4.7 Article

Role of DegQ in differential stability of flagellin subunits in Vibrio vulnificus

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NPJ BIOFILMS AND MICROBIOMES
卷 7, 期 1, 页码 -

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NATURE PORTFOLIO
DOI: 10.1038/s41522-021-00206-7

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  1. National Research Foundation, Republic of Korea [NRF-2018R1A5A1025077, NRF-2021R1A2B5B02002477]

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The formation of Vibrio vulnificus biofilms involves a complex process where the production and stability of flagellin proteins are controlled by DegQ and FlaJ at different stages, affecting the development of biofilms.
Biofilm formation of Vibrio vulnificus is initiated by adherence of flagellated cells to surfaces, and then flagellum-driven motility is not necessary during biofilm maturation. Once matured biofilms are constructed, cells become flagellated and swim to disperse from biofilms. As a consequence, timely regulations of the flagellar components' expression are crucial to complete a biofilm life-cycle. In this study, we demonstrated that flagellins' production is regulated in a biofilm stage-specific manner, via activities of a protease DegQ and a chaperone FlaJ. Among four flagellin subunits for V. vulnificus filament, FlaC had the highest affinities to hook-associated proteins, and is critical for maturating flagellum, showed the least susceptibility to DegQ due to the presence of methionine residues in its DegQ-sensitive domains, ND1 and CD0. Therefore, differential regulation by DegQ and FlaJ controls the cytoplasmic stability of flagellins, which further determines the motility-dependent, stage-specific development of biofilms.

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