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Fermentative Production of l-Alanyl-l-Glutamine by a Metabolically Engineered Escherichia coli Strain Expressing l-Amino Acid α-Ligase

机译:表达l-氨基酸α-连接酶的代谢工程大肠杆菌菌株发酵生产l-丙氨酰基-1-谷氨酰胺

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摘要

In spite of its clinical and nutritional importance, l-alanyl-l-glutamine (Ala-Gln) has not been widely used due to the absence of an efficient manufacturing method. Here, we present a novel method for the fermentative production of Ala-Gln using an Escherichia coli strain expressing l-amino acid α-ligase (Lal), which catalyzes the formation of dipeptides by combining two amino acids in an ATP-dependent manner. Two metabolic manipulations were necessary for the production of Ala-Gln: reduction of dipeptide-degrading activity by combinatorial disruption of the dpp and pep genes and enhancement of the supply of substrate amino acids by deregulation of glutamine biosynthesis and overexpression of heterologous l-alanine dehydrogenase (Ald). Since expression of Lal was found to hamper cell growth, it was controlled using a stationary-phase-specific promoter. The final strain constructed was designated JKYPQ3 (pepA pepB pepD pepN dpp glnE glnB putA) containing pPE167 (lal and ald expressed under the control of the uspA promoter) or pPE177 (lal and ald expressed under the control of the rpoH promoter). Either strain produced more than 100 mM Ala-Gln extracellularly, in fed-batch cultivation on glucose-ammonium salt medium, without added alanine and glutamine. Because of the characteristics of Lal, no longer peptides (such as tripeptides) or dipeptides containing d-amino acids were formed.
机译:尽管其具有临床和营养重要性,但由于缺乏有效的生产方法,1-丙氨酰基-1-谷氨酰胺(Ala-Gln)尚未得到广泛使用。在这里,我们提出了一种使用表达L-氨基酸α-连接酶(Lal)的大肠杆菌菌株发酵生产Ala-Gln的新方法,该酶通过以ATP依赖的方式结合两个氨基酸来催化二肽的形成。产生Ala-Gln的两种代谢操作是必需的:通过dpp和pep基因的组合破坏而降低二肽降解活性,以及​​通过谷氨酰胺生物合成的失调和异源l-丙氨酸脱氢酶的过表达来增加底物氨基酸的供应。 (Ald)。由于发现Lal的表达会阻碍细胞生长,因此可以使用固定相特异性启动子对其进行控制。构建的最终菌株命名为JKYPQ3(pepA pepB pepD pepN dpp glnE glnB putA),其中含有pPE167(在uspA启动子的控制下表达的lal和ald)或pPE177(在rpoH启动子的控制下表达的lal和ald)。在不添加丙氨酸和谷氨酰胺的情况下,在葡萄糖-铵盐培养基上分批补料培养中,这两种菌株在细胞外均产生超过100 mM的Ala-Gln。由于Lal的特性,不再形成含有d-氨基酸的肽(例如三肽)或二肽。

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