粒子冷冻电镜(cryo-EM)分析纯化的链球菌标记GlnA1,我们发现2-OG对M. mazei GS (GlnA1)的强激活是基于GlnA1的2-OG依赖的十二聚体组装。二聚体的十二聚体组装没有任何可检测到的中间低聚体状态,并且在GlnK1存在时不受影响。在12.5 mM 2-OG存在下,十二聚体配合物的2.39 Å低温电镜结构表明2-OG在两个单体之间结合。因此,2-OG似乎以一种合作的方式诱导十二聚体组装。此外,活性位点由2- og结合引起的变构相互作用级联引发,以适应开放的活性状态构象。在谷氨酰胺的存在下,观察到对GS活性的强烈反馈抑制。由于MP排除了谷氨酰胺依赖性十二聚体的分解,反馈抑制很可能依赖于谷氨酰胺与催化位点的结合。基于我们的研究结果,我们提出在氮限制下,M. mazei GS诱导成催化活性十二聚体不受GlnK1的影响,关键取决于2-OG的存在。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
eLife
eLife BIOLOGY-
CiteScore
12.90
自引率
3.90%
发文量
3122
审稿时长
17 weeks
期刊介绍: eLife is a distinguished, not-for-profit, peer-reviewed open access scientific journal that specializes in the fields of biomedical and life sciences. eLife is known for its selective publication process, which includes a variety of article types such as: Research Articles: Detailed reports of original research findings. Short Reports: Concise presentations of significant findings that do not warrant a full-length research article. Tools and Resources: Descriptions of new tools, technologies, or resources that facilitate scientific research. Research Advances: Brief reports on significant scientific advancements that have immediate implications for the field. Scientific Correspondence: Short communications that comment on or provide additional information related to published articles. Review Articles: Comprehensive overviews of a specific topic or field within the life sciences.
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