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基于EAL结构域的环二鸟苷酸特异性磷酸二酯酶中保守环的功能作用。

The functional role of a conserved loop in EAL domain-based cyclic di-GMP-specific phosphodiesterase.

作者信息

Rao Feng, Qi Yaning, Chong Hui Shan, Kotaka Masayo, Li Bin, Li Jinming, Lescar Julien, Tang Kai, Liang Zhao-Xun

机构信息

School of Biological Sciences, Nanyang Technological University, Singapore.

出版信息

J Bacteriol. 2009 Aug;191(15):4722-31. doi: 10.1128/JB.00327-09. Epub 2009 Apr 17.

Abstract

EAL domain-based cyclic di-GMP (c-di-GMP)-specific phosphodiesterases play important roles in bacteria by regulating the cellular concentration of the dinucleotide messenger c-di-GMP. EAL domains belong to a family of (beta/alpha)(8) barrel fold enzymes that contain a functional active site loop (loop 6) for substrate binding and catalysis. By examining the two EAL domain-containing proteins RocR and PA2567 from Pseudomonas aeruginosa, we found that the catalytic activity of the EAL domains was significantly altered by mutations in the loop 6 region. The impact of the mutations ranges from apparent substrate inhibition to alteration of oligomeric structure. Moreover, we found that the catalytic activity of RocR was affected by mutating the putative phosphorylation site (D56N) in the phosphoreceiver domain, with the mutant exhibiting a significantly smaller Michealis constant (K(m)) than that of the wild-type RocR. Hydrogen-deuterium exchange by mass spectrometry revealed that the decrease in K(m) correlates with a change of solvent accessibility in the loop 6 region. We further examined Acetobacter xylinus diguanylate cyclase 2, which is one of the proteins that contains a catalytically incompetent EAL domain with a highly degenerate loop 6. We demonstrated that the catalytic activity of the stand-alone EAL domain toward c-di-GMP could be recovered by restoring loop 6. On the basis of these observations and in conjunction with the structural data of two EAL domains, we proposed that loop 6 not only mediates the dimerization of EAL domain but also controls c-di-GMP and Mg(2+) ion binding. Importantly, sequence analysis of the 5,862 EAL domains in the bacterial genomes revealed that about half of the EAL domains harbor a degenerate loop 6, indicating that the mutations in loop 6 may represent a divergence of function for EAL domains during evolution.

摘要

基于EAL结构域的环二鸟苷酸(c-di-GMP)特异性磷酸二酯酶通过调节二核苷酸信使c-di-GMP的细胞浓度在细菌中发挥重要作用。EAL结构域属于(β/α)8桶状折叠酶家族,其包含用于底物结合和催化的功能性活性位点环(环6)。通过研究铜绿假单胞菌中两个含EAL结构域的蛋白RocR和PA2567,我们发现环6区域的突变显著改变了EAL结构域的催化活性。突变的影响范围从明显的底物抑制到寡聚体结构的改变。此外,我们发现通过突变磷酸受体结构域中的假定磷酸化位点(D56N)会影响RocR的催化活性,该突变体的米氏常数(K(m))明显小于野生型RocR。质谱氢氘交换表明K(m)的降低与环6区域溶剂可及性的变化相关。我们进一步研究了木醋杆菌双鸟苷酸环化酶2,它是一种含有催化无活性EAL结构域且环6高度退化的蛋白之一。我们证明通过恢复环6可以恢复独立EAL结构域对c-di-GMP的催化活性。基于这些观察结果并结合两个EAL结构域的结构数据,我们提出环6不仅介导EAL结构域的二聚化,还控制c-di-GMP和Mg(2+)离子的结合。重要的是,对细菌基因组中5862个EAL结构域的序列分析表明,约一半的EAL结构域具有退化的环6,这表明环6中的突变可能代表了EAL结构域在进化过程中的功能分化。

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