Ried C, Wahl C, Miethke T, Wellnhofer G, Landgraf C, Schneider-Mergener J, Hoess A
MorphoSys GmbH, 80807 Munich, Germany.
J Biol Chem. 1996 Nov 8;271(45):28120-7. doi: 10.1074/jbc.271.45.28120.
Lipid A, the conserved portion of endotoxin or lipopolysaccharide, is the major mediator of septic shock, and therefore endotoxin-neutralizing molecules could have important clinical applications. The crystal structure of recombinant Limulus anti-lipopolysaccharide factor (rLALF) (Hoess, A., Watson, S., Siber, G. R., and Liddington, R. (1993) EMBO J. 12, 3351-3356), has been used to design synthetic peptides comprising different parts of the exposed amphipathic loop in the proposed endotoxin-binding domain of rLALF. We investigated the minimal requirements of rLALF for endotoxin and lipid A binding with linear 10-mer peptides. Only one linear peptide, corresponding to amino acids 36-45 of rLALF, was able to bind lipid A and endotoxin above background levels. Cyclic peptides, however, bind lipid A and endotoxin with high affinity, presumably by mimicking the three dimensional characteristics of the exposed hairpin loop. The cyclic peptide including amino acids 36-47, LALF-14, has a lipid A binding activity comparable to the high affinity endotoxin-binding peptide polymyxin B. LALF-14 has an improved serum half-life compared with its linear counterpart, and it is not toxic for cultured human monocytes or red blood cells. In mice, it blocks tumor necrosis factor-alpha induction after endotoxin challenge. The characterization of the minimal endotoxin-binding domain of rLALF and, importantly, its structure provided a basis for designing small molecules that could have prophylactic and/or therapeutic properties in humans for the management of septic shock.
脂多糖(LPS)的保守部分脂多糖A是脓毒症休克的主要介质,因此内毒素中和分子可能具有重要的临床应用价值。重组鲎抗脂多糖因子(rLALF)的晶体结构(Hoess,A.,Watson,S.,Siber,G.R.和Liddington,R.(1993)EMBO J. 12,3351 - 3356)已被用于设计合成肽,这些肽包含rLALF拟内毒素结合域中暴露的两亲性环的不同部分。我们用线性10肽研究了rLALF对内毒素和脂多糖A结合的最低要求。只有一个对应于rLALF氨基酸36 - 45的线性肽能够在背景水平以上结合脂多糖A和内毒素。然而,环肽能以高亲和力结合脂多糖A和内毒素,大概是通过模拟暴露的发夹环的三维特征。包含氨基酸36 - 47的环肽LALF - 14具有与高亲和力内毒素结合肽多粘菌素B相当的脂多糖A结合活性。与线性对应物相比,LALF - 14的血清半衰期有所改善,并且对培养的人单核细胞或红细胞无毒。在小鼠中,它能在内毒素攻击后阻断肿瘤坏死因子 - α的诱导。rLALF最小内毒素结合域的表征,重要的是其结构,为设计在人类中具有预防和/或治疗脓毒症休克特性的小分子提供了基础。