Lapaque Nicolas, Forquet Frédérique, de Chastellier Chantal, Mishal Zohair, Jolly Gilles, Moreno Edgardo, Moriyon Ignacio, Heuser John E, He Hai-Tao, Gorvel Jean-Pierre
Centre d'Immunologie INSERM-CNRS-Université Méditerranée, case 906, 13288 Marseille Cedex 9, France.
Cell Microbiol. 2006 Feb;8(2):197-206. doi: 10.1111/j.1462-5822.2005.00609.x.
The lipopolysaccharides (LPS) of intracellular Proteobacteria such as Brucella, Chlamydia, Legionella and Rickettsia, have properties distinct from enterobacterial LPSs. These properties include deficient LPS induction of host cell activation, low endotoxicity and resistance to macrophage degradation. Together these constitute key virulence mechanisms for intracellular survival and replication. We previously demonstrated that B. abortus LPS captured by macrophages was recycled back to the plasma membrane where it was found associated with macrodomains. Furthermore, this LPS interferes with the MHC class II (MHC-II) presentation of peptides to specific T cell hybridomas. Here, we characterized the Brucella LPS macrodomains by microscopy and biochemistry approaches. We show for the first time that LPS macrodomains act as detergent resistant membranes (DRMs), segregating several lipid-raft components, LPS-binding proteins and MHC-II molecules. Brucella LPS macrodomains remain intact for several months in macrophages and are resistant to the disruptive effects of methyl beta-cyclodextrin. Fluorescent anisotropy measurements show that B. abortus LPS is responsible for the formation of rigid surface membrane complexes. In addition, relocalization of MHC-II molecules is observed in these structures. The effects of B. abortus LPS on membrane properties could be responsible for pathogenic effects such as the inhibition of MHC-II-dependent antigen presentation.
布鲁氏菌、衣原体、军团菌和立克次氏体等细胞内变形菌门细菌的脂多糖(LPS)具有与肠杆菌LPS不同的特性。这些特性包括宿主细胞激活的LPS诱导不足、低内毒素毒性以及对巨噬细胞降解的抗性。这些共同构成了细胞内存活和复制的关键毒力机制。我们之前证明,巨噬细胞捕获的流产布鲁氏菌LPS会循环回到质膜,在那里发现它与大结构域相关联。此外,这种LPS会干扰肽向特定T细胞杂交瘤的MHC II类(MHC-II)呈递。在这里,我们通过显微镜和生物化学方法对布鲁氏菌LPS大结构域进行了表征。我们首次表明,LPS大结构域作为抗去污剂膜(DRM),分离了几种脂筏成分、LPS结合蛋白和MHC-II分子。布鲁氏菌LPS大结构域在巨噬细胞中保持完整数月,并且对甲基-β-环糊精的破坏作用具有抗性。荧光各向异性测量表明,流产布鲁氏菌LPS负责形成刚性表面膜复合物。此外,在这些结构中观察到MHC-II分子的重新定位。流产布鲁氏菌LPS对膜特性的影响可能是导致诸如抑制MHC-II依赖性抗原呈递等致病作用的原因。