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果糖-1-磷酸是唯一的生理效应物,可激活假单胞菌的 Cra(FruR)调控蛋白。

Fructose 1-phosphate is the one and only physiological effector of the Cra (FruR) regulator of Pseudomonas putida.

机构信息

Systems and Synthetic Biology Program, Centro Nacional de Biotecnología (CNB-CSIC), Cantoblanco, Madrid 28049, Spain ; Escuela de Química, Universidad de Costa Rica, 2060 San José, Costa Rica.

Systems and Synthetic Biology Program, Centro Nacional de Biotecnología (CNB-CSIC), Cantoblanco, Madrid 28049, Spain.

出版信息

FEBS Open Bio. 2014 Apr 4;4:377-86. doi: 10.1016/j.fob.2014.03.013. eCollection 2014.

Abstract

Fructose-1-phosphate (F1P) is the preferred effector of the catabolite repressor/activator (Cra) protein of the soil bacterium Pseudomonas putida but its ability to bind other metabolic intermediates in vivo is unclear. The Cra protein of this microorganism (Cra(PP)) was submitted to mobility shift assays with target DNA sequences (the PfruB promoter) and candidate effectors fructose-1,6-bisphosphate (FBP), glucose 6-phosphate (G6P), and fructose-6-phosphate (F6P). 1 mM F1P was sufficient to release most of the Cra protein from its operators but more than 10 mM of FBP or G6P was required to free the same complex. However, isothermal titration microcalorimetry failed to expose any specific interaction between Cra(PP) and FBP or G6P. To solve this paradox, transcriptional activity of a PfruB-lacZ fusion was measured in wild-type and ΔfruB cells growing on substrates that change the intracellular concentrations of F1P and FBP. The data indicated that PfruB activity was stimulated by fructose but not by glucose or succinate. This suggested that Cra(PP) represses expression in vivo of the cognate fruBKA operon in a fashion dependent just on F1P, ruling out any other physiological effector. Molecular docking and dynamic simulations of the Cra-agonist interaction indicated that both metabolites can bind the repressor, but the breach in the relative affinity of Cra(PP) for F1P vs FBP is three orders of magnitude larger than the equivalent distance in the Escherichia coli protein. This assigns the Cra protein of P. putida the sole role of transducing the presence of fructose in the medium into a variety of direct and indirect physiological responses.

摘要

1-磷酸果糖(F1P)是土壤细菌恶臭假单胞菌的分解代谢物阻遏物/激活物(Cra)蛋白的首选效应物,但它在体内结合其他代谢中间产物的能力尚不清楚。该微生物的 Cra 蛋白(Cra(PP))与靶 DNA 序列(PfruB 启动子)和候选效应物 1-磷酸果糖(FBP)、葡萄糖 6-磷酸(G6P)和 6-磷酸果糖(F6P)一起进行了迁移率变动分析。1mM F1P 足以将大部分 Cra 蛋白从其操纵子中释放出来,但需要超过 10mM 的 FBP 或 G6P 才能释放相同的复合物。然而,等温滴定量热法未能揭示 Cra(PP)与 FBP 或 G6P 之间的任何特定相互作用。为了解决这个矛盾,在以改变细胞内 F1P 和 FBP 浓度的底物培养野生型和ΔfruB 细胞时,测量了 PfruB-lacZ 融合的转录活性。数据表明,PfruB 活性受到果糖的刺激,但不受葡萄糖或琥珀酸的刺激。这表明,Cra(PP)以仅依赖于 F1P 的方式在体内抑制同源 fruBKA 操纵子的表达,排除了任何其他生理效应物。Cra-激动剂相互作用的分子对接和动态模拟表明,两种代谢物都可以结合抑制剂,但 Cra(PP)对 F1P 与 FBP 的相对亲和力的差异是大肠杆菌蛋白的等效距离的三个数量级。这赋予了恶臭假单胞菌的 Cra 蛋白在将培养基中果糖的存在转化为各种直接和间接生理反应中的唯一作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aee9/4050194/fa6166cb075a/gr1.jpg

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