首页> 外文期刊>Applied and Environmental Microbiology >Participation of lysine-sensitive aspartokinase in threonine production by S-2-aminoethyl cysteine-resistant mutants of Serratia marcescens.
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Participation of lysine-sensitive aspartokinase in threonine production by S-2-aminoethyl cysteine-resistant mutants of Serratia marcescens.

机译:赖氨酸敏感天冬氨酸激酶通过粘质沙雷氏菌的S-2-氨乙基半胱氨酸抗性突变体参与苏氨酸生产。

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S-2-Aminoethyl cysteine (AEC) reduced both growth rate and final growth level of Serratia marcescens Sr41. The growth inhibition was completely reversed by lysine. AEC inhibited the activity of lysine-sensitive aspartokinase to a lesser extent than lysine. The AEC addition to the medium lowered not only the level of lysine-sensite aspartokinase but also those of homoserine dehydrogenase and threonine deaminase, whereas lysine repressed the aspartokinase alone. To select mutations releasing lysine-sensitive aspartokinase from feedback controls, AEC-resistant colonies were isolated from strains HNr31 and HNr53, both of which were previously found to excrete threonine on the minimal plates but not on the plates containing excess lysine. Two of 280 resistant colonies excreted large amounts of threonine. Strains AECr174 and AECr301, derived from strains HNr31 and HNr53, respectively, lacked both feedback inhibition and repression of lysine-sensitive aspartokinase. These strains produced about 7 mg of threonine per ml in the medium containing glucose and urea.
机译:S-2-氨乙基半胱氨酸(AEC)降低了粘质沙雷氏菌Sr41的生长速率和最终生长水平。赖氨酸完全逆转了生长抑制作用。 AEC抑制赖氨酸敏感性天冬氨酸激酶活性的程度要小于赖氨酸。向培养基中添加AEC不仅降低了赖氨酸敏感性天冬氨酸激酶的水平,而且降低了高丝氨酸脱氢酶和苏氨酸脱氨酶的水平,而赖氨酸仅抑制了天冬氨酸酶。为了选择从反馈对照中释放赖氨酸敏感的天冬氨酸激酶的突变,从菌株HNr31和HNr53中分离出AEC抗性菌落,先前发现这两种菌株都在最小平板上分泌苏氨酸,但在含有过量赖氨酸的平板上却不分泌苏氨酸。 280个抗性菌落中有两个排泄了大量苏氨酸。分别衍生自菌株HNr31和HNr53的菌株AECr174和AECr301既缺乏反馈抑制功能,也缺乏赖氨酸敏感性天冬氨酸激酶的抑制。这些菌株在含有葡萄糖和尿素的培养基中每毫升产生约7毫克苏氨酸。

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