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DNA complexed structure of the key transcription factor initiating development in sporulating bacteria

机译:DNA复杂结构的关键转录因子启动孢子形成细菌的发展

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摘要

Sporulation in Bacillus species, the ultimate bacterial adaptive response, requires the precisely coordinated expression of a complex genetic pathway, and is initiated through the accumulation of the phosphorylated form of Spo0A, a pleiotropic response regulator transcription factor. Spo0A controls the transcription of several hundred genes in all spore-forming Bacilli including genes for sporulation and toxin regulation in pathogens such as Bacillus anthracis. The crystal structure of the effector domain of Spo0A from Bacillus subtilis in complex with its DNA target was determined. In the crystal lattice, two molecules form a tandem dimer upon binding to adjacent sites on DNA. The protein:protein and protein:DNA interfaces revealed in the crystal provide a basis for interpreting the transcription activation process and for the design of drugs to counter infections by these bacteria. [References: 43]
机译:芽孢杆菌属物种中的孢子形成是最终的细菌适应性反应,需要复杂的遗传途径的精确协调表达,并通过磷酸化形式的多效性反应调节因子转录因子Spo0A的积累而启动。 Spo0A控制着所有形成孢子的芽孢杆菌中数百个基因的转录,包括病原菌(如炭疽芽孢杆菌)中的孢子形成和毒素调控基因。确定了来自枯草芽孢杆菌的Spo0A效应子结构域与其晶体靶标复合的晶体结构。在晶格中,两个分子与DNA的相邻位点结合后形成串联二聚体。晶体中揭示的蛋白质:蛋白质和蛋白质:DNA界面为解释转录激活过程和设计抗击这些细菌感染的药物提供了基础。 [参考:43]

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