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关于二亚基鸟苷酸合成酶(一种别构调节的氨通道酶)功能的机制见解。

Mechanistic Insights into the Functioning of a Two-Subunit GMP Synthetase, an Allosterically Regulated, Ammonia Channeling Enzyme.

机构信息

Molecular Biology and Genetics Unit, Jawaharlal Nehru Centre for Advanced Scientific Research, Jakkur, Bengaluru 560064, India.

出版信息

Biochemistry. 2022 Sep 20;61(18):1988-2006. doi: 10.1021/acs.biochem.2c00151. Epub 2022 Aug 30.

DOI:10.1021/acs.biochem.2c00151
PMID:36040251
Abstract

Guanosine 5'-monophosphate (GMP) synthetases, enzymes that catalyze the conversion of xanthosine 5'-monophosphate (XMP) to GMP, are composed of two different catalytic units, which are either two domains of a polypeptide chain or two subunits that associate to form a complex. The glutamine amidotransferase (GATase) unit hydrolyzes glutamine generating ammonia, and the ATP pyrophosphatase (ATPPase) unit catalyzes the formation of an AMP-XMP intermediate. The substrate-bound ATPPase allosterically activates GATase, and the ammonia thus generated is tunneled to the ATPPase active site where it reacts with AMP-XMP generating GMP. In ammonia channeling enzymes reported thus far, a tight complex of the two subunits is observed, while the interaction of the two subunits of GMP synthetase (MjGMPS) is transient with the underlying mechanism of allostery and substrate channeling largely unclear. Here, we present a mechanistic model encompassing the various steps in the catalytic cycle of MjGMPS based on biochemical experiments, crystal structure, and cross-linking mass spectrometry guided integrative modeling. pH dependence of enzyme kinetics establishes that ammonia is tunneled across the subunits with the lifetime of the complex being ≤0.5 s. The crystal structure of the XMP-bound ATPPase subunit reported herein highlights the role of conformationally dynamic loops in enabling catalysis. The structure of MjGMPS derived using restraints obtained from cross-linking mass spectrometry has enabled the visualization of subunit interactions that enable allostery under catalytic conditions. We integrate the results and propose a functional mechanism for MjGMPS detailing the various steps involved in catalysis.

摘要

鸟苷 5'-一磷酸(GMP)合酶,催化黄苷 5'-一磷酸(XMP)转化为 GMP 的酶,由两个不同的催化单位组成,这些单位要么是多肽链的两个结构域,要么是两个亚基结合形成复合物。谷氨酰胺酰胺转移酶(GATase)单元水解谷氨酰胺生成氨,而 ATP 焦磷酸酶(ATPPase)单元催化 AMP-XMP 中间产物的形成。底物结合的 ATPPase 别构激活 GATase,生成的氨被隧道输送到 ATPPase 活性位点,在那里与 AMP-XMP 反应生成 GMP。迄今为止报道的氨通道酶中,观察到两个亚基的紧密复合物,而 GMP 合酶(MjGMPS)的两个亚基之间的相互作用是瞬时的,变构和底物通道的潜在机制在很大程度上尚不清楚。在这里,我们根据生化实验、晶体结构和交联质谱引导的综合建模,提出了一个包含 MjGMPS 催化循环中各个步骤的机制模型。酶动力学的 pH 依赖性确定氨是通过亚基隧道传输的,复合物的寿命≤0.5s。本文报道的 XMP 结合的 ATPPase 亚基的晶体结构突出了构象动态环在促进催化中的作用。使用交联质谱获得的约束构建的 MjGMPS 结构,使我们能够可视化在催化条件下实现变构的亚基相互作用。我们整合了结果,并提出了 MjGMPS 的功能机制,详细说明了催化过程中涉及的各个步骤。

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