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环状二鸟苷单磷酸代谢蛋白的生物信息学和功能表征揭示了控制多种生物膜相关表型的关键二鸟苷酸环化酶。

Bioinformatic and functional characterization of cyclic-di-GMP metabolic proteins in unveils key diguanylate cyclases controlling multiple biofilm-associated phenotypes.

作者信息

Gong Xiao-Xiao, Zeng Yan-Hua, Chen Hai-Min, Zhang Na, Han Yue, Long Hao, Xie Zhen-Yu

机构信息

State Key Laboratory of Marine Resource Utilization in the South China Sea, Hainan University, Haikou, Hainan, China.

Hainan Provincial Key Laboratory for Tropical Hydrobiology and Biotechnology, Hainan University, Haikou, Hainan, China.

出版信息

Front Microbiol. 2023 Sep 21;14:1258415. doi: 10.3389/fmicb.2023.1258415. eCollection 2023.

Abstract

The biofilm lifestyle is critical for bacterial survival and proliferation in the fluctuating marine environment. Cyclic diguanylate (c-di-GMP) is a key second messenger during bacterial adaptation to various environmental signals, which has been identified as a master regulator of biofilm formation. However, little is known about whether and how c-di-GMP signaling regulates biofilm formation in , a globally dominant marine pathogen. Here, a large set of 63 proteins were predicted to participate in c-di-GMP metabolism (biosynthesis or degradation) in a pathogenic strain HN08155. Guided by protein homology, conserved domains and gene context information, a representative subset of 22 c-di-GMP metabolic proteins were selected to determine which ones affect biofilm-associated phenotypes. By comparing phenotypic differences between the wild-type and mutants or overexpression strains, we found that 22 c-di-GMP metabolic proteins can separately regulate different phenotypic outputs in . The results indicated that overexpression of four c-di-GMP metabolic proteins, including VA0356, VA1591 (CdgM), VA4033 (DgcB) and VA0088, strongly enhanced rugose colony morphotypes and strengthened Congo Red (CR) binding capacity, both of which are indicators of biofilm matrix overproduction. Furthermore, rugose enhanced colonies were accompanied by increased transcript levels of extracellular polysaccharide (EPS) biosynthesis genes and decreased expression of flagellar synthesis genes compared to smooth colonies (WTpBAD control), as demonstrated by overexpression strains WTp4033 and ∆p4033. Overall, the high abundance of c-di-GMP metabolic proteins in suggests that c-di-GMP signaling and regulatory system could play a key role in its response and adaptation to the ever-changing marine environment. This work provides a robust foundation for the study of the molecular mechanisms of c-di-GMP in the biofilm formation of

摘要

生物膜生活方式对于细菌在波动的海洋环境中的生存和增殖至关重要。环二鸟苷酸(c-di-GMP)是细菌适应各种环境信号过程中的关键第二信使,已被确定为生物膜形成的主要调节因子。然而,关于c-di-GMP信号传导是否以及如何调节一种全球占主导地位的海洋病原体——[病原体名称未给出]中的生物膜形成,人们知之甚少。在这里,预计有一大组63种蛋白质参与致病性[菌株名称未给出] HN08155中的c-di-GMP代谢(生物合成或降解)。在蛋白质同源性、保守结构域和基因上下文信息的指导下,选择了22种c-di-GMP代谢蛋白的代表性子集来确定哪些蛋白影响与生物膜相关的表型。通过比较野生型与突变体或过表达菌株之间的表型差异,我们发现22种c-di-GMP代谢蛋白可以分别调节[病原体名称未给出]中的不同表型输出。结果表明,包括VA0356、VA1591(CdgM)、VA4033(DgcB)和VA0088在内的四种c-di-GMP代谢蛋白的过表达强烈增强了皱纹菌落形态,并增强了刚果红(CR)结合能力,这两者都是生物膜基质过量产生的指标。此外,与光滑菌落(WTpBAD对照)相比,过表达菌株WTp4033和∆p4033表明,皱纹增强的菌落伴随着细胞外多糖(EPS)生物合成基因转录水平的增加和鞭毛合成基因表达的降低。总体而言,[病原体名称未给出]中c-di-GMP代谢蛋白的高丰度表明,c-di-GMP信号传导和调节系统可能在其对不断变化的海洋环境的反应和适应中起关键作用。这项工作为研究c-di-GMP在[病原体名称未给出]生物膜形成中的分子机制提供了坚实的基础

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