Genetic Dissection of Cyclic di-GMP Signalling in Pseudomonas aeruginosa via Systematic Diguanylate Cyclase Disruption

被引:0
作者
Martino, Roman A. [1 ,2 ]
Volke, Daniel C. [3 ]
Tenaglia, Albano H. [1 ,2 ]
Tribelli, Paula M. [4 ,5 ]
Nikel, Pablo I. [3 ]
Smania, Andrea M. [1 ,2 ]
机构
[1] Univ Nacl Cordoba, Fac Ciencias Quim, Dept Quim Biol Ranwel Caputto, Cordoba, Argentina
[2] Univ Nacl Cordoba, Ctr Invest Quim Biol Cordoba CIQUIBIC, CONICET, Cordoba, Argentina
[3] Tech Univ Denmark, Novo Nord Fdn Ctr Biosustainabil, Kongens Lyngby, Denmark
[4] Univ Buenos Aires, Fac Ciencias Exactas & Nat, Dept Quim Biol, Buenos Aires, Argentina
[5] Univ Buenos Aires, Fac Ciencias Exactas & Nat IQUIBICEN, CONICET, Inst Quim Biol, Buenos Aires, Argentina
来源
MICROBIAL BIOTECHNOLOGY | 2025年 / 18卷 / 04期
基金
欧盟地平线“2020”;
关键词
biofilms; c-di-GMP; CRISPR/Cas9; Diguanylate cyclases; microbial physiology; Pseudomonas aeruginosa; synthetic biology; STAPHYLOCOCCUS-AUREUS; BIOFILM FORMATION; BROAD-RANGE; EXPRESSION; VIRULENCE; MOTILITY; PUTIDA; GGDEF; METABOLISM; RESISTANCE;
D O I
10.1111/1751-7915.70137
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
The second messenger bis-(3 ' -> 5 ')-cyclic dimeric guanosine monophosphate (c-di-GMP) governs adaptive responses in the opportunistic pathogen Pseudomonas aeruginosa, including biofilm formation and the transition from acute to chronic infections. Understanding the intricate c-di-GMP signalling network remains challenging due to the overlapping activities of numerous diguanylate cyclases (DGCs). In this study, we employed a CRISPR-based multiplex genome-editing tool to disrupt all 32 GGDEF domain-containing proteins (GCPs) implicated in c-di-GMP signalling in P. aeruginosa PA14. Phenotypic and physiological analyses revealed that the resulting mutant was unable to form biofilms and had attenuated virulence. Residual c-di-GMP levels were still detected despite the extensive GCP disruption, underscoring the robustness of this regulatory network. Taken together, these findings provide insights into the complex c-di-GMP metabolism and showcase the importance of functional overlapping in bacterial signalling. Moreover, our approach overcomes the native redundancy in c-di-GMP synthesis, providing a framework to dissect individual DGC functions and paving the way for targeted strategies to address bacterial adaptation and pathogenesis.
引用
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页数:21
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