Distinct Lipid A Moieties Contribute to Pathogen-Induced Site-Specific Vascular Inflammation

炎症体 炎症 促炎细胞因子 TLR4型 牙周病原体 牙龈卟啉单胞菌 免疫学 脂多糖 生物 全身炎症 半胱氨酸蛋白酶1 脂质A 化学 巨噬细胞 泡沫电池 Toll样受体 微生物学 先天免疫系统 细胞生物学 病菌 免疫系统 生物化学 遗传学 细菌 体外
作者
Connie Slocum,Stephen R. Coats,Ning Hua,Carolyn D. Kramer,George Papadopoulos,Ellen O. Weinberg,Cynthia V. Gudino,James A. Hamilton,Richard P. Darveau,Caroline A. Genco
出处
期刊:PLOS Pathogens [Public Library of Science]
卷期号:10 (7): e1004215-e1004215 被引量:72
标识
DOI:10.1371/journal.ppat.1004215
摘要

Several successful pathogens have evolved mechanisms to evade host defense, resulting in the establishment of persistent and chronic infections. One such pathogen, Porphyromonas gingivalis, induces chronic low-grade inflammation associated with local inflammatory bone loss and systemic inflammation manifested as atherosclerosis. P. gingivalis expresses an atypical lipopolysaccharide (LPS) structure containing heterogeneous lipid A species, that exhibit Toll-like receptor-4 (TLR4) agonist or antagonist activity, or are non-activating at TLR4. In this study, we utilized a series of P. gingivalis lipid A mutants to demonstrate that antagonistic lipid A structures enable the pathogen to evade TLR4-mediated bactericidal activity in macrophages resulting in systemic inflammation. Production of antagonistic lipid A was associated with the induction of low levels of TLR4-dependent proinflammatory mediators, failed activation of the inflammasome and increased bacterial survival in macrophages. Oral infection of ApoE(-/-) mice with the P. gingivalis strain expressing antagonistic lipid A resulted in vascular inflammation, macrophage accumulation and atherosclerosis progression. In contrast, a P. gingivalis strain producing exclusively agonistic lipid A augmented levels of proinflammatory mediators and activated the inflammasome in a caspase-11-dependent manner, resulting in host cell lysis and decreased bacterial survival. ApoE(-/-) mice infected with this strain exhibited diminished vascular inflammation, macrophage accumulation, and atherosclerosis progression. Notably, the ability of P. gingivalis to induce local inflammatory bone loss was independent of lipid A expression, indicative of distinct mechanisms for induction of local versus systemic inflammation by this pathogen. Collectively, our results point to a pivotal role for activation of the non-canonical inflammasome in P. gingivalis infection and demonstrate that P. gingivalis evades immune detection at TLR4 facilitating chronic inflammation in the vasculature. These studies support the emerging concept that pathogen-mediated chronic inflammatory disorders result from specific pathogen-mediated evasion strategies resulting in low-grade chronic inflammation.
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