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一种新型聚糖修饰口腔细菌齿垢密螺旋体的鞭毛丝蛋白。

A novel glycan modifies the flagellar filament proteins of the oral bacterium Treponema denticola.

作者信息

Kurniyati Kurni, Kelly John F, Vinogradov Evgeny, Robotham Anna, Tu Youbing, Wang Juyu, Liu Jun, Logan Susan M, Li Chunhao

机构信息

Department of Oral Biology, The State University of New York at Buffalo, New York, NY, 14214, USA.

Vaccine Program, Human Health Therapeutics, National Research Council, Ottawa, Ontario, K1A 0R6, Canada.

出版信息

Mol Microbiol. 2017 Jan;103(1):67-85. doi: 10.1111/mmi.13544. Epub 2016 Oct 27.

Abstract

While protein glycosylation has been reported in several spirochetes including the syphilis bacterium Treponema pallidum and Lyme disease pathogen Borrelia burgdorferi, the pertinent glycan structures and their roles remain uncharacterized. Herein, a novel glycan with an unusual chemical composition and structure in the oral spirochete Treponema denticola, a keystone pathogen of periodontitis was reported. The identified glycan of mass 450.2 Da is composed of a monoacetylated nonulosonic acid (Non) with a novel extended N7 acyl modification, a 2-methoxy-4,5,6-trihydroxy-hexanoyl residue in which the Non has a pseudaminic acid configuration (L-glycero-L-manno) and is β-linked to serine or threonine residues. This novel glycan modifies the flagellin proteins (FlaBs) of T. denticola by O-linkage at multiple sites near the D1 domain, a highly conserved region of bacterial flagellins that interact with Toll-like receptor 5. Furthermore, mutagenesis studies demonstrate that the glycosylation plays an essential role in the flagellar assembly and motility of T. denticola. To our knowledge, this novel glycan and its unique modification sites have not been reported previously in any bacteria.

摘要

虽然在包括梅毒螺旋体苍白密螺旋体和莱姆病病原体伯氏疏螺旋体在内的几种螺旋体中都报道了蛋白质糖基化现象,但相关的聚糖结构及其作用仍未得到表征。在此,报道了一种在牙周炎关键病原体口腔螺旋体齿垢密螺旋体中具有不寻常化学组成和结构的新型聚糖。鉴定出的质量为450.2 Da的聚糖由具有新型扩展N7酰基修饰的单乙酰化非ulosonic酸(Non)、一个2-甲氧基-4,5,6-三羟基己酰基残基组成,其中Non具有假氨基糖构型(L-甘油-L-甘露糖),并通过β键与丝氨酸或苏氨酸残基相连。这种新型聚糖通过O-连接在D1结构域附近的多个位点修饰齿垢密螺旋体的鞭毛蛋白(FlaBs),D1结构域是细菌鞭毛蛋白与Toll样受体5相互作用的高度保守区域。此外,诱变研究表明糖基化在齿垢密螺旋体的鞭毛组装和运动中起着至关重要的作用。据我们所知,这种新型聚糖及其独特的修饰位点以前在任何细菌中都没有报道过。

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