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结构洞察铜绿假单胞菌响应调节因子 RocR 在环二鸟苷酸信号转导中的调控机制。

Structural insights into the regulatory mechanism of the response regulator RocR from Pseudomonas aeruginosa in cyclic Di-GMP signaling.

机构信息

School of Biological Sciences, Nanyang Technological University, Singapore.

出版信息

J Bacteriol. 2012 Sep;194(18):4837-46. doi: 10.1128/JB.00560-12. Epub 2012 Jun 29.

Abstract

The nucleotide messenger cyclic di-GMP (c-di-GMP) plays a central role in the regulation of motility, virulence, and biofilm formation in many pathogenic bacteria. EAL domain-containing phosphodiesterases are the major signaling proteins responsible for the degradation of c-di-GMP and maintenance of its cellular level. We determined the crystal structure of a single mutant (R286W) of the response regulator RocR from Pseudomonas aeruginosa to show that RocR exhibits a highly unusual tetrameric structure arranged around a single dyad, with the four subunits adopting two distinctly different conformations. Subunits A and B adopt a conformation with the REC domain located above the c-di-GMP binding pocket, whereas subunits C and D adopt an open conformation with the REC domain swung to the side of the EAL domain. Remarkably, the access to the substrate-binding pockets of the EAL domains of the open subunits C and D are blocked in trans by the REC domains of subunits A and B, indicating that only two of the four active sites are engaged in the degradation of c-di-GMP. In conjunction with biochemical and biophysical data, we propose that the structural changes within the REC domains triggered by the phosphorylation are transmitted to the EAL domain active sites through a pathway that traverses the dimerization interfaces composed of a conserved regulatory loop and the neighboring motifs. This exquisite mechanism reinforces the crucial role of the regulatory loop and suggests that similar regulatory mechanisms may be operational in many EAL domain proteins, considering the preservation of the dimerization interface and the spatial arrangement of the regulatory domains.

摘要

核苷酸信使环二鸟苷酸 (c-di-GMP) 在许多致病性细菌的运动性、毒力和生物膜形成的调节中起着核心作用。EAL 结构域包含的磷酸二酯酶是负责 c-di-GMP 降解和维持其细胞水平的主要信号蛋白。我们测定了铜绿假单胞菌响应调节子 RocR 的单个突变体 (R286W) 的晶体结构,表明 RocR 表现出一种非常不寻常的四聚体结构,围绕着一个单一的二分对称轴排列,四个亚基采用两种截然不同的构象。亚基 A 和 B 采用 REC 结构域位于 c-di-GMP 结合口袋上方的构象,而亚基 C 和 D 采用 REC 结构域摆动到 EAL 结构域侧面的开放构象。值得注意的是,开放亚基 C 和 D 的 EAL 结构域的底物结合口袋的进入被亚基 A 和 B 的 REC 结构域在反式中阻断,表明只有四个活性位点中的两个参与 c-di-GMP 的降解。结合生化和生物物理数据,我们提出,由磷酸化触发的 REC 结构域内的结构变化通过穿过由保守调节环和相邻基序组成的二聚化界面的途径传递到 EAL 结构域活性位点。这种精致的机制加强了调节环的关键作用,并表明类似的调节机制可能在许多 EAL 结构域蛋白中起作用,考虑到二聚化界面的保存和调节域的空间排列。

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