γ-谷氨酰甲胺合成酶催化L-茶氨酸合成的分子动力学模拟

Molecular dynamics simulation on L-theanine synthesis catalyzed by γ-glutamylmethylamine synthetase

  • 摘要: 鉴于γ-谷氨酰甲胺合成酶催化L-谷氨酸和乙胺合成L-茶氨酸的催化机制尚未清楚,通过对γ-谷氨酰甲胺合成酶与谷氨酸和乙胺等底物分子对接,完成了其分子动力学模拟过程,分析了γ-谷氨酰甲胺合成酶对底物ATP、谷氨酸和乙胺的结合模式,并探讨了γ-谷氨酰甲胺合成酶催化L-茶氨酸合成的机制,进一步完善了该酶的催化机理,为构建高产L-茶氨酸的工程菌株奠定基础。

     

    Abstract: Given that the catalytic mechanism of γ-glutamylamine synthetase in synthesizing L-theanine from L-glutamic acid and ethylamine remains unclear, molecular dynamics simulations were performed through docking γ-glutamylamine synthetase with substrate molecules such as glutamic acid and ethylamine. The binding modes of γ-glutamylamine synthetase to the substrates ATP, glutamic acid, and ethylamine were analyzed. Additionally, the mechanism of γ-glutamylamine synthetase in catalyzing the synthesis of L-theanine was explored, further refining the catalytic mechanism of this enzyme. This research endeavor establishes a fundamental basis for the construction of engineered strains that produce high yields of L-theanine.

     

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