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IV 型菌毛翻译后修饰调节细菌菌落的物质特性。

Type IV Pilin Post-Translational Modifications Modulate Material Properties of Bacterial Colonies.

机构信息

Institute for Biological Physics, University of Cologne, Cologne, Germany.

Department of Biological Sciences, Center for Integrative Microbial Evolution, University of Oslo, Oslo, Norway.

出版信息

Biophys J. 2019 Mar 5;116(5):938-947. doi: 10.1016/j.bpj.2019.01.020. Epub 2019 Jan 29.

Abstract

Bacterial type 4 pili (T4P) are extracellular polymers that initiate the formation of microcolonies and biofilms. T4P continuously elongate and retract. These pilus dynamics crucially affect the local order, shape, and fluidity of microcolonies. The major pilin subunit of the T4P bears multiple post-translational modifications. By interfering with different steps of the pilin glycosylation and phosphoform modification pathways, we investigated the effect of pilin post-translational modification on the shape and dynamics of microcolonies formed by Neisseria gonorrhoeae. Deleting the phosphotransferase responsible for phosphoethanolamine modification at residue serine 68 inhibits shape relaxations of microcolonies after perturbation and causes bacteria carrying the phosphoform modification to segregate to the surface of mixed colonies. We relate these mesoscopic phenotypes to increased attractive forces generated by T4P between cells. Moreover, by deleting genes responsible for the pilin glycan structure, we show that the number of saccharides attached at residue serine 63 affects the ratio between surface tension and viscosity and cause sorting between bacteria carrying different pilin glycoforms. We conclude that different pilin post-translational modifications moderately affect the attractive forces between bacteria but have severe effects on the material properties of microcolonies.

摘要

细菌 IV 型菌毛(T4P)是一种细胞外聚合物,能够启动微菌落和生物膜的形成。T4P 会持续地延伸和缩回。这些菌毛动力学对微菌落的局部有序性、形状和流动性有至关重要的影响。T4P 的主要菌毛亚基带有多个翻译后修饰。通过干扰菌毛糖基化和磷酸化修饰途径的不同步骤,我们研究了淋病奈瑟菌中菌毛翻译后修饰对微菌落形状和动力学的影响。删除负责丝氨酸 68 残基磷酸乙醇胺修饰的磷酸转移酶会抑制微菌落在受到干扰后的形状松弛,并导致携带磷酸化修饰的细菌聚集到混合菌落的表面。我们将这些介观表型与细胞间 T4P 产生的吸引力增加联系起来。此外,通过删除负责菌毛聚糖结构的基因,我们表明附着在丝氨酸 63 残基上的糖数量会影响表面张力与粘度的比值,并导致携带不同菌毛糖型的细菌发生分选。我们得出结论,不同的菌毛翻译后修饰会适度影响细菌之间的吸引力,但会对微菌落的物质性质产生严重影响。

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