...
首页> 外文期刊>Journal of bacteriology >Complementation in trans of Porphyromonas gingivalis Lipopolysaccharide Biosynthetic Mutants Demonstrates Lipopolysaccharide Exchange
【24h】

Complementation in trans of Porphyromonas gingivalis Lipopolysaccharide Biosynthetic Mutants Demonstrates Lipopolysaccharide Exchange

机译:Porphyromonas Gingivalis脂多糖生物合成突变体的辅成证明了脂多糖交换

获取原文
   

获取外文期刊封面封底 >>

       

摘要

Porphyromonas gingivalis, a bacterial pathogen contributing to human periodontitis, exports and anchors cargo proteins to its surface, enabling the production of black pigmentation using a type IX secretion system (T9SS) and conjugation to anionic lipopolysaccharide (A-LPS). To determine whether T9SS components need to be assembled in situ for correct secretion and A-LPS modification of cargo proteins, combinations of nonpigmented mutants lacking A-LPS or a T9SS component were mixed to investigate in trans complementation. Reacquisition of pigmentation occurred only between an A-LPS mutant and a T9SS mutant, which coincided with A-LPS modification of cargo proteins detected by Western blotting and coimmunoprecipitation/quantitative mass spectrometry. Complementation also occurred using an A-LPS mutant mixed with outer membrane vesicles (OMVs) or purified A-LPS. Fluorescence experiments demonstrated that OMVs can fuse with and transfer lipid to P. gingivalis, leading to the conclusion that complementation of T9SS function occurred through A-LPS transfer between cells. None of the two-strain crosses involving only the five T9SS OM component mutants produced black pigmentation, implying that the OM proteins cannot be transferred in a manner that restores function and surface pigmentation, and hence, a more ordered temporal in situ assembly of T9SS components may be required. Our results show that LPS can be transferred between cells or between cells and OMVs to complement deficiencies in LPS biosynthesis and hemin-related pigmentation to reveal a potentially new mechanism by which the oral microbial community is modulated to produce clinical consequences in the human host. IMPORTANCE Porphyromonas gingivalis is a keystone pathogen contributing to periodontitis in humans, leading to tooth loss. The oral microbiota is essential in this pathogenic process and changes from predominantly Gram-positive (health) to predominantly Gram-negative (disease) species. P. gingivalis uses its type IX secretion system (T9SS) to secrete and conjugate virulence proteins to anionic lipopolysaccharide (A-LPS). This study investigated whether components of this secretion system could be complemented and found that it was possible for A-LPS biosynthetic mutants to be complemented in trans both by strains that had the A-LPS on the cell surface and by exogenous sources of A-LPS. This is the first known example of LPS exchange in a human bacterial pathogen which causes disease through complex microbiota-host interactions.
机译:Porphyromonas Gingivalis,一种有助于人类牙周炎,出口和锚固货物蛋白的细菌病原体,使得使用IX型分泌系统(T9SS)产生黑色色素沉着,并与阴离子脂多糖(A-LPS)的缀合。为了确定T9SS组分是否需要原位组装以进行正确的分泌和货物蛋白的改性,将缺乏A-LPS或T9SS组分的非透明突变体的组合进行混合,以研究变换互补。仅在A-LPS突变体和T9SS突变体之间重新列出色素沉着,这与通过Western印迹和CoImMunopectipipitipition /定量质谱法检测到的货物蛋白质的A-LPS改性。使用与外膜囊泡(OMV)混合的A-LPS突变体或纯化A-LPS也发生互补。荧光实验表明,OMV可以融合并转移到P.Gingivalis的脂质,导致T9SS功能互补通过细胞之间的A-LPS转移的结论。涉及五个T9SS OM组分突变体产生黑色色素沉着的两个菌株横向均未产生,这意味着OM蛋白不能以恢复函数和表面色素沉着的方式转移,并且因此,T9SS组件的更具有序的时间原位组装可能需要。我们的结果表明,LPS可以在细胞或细胞和OMV之间转移到LPS生物合成和血红素相关色素沉着中的补充缺陷,以揭示口腔微生物群落被调节以产生人体宿主的临床后果的潜在新机制。重要性卟哚莫纳斯牙龈宫是一种骨石病原体,促成人类牙周炎,导致牙齿损失。口腔微生物群在这种致病过程中至关重要,并且从主要革兰氏阳性(Health)的变化是主要的革兰氏阴性(疾病)物种。 P. Gingivalis使用其类型的IX分泌系统(T9SS)来分泌和将毒力蛋白分泌到阴离子脂多糖(A-LPS)中。本研究研究了该分泌系统的组分是否可以补充,发现A-LPS生物合成突变体可以通过在细胞表面上的A-LPS和A-LPS的外源来互补的菌株互补。 。这是人类细菌病原体中LPS交换的第一个已知实施例,其通过复杂的微生物群宿主相互作用引起疾病。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号