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A Mutation in the Corynebacterium glutamicum ltsA Gene Causes Susceptibility to Lysozyme Temperature-Sensitive Growth and l-Glutamate Production

机译:谷氨酸棒杆菌ltsA基因中的突变导致对溶菌酶温度敏感型生长和谷氨酸生成的敏感性

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摘要

The Corynebacterium glutamicum mutant KY9714, originally isolated as a lysozyme-sensitive mutant, does not grow at 37°C. Complementation tests and DNA sequencing analysis revealed that a mutation in a single gene of 1,920 bp, ltsA (lysozyme and temperature sensitive), was responsible for its lysozyme sensitivity and temperature sensitivity. The ltsA gene encodes a protein homologous to the glutamine-dependent asparagine synthetases of various organisms, but it could not rescue the asparagine auxotrophy of an Escherichia coli asnA asnB double mutant. Replacement of the N-terminal Cys residue (which is conserved in glutamine-dependent amidotransferases and is essential for enzyme activity) by an Ala residue resulted in the loss of complementation in C. glutamicum. The mutant ltsA gene has an amber mutation, and the disruption of the ltsA gene caused lysozyme and temperature sensitivity similar to that in the KY9714 mutant. l-Glutamate production was induced by elevating growth temperature in the disruptant. These results indicate that the ltsA gene encodes a novel glutamine-dependent amidotransferase that is involved in the mechanisms of formation of rigid cell wall structure and in the l-glutamate production of C. glutamicum.
机译:最初作为溶菌酶敏感突变体分离的谷氨酸棒杆菌突变体KY9714在37°C时不生长。互补测试和DNA测序分析表明,其溶菌酶敏感性和温度敏感性与1,920 bp单个基因的突变ltsA(溶菌酶和温度敏感)有关。 ltsA基因编码的蛋白质与各种生物体的谷氨酰胺依赖性天冬酰胺合成酶同源,但不能拯救大肠杆菌asnA asnB双突变体的天冬酰胺营养缺陷型。 N末端Cys残基(在谷氨酰胺依赖性酰胺基转移酶中保守并且对酶活性至关重要)取代了Ala残基,导致谷氨酸棒状杆菌中互补的丧失。突变体ltsA基因具有琥珀色突变,并且ltsA基因的破坏导致溶菌酶和温度敏感性与KY9714突变体相似。通过升高破坏剂的生长温度来诱导1-谷氨酸的产生。这些结果表明,ltsA基因编码一种新型的谷氨酰胺依赖性酰胺基转移酶,该酶参与了刚性细胞壁结构的形成机理和谷氨酸棒杆菌的I-谷氨酸的生产。

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