首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >Trigger phosphodiesterases as a novel class of c-di-GMP effector proteins
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Trigger phosphodiesterases as a novel class of c-di-GMP effector proteins

机译:触发磷酸二酯酶作为一类新的c-di-GMP效应蛋白

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摘要

The bacterial second messenger c-di-GMP controls bacterial biofilm formation, motility, cell cycle progression, development and virulence. It is synthesized by diguanylate cyclases (with GGDEF domains), degraded by specific phosphodiesterases (PDEs, with EAL of HD-GYP domains) and sensed by a wide variety of c-di-GMP-binding effectors that control diverse targets. c-di-GMP-binding effectors can be riboswitches as well as proteins with highly diverse structures and functions. The latter include 'degenerate' GGDEF/EAL domain proteins that are enzymatically inactive but still able to bind c-di-GMP. Surprisingly, two enzymatically active 'trigger PDEs', the Escherichia coli proteins PdeR and PdeL, have recently been added to this list of c-di-GMP-sensing effectors. Mechanistically, trigger PDEs are multifunctional. They directly and specifically interact with a macromolecular target (e.g. with a transcription factor or directly with a promoter region), whose activity they control by their binding and degradation of c-di-GMP their PDE activity thus represents the c-di-GMP sensor or effector function. In this process, c-di-GMP serves as a regulatory ligand, but in contrast to classical allosteric control, this ligand is also degraded. The resulting kinetics and circuitry of control are ideally suited for trigger PDEs to serve as key components in regulatory switches.
机译:细菌第二信使c-di-GMP控制细菌生物膜的形成,运动,细胞周期进程,发育和毒力。它是由双鸟苷酸环化酶(具有GGDEF结构域)合成,被特定的磷酸二酯酶(PDE,具有HD-GYP结构域的EAL降解)降解,并被控制不同靶标的各种c-di-GMP结合效应子所感知。 c-di-GMP结合效应子可以是核糖开关以及具有高度多样的结构和功能的蛋白质。后者包括“简并的” GGDEF / EAL结构域蛋白,该蛋白在酶学上是无活性的,但仍然能够结合c-di-GMP。令人惊讶的是,最近有两种具有酶促活性的“触发PDE”,即大肠杆菌蛋白PdeR和PdeL,被添加到了这种对c-di-GMP敏感的效应子中。从机制上讲,触发PDE是多功能的。它们直接和特异性地与大分子靶标相互作用(例如,与转录因子或直接与启动子区相互作用),它们的活性通过其c-di-GMP的结合和降解来控制,其PDE活性因此代表了c-di-GMP传感器或效应器功能。在此过程中,c-di-GMP用作调节配体,但与经典的变构控制相反,该配体也被降解。由此产生的动力学和控制电路非常适合触发PDE,用作调节开关中的关键组件。

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