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首页> 外文期刊>Journal of bacteriology >Mlc Is a Transcriptional Activator with a Key Role in Integrating Cyclic AMP Receptor Protein and Integration Host Factor Regulation of Leukotoxin RNA Synthesis in Aggregatibacter actinomycetemcomitans
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Mlc Is a Transcriptional Activator with a Key Role in Integrating Cyclic AMP Receptor Protein and Integration Host Factor Regulation of Leukotoxin RNA Synthesis in Aggregatibacter actinomycetemcomitans

机译:Mlc是转录激活剂,在整合环AMP受体蛋白和整合宿主因子调节白杆菌放线菌中白细胞毒素RNA合成中起关键作用。

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Aggregatibacter actinomycetemcomitans, a periodontal pathogen, synthesizes leukotoxin (LtxA), a protein that helps the bacterium evade the host immune response. Transcription of the ltxA operon is induced during anaerobic growth. The cyclic AMP (cAMP) receptor protein (CRP) indirectly increases ltxA expression, but the intermediary regulator is unknown. Integration host factor (IHF) binds to and represses the leukotoxin promoter, but neither CRP nor IHF is responsible for the anaerobic induction of ltxA RNA synthesis. Thus, we have undertaken studies to identify other regulators of leukotoxin transcription and to demonstrate how these proteins work together to modulate leukotoxin synthesis. First, analyses of ltxA RNA expression from defined leukotoxin promoter mutations in the chromosome identify positions ?69 to ?35 as the key control region and indicate that an activator protein modulates leukotoxin transcription. We show that Mlc, which is a repressor in Escherichia coli, functions as a direct transcriptional activator in A. actinomycetemcomitans; an mlc deletion mutant reduces leukotoxin RNA synthesis, and recombinant Mlc protein binds specifically at the ?68 to ?40 region of the leukotoxin promoter. Furthermore, we show that CRP activates ltxA expression indirectly by increasing the levels of Mlc. Analyses of Δmlc, Δihf, and Δihf Δmlc strains demonstrate that Mlc can increase RNA polymerase (RNAP) activity directly and that IHF represses ltxA RNA synthesis mainly by blocking Mlc binding. Finally, a Δihf Δmlc mutant still induces ltxA during anaerobic growth, indicating that there are additional factors involved in leukotoxin transcriptional regulation. A model for the coordinated regulation of leukotoxin transcription is presented.
机译:牙周病原体聚集放线菌放线菌可合成白细胞毒素(LtxA),该蛋白可帮助细菌逃避宿主的免疫反应。在厌氧生长过程中诱导 ltxA 操纵子的转录。环状AMP(cAMP)受体蛋白(CRP)间接增加了 ltxA 的表达,但中间调控因子尚不清楚。整合宿主因子(IHF)结合并抑制白细胞毒素启动子,但CRP和IHF都不负责 ltxA RNA合成的厌氧诱导。因此,我们进行了研究以鉴定白细胞毒素转录的其他调节剂,并证明这些蛋白质如何协同作用来调节白细胞毒素的合成。首先,对染色体中定义的白细胞毒素启动子突变的 ltxA RNA表达进行分析,确定第69至第35位为关键控制区,并表明激活蛋白调节白细胞毒素的转录。我们显示,Mlc,这是在大肠杆菌中的阻遏物,在A.放线菌中起直接转录激活剂的作用。一个 mlc 缺失突变体减少了白细胞毒素RNA的合成,重组Mlc蛋白在白细胞毒素启动子的第68至第40位区域特异性结合。此外,我们表明CRP通过增加Mlc的水平间接激活 ltxA 表达。对Δ mlc ,Δ ihf 和Δ ihf Δ mlc 菌株的分析表明,Mlc可以增加RNA聚合酶( RNAP)直接起作用,而IHF主要通过阻断Mlc结合来抑制 ltxA RNA合成。最后,在厌氧生长过程中,Δ ihf Δ mlc 突变体仍诱导 ltxA ,表明白毒素的转录调控还涉及其他因素。提出了白细胞毒素转录的协调调控模型。

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