首页> 外文期刊>Journal of Molecular Biology >Crystal structure of the ATPPase subunit and its substrate-dependent association with the GATase subunit: a novel regulatory mechanism for a two-subunit-type GMP synthetase from Pyrococcus horikoshii OT3.
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Crystal structure of the ATPPase subunit and its substrate-dependent association with the GATase subunit: a novel regulatory mechanism for a two-subunit-type GMP synthetase from Pyrococcus horikoshii OT3.

机译:ATPPase亚基的晶体结构及其与GATase亚基的底物依赖性关联:来自火球菌OT3的两个亚基型GMP合成酶的新型调控机制。

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摘要

Guanosine 5'-monophosphate synthetase(s) (GMPS) catalyzes the final step of the de novo synthetic pathway of purine nucleotides. GMPS consists of two functional units that are present as domains or subunits: glutamine amidotransferase (GATase) and ATP pyrophosphatase (ATPPase). GATase hydrolyzes glutamine to yield glutamate and ammonia, while ATPPase utilizes ammonia to convert adenyl xanthosine 5'-monophosphate (adenyl-XMP) into guanosine 5'-monophosphate. Here we report the crystal structure of PH-ATPPase (the ATPPase subunit of the two-subunit-type GMPS from the hyperthermophilic archaeon Pyrococcus horikoshii OT3). PH-ATPPase consists of two domains (N-domain and C-domain) and exists as a homodimer in the crystal and in solution. The N-domain contains an ATP-binding platform called P-loop, whereas the C-domain contains the xanthosine 5'-monophosphate (XMP)-binding site and also contributes to homodimerization. We have also demonstrated that PH-GATase (the glutamine amidotransferase subunit of the two-subunit-type GMPS from the hyperthermophilic archaeon P. horikoshii OT3) alone is inactive, and that all substrates of PH-ATPPase except for ammonia (Mg(2+), ATP and XMP) are required to stabilize the active complex of PH-ATPPase and PH-GATase subunits.
机译:鸟嘌呤5'-单磷酸合成酶(GMPS)催化嘌呤核苷酸从头合成途径的最后一步。 GMPS由两个以域或亚基形式存在的功能单元组成:谷氨酰胺酰胺转移酶(GATase)和ATP焦磷酸酶(ATPPase)。 GATase水解谷氨酰胺产生谷氨酸盐和氨,而ATPPase利用氨将腺苷黄嘌呤5'-单磷酸(腺苷XMP)转化为鸟苷5'-单磷酸。在这里,我们报告PH-ATPPase(来自超嗜热古生火球菌OT3的两个亚基型GMPS的ATPPase亚基)的晶体结构。 PH-ATPPase由两个结构域(N结构域和C结构域)组成,以同型二聚体形式存在于晶体和溶液中。 N结构域包含一个称为P环的ATP结合平台,而C结构域则包含了黄嘌呤5'-单磷酸(XMP)结合位点,并且也有助于同二聚化。我们还证明了单独的PH-GATase(来自超嗜热古细菌P. horikoshii OT3的两个亚基型GMPS的谷氨酰胺酰胺转移酶亚基)无效,并且除氨气(Mg(2+ ),ATP和XMP)以稳定PH-ATPPase和PH-GATase亚基的活性复合物。

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