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首页> 外文期刊>Journal of bacteriology >Glycerol-Specific Revertants of a Phosphoenolpyruvate Phosphotransferase Mutant: Suppression by the Desensitization of Glycerol Kinase to Feedback Inhibition
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Glycerol-Specific Revertants of a Phosphoenolpyruvate Phosphotransferase Mutant: Suppression by the Desensitization of Glycerol Kinase to Feedback Inhibition

机译:甘油磷酸丙酮酸磷酸转移酶突变体的甘油特定还原体:甘油激酶对反馈抑制的脱敏作用的抑制。

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摘要

Glycerol-specific revertants were isolated from a phosphoenolpyruvate phosphotransferase mutant lacking enzyme I activity. Sixteen of the eighteen separately derived revertants were found to synthesize a fully active glycerol kinase no longer subject to feedback inhibition by fructose 1,6-diphosphate. The suppressor mutation mapped at the known glpK locus. When the fructose, 1,6-diphosphate-insensitive kinase allele was transduced into a strain producing the glp enzymes constitutively, cells of the resultant strain were susceptible to killing by glycerol if this compound was added to a culture growing exponentially in casein hydrolysate. This phenomenon had been previously described for a strain which had a constitutive glycerol kinase refractory to feedback inhibition, but isolated by a different procedure. It is suggested that the suppression of the growth defect on glycerol in the enzyme I? mutant by the fructose 1,6-diphosphate-insensitive kinase is achieved by increasing the in vivo catalytic potential of glycerol kinase. This increased activity would allow more rapid conversion of glycerol to l-α-glycerophosphate, the true inducer of the glp system. The enzyme I defect in the parental strain impaired the inducibility of the glp system so that the normal basal catalytic activity of the kinase was insufficient to insure induction by glycerol.
机译:从缺乏酶I活性的磷酸烯醇丙酮酸磷酸转移酶突变体中分离甘油特异性还原剂。发现18个单独衍生的回复子中有16个合成了完全活性的甘油激酶,该激酶不再受到果糖1,6-二磷酸的反馈抑制。抑制子突变定位在已知的 glpK 基因座。当果糖1,6-二磷酸不敏感激酶等位基因被转导到组成型产生 glp 酶的菌株中时,如果将该化合物添加到培养物中,则所得菌株的细胞很容易被甘油杀死。酪蛋白水解产物呈指数增长。先前已经针对具有对反馈抑制有抵抗力的组成型甘油激酶但通过不同方法分离的菌株描述了该现象。提示通过增加甘油激酶在体内的催化潜能可以抑制果糖1,6-二磷酸不敏感激酶对I β突变体中的甘油的生长缺陷的抑制。这种增加的活性将使甘油更快地转化为l-α-甘油磷酸,这是 glp 系统的真正诱导剂。亲本菌株中的酶I缺陷削弱了 glp 系统的诱导能力,因此该激酶的正常基础催化活性不足以确保甘油诱导。

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