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首页> 外文期刊>The FEBS journal >Molecular mechanism of PdxR-a transcriptional activator involved in the regulation of vitamin B-6 biosynthesis in the probiotic bacterium Bacillusclausii
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Molecular mechanism of PdxR-a transcriptional activator involved in the regulation of vitamin B-6 biosynthesis in the probiotic bacterium Bacillusclausii

机译:PdxR-a转录激活因子参与益生菌芽孢杆菌中维生素B-6生物合成调控的分子机制

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摘要

Pyridoxal 5-phosphate (PLP), the well-known active form of vitamin B-6, is an essential enzyme cofactor involved in a large number of metabolic processes. PLP levels need to be finely tuned in response to cell requirements; however, little is known about the regulation of PLP biosynthesis and recycling pathways. The transcriptional regulator PdxR activates transcription of the pdxST genes encoding PLP synthase. It is characterized by an N-terminal helix-turn-helix motif that binds DNA and an effector-binding C-terminal domain homologous to PLP-dependent enzymes. Although it is known that PLP acts as an anti-activator, the mechanism of action of PdxR is unknown. In the present study, we analyzed the biochemical and DNA-binding properties of PdxR from the probiotic Bacillusclausii. Spectroscopic measurements showed that PLP is the only B-6 vitamer that acts as an effector molecule of PdxR. Binding of PLP to PdxR determines a protein conformational change, as detected by gel filtration chromatography and limited proteolysis experiments. We showed that two direct repeats and one inverted repeat are present in the DNA promoter region and PdxR is able to bind DNA fragments containing any combination of two of them. However, when PLP binds to PdxR, it modifies the DNA-binding properties of the protein, making it selective for inverted repeats. A molecular mechanism is proposed in which the two different DNA binding modalities of PdxR determined by the presence or absence of PLP are responsible for the control of pdxST transcription.
机译:5-磷酸吡rid醛(PLP)是众所周知的维生素B-6的活性形式,是参与大量代谢过程的重要酶辅因子。需要根据电池需求对PLP水平进行微调。然而,关于PLP生物合成和再循环途径的调控知之甚少。转录调节因子PdxR激活编码PLP合酶的pdxST基因的转录。它的特征是与DNA结合的N末端螺旋-转-螺旋基序和与PLP依赖性酶同源的效应子结合C末端结构域。尽管已知PLP可以作为抗激活剂,但PdxR的作用机理尚不清楚。在本研究中,我们分析了益生芽孢杆菌中PdxR的生化和DNA结合特性。光谱测量表明,PLP是唯一充当PdxR效应分子的B-6维生素。 PLP与PdxR的结合决定了蛋白质的构象变化,这是通过凝胶过滤色谱法和有限的蛋白水解实验检测到的。我们显示了DNA启动子区域中存在两个直接重复和一个反向重复,并且PdxR能够结合包含其中两个任意组合的DNA片段。但是,当PLP与PdxR结合时,它修饰了蛋白质的DNA结合特性,使其对反向重复序列具有选择性。提出了一种分子机制,其中由PLP的存在或不存在决定的PdxR的两种不同的DNA结合方式负责pdxST转录的控制。

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