Schromm A B, Brandenburg K, Loppnow H, Zähringer U, Rietschel E T, Carroll S F, Koch M H, Kusumoto S, Seydel U
Research Center Borstel, Center for Medicine and Biosciences, Department of Immunochemistry and Biochemical Microbiology, Germany.
J Immunol. 1998 Nov 15;161(10):5464-71.
The activation of cells by endotoxin (LPS) is one of the early host responses to infections with Gram-negative bacteria. The lipid A part of LPS molecules is known to represent the endotoxic principle; however, the specific requirements for the expression of biologic activity are still not fully understood. We previously found that a specific molecular conformation (endotoxic conformation) is a prerequisite for lipid A to be biologically active. In this study, we have investigated the interdependence of molecular charge and conformation of natural and chemically modified LPS and lipid A and its transport and intercalation into phospholipid membranes mediated by human LPS-binding protein, as well as IL-6 production after stimulation of whole blood or PBMCs. We found that the number, nature, and location of negative charges strongly modulate the molecular conformation of endotoxin. In addition, the LPS-binding protein-mediated transport of LPS into phospholipid membranes depends on the presence of net negative charge, yet charge is only a necessary, but not a sufficient, prerequisite for transport and intercalation. The biologic activity is determined mainly by the molecular conformation: only conical molecules are highly biologically active, whereas cylindrical ones are largely inactive. We could demonstrate that the net negative charge of the lipid A component and its distribution within the hydrophilic headgroup strongly influence the molecular conformation and, therefore, also the biologic activity.
内毒素(脂多糖,LPS)激活细胞是宿主对革兰氏阴性菌感染的早期反应之一。已知LPS分子的脂质A部分具有内毒素活性;然而,其生物活性表达的具体要求仍未完全明确。我们之前发现特定的分子构象(内毒素构象)是脂质A具有生物活性的前提条件。在本研究中,我们探究了天然及化学修饰的LPS和脂质A的分子电荷与构象之间的相互关系,以及由人LPS结合蛋白介导的其向磷脂膜的转运和嵌入,还有全血或外周血单个核细胞(PBMC)刺激后的白细胞介素-6(IL-6)产生情况。我们发现负电荷的数量、性质和位置会强烈调节内毒素的分子构象。此外,LPS结合蛋白介导的LPS向磷脂膜的转运取决于净负电荷的存在,但电荷只是转运和嵌入的必要而非充分前提条件。生物活性主要由分子构象决定:只有锥形分子具有高生物活性,而圆柱形分子大多无活性。我们能够证明脂质A成分的净负电荷及其在亲水头基团内的分布会强烈影响分子构象,进而也影响生物活性。