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SadC 通过与膜结合来增强其环二鸟苷酸(c-di-GMP)环化酶活性,从而控制铜绿假单胞菌的胞外多糖合成和生物膜形成。

Membrane association of SadC enhances its diguanylate cyclase activity to control exopolysaccharides synthesis and biofilm formation in Pseudomonas aeruginosa.

机构信息

State Key Laboratory of Microbial Resources, Institute of Microbiology, Chinese Academy of Sciences, Beijing, 100101, China.

University of the Chinese Academy of Sciences, Beijing, 100049, China.

出版信息

Environ Microbiol. 2016 Oct;18(10):3440-3452. doi: 10.1111/1462-2920.13263. Epub 2016 Mar 17.

Abstract

Cyclic diguanosine monophosphate (c-di-GMP) is one of the most important bacterial second messengers that controls many bacterial cellular functions including lifestyle switch between plankton and biofilm. Surface attachment defective (SadC) is a diguanylate cyclase (DGC) involved in the biosynthesis of c-di-GMP in Pseudomonas aeruginosa, an opportunistic pathogen that can cause diverse infections. Here we report the crystal structure of GGDEF domain from SadC and the critical role of the trans-membrane (TM) domain of SadC with regard to biofilm formation, exopolysaccharide production and motility. We showed that over-expression of SadC in P. aeruginosa PAO1 totally inhibited swimming motility and significantly enhanced the production of exopolysaccharide Psl. SadC lacking TM domains (SadC ) could not localize on cytoplasmic membrane and form cluster, lost the ability to inhibit the swimming and twitching motility, and showed the attenuated activity to promote Psl production despite that SadC was able to catalyze the synthesize of c-di-GMP in vitro and in vivo. The GGDEF domain of SadC has a typical GGDEF structure and the α-helix connected the TM domains with SadC GGDEF domain is essential for SadC to form DGC oligomers. Our data imply that membrane association of SadC promotes its DGC activity by affecting the formation of active DGC oligomers.

摘要

环二鸟苷酸(c-di-GMP)是细菌中最重要的第二信使之一,它控制着许多细菌的细胞功能,包括浮游生物和生物膜之间的生活方式转换。表面附着缺陷(SadC)是一种双鸟苷酸环化酶(DGC),参与铜绿假单胞菌(一种机会性病原体,可引起多种感染)中 c-di-GMP 的生物合成。在这里,我们报告了 SadC 的 GGDEF 结构域的晶体结构,以及 SadC 的跨膜(TM)结构域在生物膜形成、胞外多糖产生和运动性方面的关键作用。我们表明,SadC 在铜绿假单胞菌 PAO1 中的过表达完全抑制了泳动运动,并显著增强了胞外多糖 Psl 的产生。缺乏 TM 结构域的 SadC(SadC )不能定位于细胞质膜上并形成簇,丧失了抑制泳动和抽搐运动的能力,并且尽管 SadC 能够在体外和体内催化 c-di-GMP 的合成,但促进 Psl 产生的活性降低。SadC 的 GGDEF 结构域具有典型的 GGDEF 结构,连接 TM 结构域与 SadC GGDEF 结构域的α-螺旋对于 SadC 形成 DGC 寡聚体至关重要。我们的数据表明,SadC 的膜结合通过影响活性 DGC 寡聚体的形成来促进其 DGC 活性。

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