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The regulatory link between carbon and nitrogen metabolism in Bacillus subtilis: regulation of the gltAB operon by the catabolite control protein CcpA

机译:枯草芽孢杆菌碳和氮代谢之间的调节联系:CABolite对照蛋白CCPA调节Gltab操纵子

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Bacillus subtilis assimilates ammonium by the concerted action of glutamine synthetase and glutamate synthase. The expression of the gltAB operon encoding the latter enzyme is impaired in B. subtilis ccpA mutant strains. CcpA is a pleiotropic transcriptional regulator that is the key factor in the regulation of carbon metabolism. However, in addition to their defect in catabolite repression ccpA mutants are unable to grow on minimal media with glucose and ammonium as the single sources of carbon and nitrogen, respectively. In this work, the expression of the gltAB operon was analysed and its role in growth on minimal sugar/ammonium media was studied. Expression of gltAB requires induction by glucose or other glycolytically catabolized carbon sources. In ccpA mutants, gltAB cannot be induced by glucose due to the low activity of the phosphotransferase sugar transport system in these mutants. A mutation that allowed phosphotransferase system activity in a ccpA background simultaneously restored glucose induction of gltAB and growth on glucose/ammonium medium. Moreover, artificial induction of the gltAB operon in the ccpA mutant allowed the mutant strain to grow on minimal medium with glucose and ammonium. It may be concluded that expression of the gltAB operon depends on the accumulation of glycolytic intermediates which cannot occur in the ccpA mutant. The lack of gltAB induction is the bottleneck that prevents growth of the ccpA mutant on glucose/ammonium media. The control of expression of the gltAB operon by CcpA provides a major regulatory link between carbon and amino acid metabolism.
机译:枯草芽孢杆菌通过谷氨酰胺合成酶和谷氨酸合成酶的齐节作用同化铵。编码后一酶的Gltab操纵子的表达在B.枯草芽孢杆菌CCPA突变体菌株中受到损害。 CCPA是一种磷酸性转录调节因子,是碳代谢调节的关键因素。然而,除了他们在Catabolite抑制的缺陷外,CCPA突变体分别不能在最小培养基上生长葡萄糖和铵作为单一碳和氮源的源。在这项工作中,研究了Gltab操纵子的表达,研究了其在最小糖/铵培养基上的生长中的作用。 GlTab的表达需要葡萄糖或其他甘油敏碳碳源的诱导。在CCPA突变体中,由于这些突变体中的磷酸转移酶糖传输系统的低活性,GlTab不能被葡萄糖诱导。一种突变,使CCPA背景中的Phosphot ransfase系统活性同时恢复Gltab和生长对葡萄糖/铵培养基的葡萄糖诱导。此外,CCPA突变体中GLTAB操纵子的人工诱导允许突变菌株在葡萄糖和铵的最小培养基上生长。可以得出结论,Gltab操纵子的表达取决于在CCPA突变体中不能发生的糖酵解中间体的积累。缺乏Gltab诱导是防止CCPA突变体在葡萄糖/铵介质上生长的瓶颈。 CCPA对Gltab操纵子的表达的控制提供了碳和氨基酸代谢之间的主要调节联系。

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