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首页> 外文期刊>Journal of applied microbiology >Derepression and altered feedback regulation of valine biosyntheticpathway in analogue-resistant mutants of Streptomyces cinnamonensisresulting in 2-ketoisovalerate excretion
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Derepression and altered feedback regulation of valine biosyntheticpathway in analogue-resistant mutants of Streptomyces cinnamonensisresulting in 2-ketoisovalerate excretion

机译:肉桂链霉菌抗性突变体中2-酮异戊酸排泄导致缬氨酸生物合成途径的抑制和反馈调控改变

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摘要

Excretion of 2-ketoisovaleric acid (KIV) was demonstrated in Streptomyces cinnamonensis mutants resistant to valine analogues 2-amino-3-chlorobutyrate, 2-aminobutyrate and norleucine, respectively. The highest KIV concentrations of 170-230 mg l(-1) were found in cultivation liquids of norleucine-resistant strains. Biochemical analyses of the acetohydroxyacid synthase (AHAS), valine dehydrogenase (VDH) and branched chain amino acid aminotransferase activities revealed the deregulation of the valine-synthesizing pathway, resulting in KIV excretion. In the 2-amino-3-chlorobutyrate-resistant strain, the activity of AHAS increased 23- to 31-fold compared with the parental strain. The norleucine-resistant mutants combined both a 10- to 23-fold increase in AHAS activity and lack of efficient feedback regulation by valine. In the double 2-amino-3-chlorobutyrate plus norleucine-resistant mutant, the AHAS activity was only four to eight-fold higher, but release of feedback regulation was conserved. Similarly, feedback regulation was inefficient in 2-aminobutyrate-resistant strains, however the AHAS activity was lower than in the parental strain. A strong induction of VDH was observed in all regulatory mutants.
机译:肉桂链霉菌突变体分别对缬氨酸类似物2-氨基-3-氯丁酸,2-氨基丁酸和正亮氨酸有抗性,证明了2-酮异戊酸(KIV)的排泄。在正亮氨酸抗性菌株的培养液中发现最高的KIV浓度为170-230 mg l(-1)。对乙酰羟酸合酶(AHAS),缬氨酸脱氢酶(VDH)和支链氨基酸氨基转移酶活性的生化分析表明,缬氨酸合成途径失控,导致KIV排泄。在2-氨基-3-氯丁酸抗性菌株中,AHAS的活性比亲本菌株增加了23到31倍。抗正亮氨酸的突变体将AHAS活性增加了10到23倍,并且缬氨酸缺乏有效的反馈调节。在双2-氨基-3-氯丁酸酯加正亮氨酸抗性的突变体中,AHAS活性仅高四到八倍,但保留了反馈调节的释放。同样,反馈调节在2-氨基丁酸酯抗性菌株中效率低下,但是AHAS活性低于亲本菌株。在所有调节突变体中均观察到强烈诱导的VDH。

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