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首页> 外文期刊>Biochemical and Biophysical Research Communications >The structure of putative N-acetyl glutamate kinase from Thermus thermophilus reveals an intermediate active site conformation of the enzyme
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The structure of putative N-acetyl glutamate kinase from Thermus thermophilus reveals an intermediate active site conformation of the enzyme

机译:嗜热栖热菌的推定的N-乙酰谷氨酸激酶的结构揭示了该酶的中间活性位点构象

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摘要

The de novo biosynthesis of arginine in microorganisms and plants is accomplished via several enzymatic steps. The enzyme N-acetyl glutamate kinase (NAGK) catalyzes the phosphorylation of the γ-COO - group of N-acetyl-l-glutamate (NAG) by adenosine triphosphate (ATP) which is the second rate limiting step in arginine biosynthesis pathway. Here we report the crystal structure of putative N-acetyl glutamate kinase (NAGK) from Thermus thermophilus HB8 (TtNAGK) determined at 1.92? resolution. The structural analysis of TtNAGK suggests that the dimeric quaternary state of the enzyme and arginine insensitive nature are similar to mesophilic Escherichia coli NAGK. These features are significantly different from its thermophilic homolog Thermatoga maritima NAGK which is hexameric and arginine-sensitive. TtNAGK is devoid of its substrates but contains two sulfates at the active site. Very interestingly the active site of the enzyme adopts a conformation which is not completely open or closed and likely represents an intermediate stage in the catalytic cycle unlike its structural homologs, which all exist either in the open or closed conformation. Engineering arginine biosynthesis pathway enzymes for the production of l-arginine is an important industrial application. The structural comparison of TtNAGK with EcNAGK revealed the structural basis of thermostability of TtNAGK and this information could be very useful to generate mutants of NAGK with increased overall stability.
机译:微生物和植物中精氨酸的从头生物合成是通过几个酶促步骤完成的。 N-乙酰基谷氨酸激酶(NAGK)催化三磷酸腺苷(ATP)催化N-乙酰基-1-谷氨酸(NAG)的γ-COO-磷酸化,这是精氨酸生物合成途径中的第二个限速步骤。在这里,我们报告了嗜热栖热菌HB8(TtNAGK)的N-乙酰谷氨酸激酶(NAGK)的晶体结构确定为1.92?解析度。 TtNAGK的结构分析表明,该酶的二聚体四价态和精氨酸不敏感的性质类似于嗜温大肠杆菌NAGK。这些特征与其对六聚体和精氨酸敏感的嗜热同系物Thermatoga maritima NAGK显着不同。 TtNAGK没有底物,但在活性位点含有两种硫酸盐。非常有趣的是,酶的活性位点采用的构象并不完全开放或闭合,并且可能代表催化循环的中间阶段,这与其结构同系物不同,它们都以开放或闭合构象存在。用于生产L-精氨酸的工程精氨酸生物合成途径酶是重要的工业应用。 TtNAGK与EcNAGK的结构比较揭示了TtNAGK热稳定性的结构基础,该信息对于产生整体稳定性提高的NAGK突变体可能非常有用。

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