生物
DNA
效应器
HMG盒
转录因子
DNA结合域
遗传学
DNA结合位点
细胞生物学
结合位点
DNA结合蛋白
抄写(语言学)
DNA钳
生物物理学
计算生物学
基因
发起人
核糖核酸
基因表达
逆转录酶
语言学
哲学
作者
Ida Freda,Cécile Exertier,Anna Barile,Antonio Chaves-Sanjuan,Mirella Vivoli Vega,Michail N Isupov,Nicholas J. Harmer,Elena Gugole,Paolo Swuec,Martino Bolognesi,Anita Scipioni,Carmelinda Savino,Martino Luigi Di Salvo,Roberto Contestabile,Beatrice Vallone,Angela Tramonti,Linda Celeste Montemiglio
摘要
Abstract Specificity in protein–DNA recognition arises from the synergy of several factors that stem from the structural and chemical signatures encoded within the targeted DNA molecule. Here, we deciphered the nature of the interactions driving DNA recognition and binding by the bacterial transcription factor PdxR, a member of the MocR family responsible for the regulation of pyridoxal 5′-phosphate (PLP) biosynthesis. Single particle cryo-EM performed on the PLP-PdxR bound to its target DNA enabled the isolation of three conformers of the complex, which may be considered as snapshots of the binding process. Moreover, the resolution of an apo-PdxR crystallographic structure provided a detailed description of the transition of the effector domain to the holo-PdxR form triggered by the binding of the PLP effector molecule. Binding analyses of mutated DNA sequences using both wild type and PdxR variants revealed a central role of electrostatic interactions and of the intrinsic asymmetric bending of the DNA in allosterically guiding the holo-PdxR–DNA recognition process, from the first encounter through the fully bound state. Our results detail the structure and dynamics of the PdxR–DNA complex, clarifying the mechanism governing the DNA-binding mode of the holo-PdxR and the regulation features of the MocR family of transcription factors.
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