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首页> 外文期刊>Molecular Microbiology >The ATP-binding cassette subunit of the maltose transporter MalK antagonizes MalT, the activator of the Escherichia coli mal regulon.
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The ATP-binding cassette subunit of the maltose transporter MalK antagonizes MalT, the activator of the Escherichia coli mal regulon.

机译:麦芽糖转运蛋白MalK的ATP结合盒亚基可拮抗大肠杆菌mal regulon的激活剂MalT。

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Transcription of the mal regulon of Escherichia coli K-12 is regulated by the positive activator, MalT. In the presence of ATP and maltotriose, MalT binds to decanucleotide MalT boxes that are found upstream of mal promoters and activates transcription at these sites. The earliest studies of the mal regulon, however, suggested a negative role for the MalK protein, the ATP-binding cassette subunit of the maltose transporter, in regulating mal gene expression. More recently, it was found that overexpression of the MalK protein resulted in very low levels of mal gene transcription. In this report we describe the use of tagged versions of MalT to provide evidence that it physically interacts with the MalK protein both in vitro and in vivo. In addition, we show that a novel malK mutation, malK941, results in an increased ability of MalK to down-modulate MalT activity in vivo. The fact that the MalK941 protein binds but does not hydrolyse ATP suggests that the MalK941 mutant protein mimics the inactive, ATP-bound form of the normal MalK protein. In contrast, cells with high levels of MalK ATPase show a reduced ability to down-modulate MalT and express several mal genes constitutively. These results are consistent with a model in which the inactive form of MalK down-modulates MalT and decreases transcription, whereas the active form of MalK does not. This model suggests that bacteria may be able to couple information about extracellular substrate availability to the transcriptional apparatus via the levels of ATP hydrolysis associated with transport.
机译:大肠埃希氏菌K-12的恶意基因的转录受阳性激活剂MalT调控。在ATP和麦芽三糖存在的情况下,MalT结合至在mal启动子上游发现的十核苷酸MalT盒并激活这些位点的转录。然而,对mal regulon的最早研究表明,MalK蛋白(麦芽糖转运蛋白的ATP结合盒亚基)在调节mal基因表达中具有负作用。最近,发现MalK蛋白的过表达导致非常低水平的mal基因转录。在此报告中,我们描述了使用标记版本的MalT来提供证据,证明其在体外和体内均与MalK蛋白发生物理相互作用。此外,我们显示一种新的malK突变malK941导致MalK在体内下调MalT活性的能力增强。 MalK941蛋白结合但不水解ATP的事实表明,MalK941突变蛋白模仿了正常MalK蛋白的无活性,ATP结合形式。相反,具有高水平MalK ATPase的细胞显示出下调MalT并组成性表达几个mal基因的能力降低。这些结果与MalK的非活性形式下调MalT并减少转录的模型相符,而MalK的活性形式则没有。该模型表明细菌可能能够通过与运输相关的ATP水解水平将有关细胞外底物可用性的信息耦合到转录装置。

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