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粘质沙雷氏菌中的嘧啶生物合成:非顺序性酶相互作用在模拟协同基因表达中的可能作用。

Pyrimidine biosynthesis in Serratia marcescens: a possible role for nonsequential enzyme interactions in mimicking coordinate gene expression.

作者信息

Wild J R, Belser W L

出版信息

Biochem Genet. 1977 Feb;15(1-2):157-72. doi: 10.1007/BF00484559.

Abstract

The coordinate expression of four sequential enzymes in the de novo pyrimidine pathway may result from the interaction of the various polypeptides of the pathway in Serratia marcescens rather than represent some unit of transcriptional regulation. These interactions were defined by examining the polypeptide association observed in extracts of parental and mutant strains in a series of pleiotropic pyrimidine auxotrophs. Extracts of pyrE auxotrophs [processing dihydroorotate (DHOase) activity but no orotidine-5'-monophosphate pyrophosphorylase (OMPppase) activity] stimulate OMPppase activity in extracts of pyrC auxotrophs (posessing reduced OMPppase activity but no DHOase activity). Separation by molecular weight on Sephadex G200 has suggested an aggregation between the final two enzymes, OMPppase and OMPdecarboxylase (OMPdecase), and the earlier enzyme, DHOase. The reduction of OMPppase activity in pyrC auxotrophs (encoding either a defective polypeptide or reduced levels) is explained by the lack of adequate levels of DHOase for aggregate formation. Such polypeptide interactions appear to mimic the coordinate formation of polypeptides which are controlled as a unit of regulation. The measurable levels of enzymatic activity vary in a quantitatively identical manner, but the variation does not result directly from the regulation of polypeptide formation.

摘要

在粘质沙雷氏菌中,从头嘧啶途径中四种连续酶的协同表达可能源于该途径中各种多肽之间的相互作用,而非代表转录调控的某个单元。通过检测一系列多效性嘧啶营养缺陷型亲本菌株和突变菌株提取物中观察到的多肽缔合,确定了这些相互作用。pyrE营养缺陷型菌株的提取物(具有二氢乳清酸酶(DHOase)活性,但无乳清苷-5'-单磷酸焦磷酸化酶(OMPppase)活性)可刺激pyrC营养缺陷型菌株提取物中的OMPppase活性(其OMPppase活性降低,但无DHOase活性)。在Sephadex G200上按分子量进行分离表明,最后两种酶,即OMPppase和乳清苷-5'-单磷酸脱羧酶(OMPdecase),与较早的酶DHOase之间存在聚集。pyrC营养缺陷型菌株中OMPppase活性的降低(编码有缺陷的多肽或水平降低)可通过缺乏足够水平的DHOase以形成聚集体来解释。这种多肽相互作用似乎模拟了作为调控单元受到控制的多肽的协同形成。可测量的酶活性水平以定量相同的方式变化,但这种变化并非直接源于多肽形成的调控。

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