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Mechanism of Allosteric Inhibition of N-Acetyl-L-glutamate Synthase by L-Arginine*

机译:N-乙酰基-L-谷氨酸的变构抑制机制 L-精氨酸合成酶*

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摘要

N-Acetylglutamate synthase (NAGS) catalyzes the first committed step in l-arginine biosynthesis in plants and micro-organisms and is subject to feedback inhibition by l-arginine. This study compares the crystal structures of NAGS from Neisseria gonorrhoeae (ngNAGS) in the inactive T-state with l-arginine bound and in the active R-state complexed with CoA and l-glutamate. Under all of the conditions examined, the enzyme consists of two stacked trimers. Each monomer has two domains: an amino acid kinase (AAK) domain with an AAK-like fold but lacking kinase activity and an N-acetyltransferase (NAT) domain homologous to other GCN5-related transferases. Binding of l-arginine to the AAK domain induces a global conformational change that increases the diameter of the hexamer by ∼10 Å and decreases its height by ∼20Å. AAK dimers move 5Å outward along their 2-fold axes, and their tilt relative to the plane of the hexamer decreases by ∼4°. The NAT domains rotate ∼109° relative to AAK domains enabling new interdomain interactions. Interactions between AAK and NAT domains on different subunits also change. Local motions of several loops at the l-arginine-binding site enable the protein to close around the bound ligand, whereas several loops at the NAT active site become disordered, markedly reducing enzymatic specific activity.
机译:N-乙酰谷氨酸合成酶(NAGS)催化植物和微生物中L-精氨酸生物合成的第一步,并受到L-精氨酸的反馈抑制。这项研究比较了淋病奈瑟氏球菌(ngNAGS)的NAGS的晶体结构,该结构处于与L-精氨酸结合的非活性T状态和与CoA和L-谷氨酸复合的活性R-状态。在所有检查条件下,酶均由两个堆叠的三聚体组成。每个单体具有两个结构域:具有AAK样折叠但缺乏激酶活性的氨基酸激酶(AAK)域和与其他GCN5相关转移酶同源的N-乙酰基转移酶(NAT)域。 1-精氨酸与AAK结构域的结合诱导了整体构象变化,该变化使六聚体的直径增加了约10埃,而其高度降低了约20埃。 AAK二聚体沿其2倍轴向外移动5Å,并且它们相对于六聚体平面的倾斜降低约4°。 NAT域相对于AAK域旋转约109°,从而实现了新的域间交互。不同子单元上的AAK和NAT域之间的交互也会发生变化。在l-精氨酸结合位点的几个环的局部运动使蛋白质能够在结合的配体附近闭合,而在NAT活性位点的几个环变得混乱,显着降低了酶的比活性。

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