首页> 外文期刊>Journal of bacteriology >Overproduction of MalK protein prevents expression of the Escherichia coli mal regulon.
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Overproduction of MalK protein prevents expression of the Escherichia coli mal regulon.

机译:MalK蛋白的过度生产会阻止大肠杆菌mal regulon的表达。

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The mal regulon of Escherichia coli comprises a large family of genes whose function is the metabolism of linear maltooligosaccharides. Five gene products are required for the active accumulation of maltodextrins as large as maltoheptaose. Two cytoplasmic gene products are necessary and sufficient for the intracellular catabolism of these sugars. Two newly discovered enzymes have the capacity to metabolize these sugars but are not essential for their catabolism in wild-type cells. A single regulatory protein, MalT, positively regulates the expression of all of these genes in response to intracellular inducers, one of which has been identified as maltotriose. In the course of studying the mechanism of the transport system, we have placed the structural gene for one of the transport proteins, MalK, under the control of the Ptrc promoter to produce large amounts of this protein. We found that although high-level expression of MalK was not detrimental to E. coli, the increased amount of MalK decreased the basal-level expression of the mal regulon and prevented induction of the mal system even in the presence of external maltooligosaccharides. Constitutive mutants in which MalT does not depend on the presence of the internal inducer(s) were unaffected by the increased levels of the MalK protein. These results are consistent with the idea that MalK protein somehow interferes with the activity of the MalT protein. Different models for the regulatory function of MalK are discussed.
机译:大肠杆菌的恶性基因包含一个大家族的基因,其功能是线性低聚麦芽糖的代谢。与麦芽七糖一样大的麦芽糖糊精的有效积累需要五个基因产物。对于这些糖的细胞内分解代谢,两个胞质基因产物是必需的和足够的。两种新发现的酶具有代谢这些糖的能力,但对于它们在野生型细胞中的分解代谢不是必需的。单个调节蛋白MalT会响应细胞内诱导剂而积极调节所有这些基因的表达,其中一种被认为是麦芽三糖。在研究转运系统的机制的过程中,我们已将一种转运蛋白MalK的结构基因置于Ptrc启动子的控制下,以产生大量这种蛋白。我们发现,尽管MalK的高水平表达对大肠杆菌无害,但增加的MalK量可降低mal regulon的基础水平表达,甚至在存在外部低聚麦芽糖的情况下也可阻止mal系统的诱导。 MalT不依赖内部诱导物存在的组成型突变体不受MalK蛋白水平升高的影响。这些结果与MalK蛋白某种程度上干扰MalT蛋白活性的想法是一致的。讨论了MalK调节功能的不同模型。

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