Topology and functional characterization of major outer membrane proteins of Treponema maltophilum and Treponema lecithinolyticum

IF 2.8 3区 医学 Q1 DENTISTRY, ORAL SURGERY & MEDICINE Molecular Oral Microbiology Pub Date : 2024-09-12 DOI:10.1111/omi.12484
Natalie K. Anselmi, Stephen T. Vanyo, Nicholas D. Clark, Dayron M. Leyva Rodriguez, Megan M. Jones, Sara Rosenthal, Dhara Patel, Richard T. Marconi, Michelle B. Visser
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Abstract

Numerous Treponema species are prevalent in the dysbiotic subgingival microbial community during periodontitis. The major outer sheath protein is a highly expressed virulence factor of the well‐characterized species Treponema denticola. Msp forms an oligomeric membrane protein complex with adhesin and porin properties and contributes to host–microbial interaction. Treponema maltophilum and Treponema lecithinolyticum species are also prominent during periodontitis but are relatively understudied. Msp‐like membrane surface proteins exist in T. maltophilum (MspA) and T. lecithinolyticum (MspTL), but limited information exists regarding their structural features or functionality. Protein profiling reveals numerous differences between these species, but minimal differences between strains of the same species. Using protein modeling tools, we predict MspA and MspTL monomeric forms to be large β‐barrel structures composed of 20 all‐next‐neighbor antiparallel β strands which most likely adopt a homotrimer formation. Using cell fractionation, Triton X‐114 phase partitioning, heat modifiability, and chemical and detergent release assays, we found evidence of amphiphilic integral membrane‐associated oligomerization for both native MspA and MspTL in intact spirochetes. Proteinase K accessibility and immunofluorescence assays demonstrate surface exposure of MspA and MspTL. Functionally, purified recombinant MspA or MspTL monomer proteins can impair neutrophil chemotaxis. Expressions of MspA or MspTL with a PelB leader sequence in Escherichia coli also demonstrate surface exposure and can impair neutrophil chemotaxis in an in vivo air pouch model of inflammation. Collectively, our data demonstrate that MspA and MspTL membrane proteins can contribute to pathogenesis of these understudied oral spirochete species.
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嗜麦芽链球菌和卵磷脂溶解性链球菌主要外膜蛋白的拓扑结构和功能表征
牙周炎期间,在菌群失调的龈下微生物群落中普遍存在大量的特雷波纳菌。主要外鞘蛋白是特征明确的牙周特雷波纳菌的高表达毒力因子。Msp 形成一种具有粘附蛋白和孔蛋白特性的寡聚膜蛋白复合物,有助于宿主与微生物之间的相互作用。嗜麦芽链球菌和卵磷脂溶解性链球菌在牙周炎中也很常见,但研究相对较少。嗜麦芽特雷伯菌(MspA)和卵磷脂溶解特雷伯菌(MspTL)中存在类似 Msp 的膜表面蛋白,但有关其结构特征或功能的信息十分有限。蛋白质分析表明这些物种之间存在许多差异,但同一物种不同菌株之间的差异却微乎其微。利用蛋白质建模工具,我们预测 MspA 和 MspTL 的单体形式是大型 β 管状结构,由 20 条全相邻的反平行 β 链组成,很可能采用同源三聚体形式。通过细胞分馏、Triton X-114相分离、热改性以及化学和去垢剂释放试验,我们发现在完整的螺旋体中,原生MspA和MspTL都存在两亲性整体膜相关寡聚的证据。蛋白酶 K 可及性和免疫荧光测定证明了 MspA 和 MspTL 的表面暴露。从功能上讲,纯化的重组 MspA 或 MspTL 单体蛋白可损害中性粒细胞的趋化性。在大肠杆菌中表达带有 PelB 引导序列的 MspA 或 MspTL 也显示出表面暴露,并能在体内气囊炎症模型中损害中性粒细胞趋化。总之,我们的数据表明,MspA 和 MspTL 膜蛋白可促进这些未得到充分研究的口腔螺旋体的致病机理。
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来源期刊
Molecular Oral Microbiology
Molecular Oral Microbiology DENTISTRY, ORAL SURGERY & MEDICINE-MICROBIOLOGY
CiteScore
6.50
自引率
5.40%
发文量
46
审稿时长
>12 weeks
期刊介绍: Molecular Oral Microbiology publishes high quality research papers and reviews on fundamental or applied molecular studies of microorganisms of the oral cavity and respiratory tract, host-microbe interactions, cellular microbiology, molecular ecology, and immunological studies of oral and respiratory tract infections. Papers describing work in virology, or in immunology unrelated to microbial colonization or infection, will not be acceptable. Studies of the prevalence of organisms or of antimicrobials agents also are not within the scope of the journal. The journal does not publish Short Communications or Letters to the Editor. Molecular Oral Microbiology is published bimonthly.
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