首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Allosteric Transitions Direct Protein Tagging by PafA the Prokaryotic Ubiquitin-like Protein (Pup) Ligase
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Allosteric Transitions Direct Protein Tagging by PafA the Prokaryotic Ubiquitin-like Protein (Pup) Ligase

机译:变构转变直接蛋白质标记的PafA原核泛素样蛋白(Pup)连接酶。

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摘要

Protein degradation via prokaryotic ubiquitin-like protein (Pup) tagging is conserved in bacteria belonging to the phyla Actinobacteria and Nitrospira. The physiological role of this novel proteolytic pathway is not yet clear, although in Mycobacterium tuberculosis, the world's most threatening bacterial pathogen, Pup tagging is important for virulence. PafA, the Pup ligase, couples ATP hydrolysis with Pup conjugation to lysine side chains of protein substrates. PafA is the sole Pup ligase in M. tuberculosis and apparently, in other bacteria. Thus, whereas PafA is a key player in the Pup tagging (i.e. pupylation) system, control of its activity and interactions with target protein substrates remain poorly understood. In this study, we examined the mechanism of protein pupylation by PafA in Mycobacterium smegmatis, a model mycobacterial organism. We report that PafA is an allosteric enzyme that binds its target substrates cooperatively and find that PafA allostery is controlled by the binding of target protein substrates, yet is unaffected by Pup binding. Analysis of PafA pupylation using engineered substrates differing in the number of pupylation sites points to PafA acting as a dimer. These findings suggest that protein pupylation can be regulated at the level of PafA allostery.
机译:通过原核泛素样蛋白(Pup)标签进行的蛋白降解在属于放线菌和硝化螺旋菌的细菌中得以保留。尽管在世界上最具威胁性的细菌病原体结核分枝杆菌中,Pup标记对于毒力很重要,但是这种新型蛋白水解途径的生理作用尚不清楚。 PafA(Pup连接酶)将ATP水解与Pup偶联偶联至蛋白质底物的赖氨酸侧链。 PafA是结核分枝杆菌以及其他细菌中唯一的Pup连接酶。因此,尽管PafA是Pup标记(即pupylation)系统中的关键参与者,但对其活性的控制以及与靶蛋白底物的相互作用的了解仍然很少。在这项研究中,我们研究了耻垢分枝杆菌(一种模型分枝杆菌生物)中PafA引起的蛋白Pupylation的机制。我们报告说,PafA是一种变构酶,可以协同结合其靶底物,并且发现PafA变构物受靶蛋白底物的结合控制,但不受Pup结合的影响。使用工程化底物的puflation位点数量不同的PafA pupylation分析表明,PafA充当二聚体。这些发现表明,可以在PafA变构水平上调节蛋白的酰化作用。

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