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脂质A对人血清补体经典途径的抗体非依赖性激活仅限于重新化学型脂多糖和纯化的脂质A。

Antibody-independent activation of the classical pathway of human serum complement by lipid A is restricted to re-chemotype lipopolysaccharide and purified lipid A.

作者信息

Vukajlovich S W

出版信息

Infect Immun. 1986 Sep;53(3):480-5. doi: 10.1128/iai.53.3.480-485.1986.

Abstract

Incubation of most bacterial lipopolysaccharides (LPS) with normal human sera at 37 degrees C activates the serum complement system, resulting in decreased levels of hemolytic complement. A panel of R-chemotype LPS preparations isolated from Salmonella minnesota rough mutant strains, as well as smooth wild-type LPS from S. minnesota, Escherichia coli O55-B5, Serratia marcescens, and Yersinia enterolitica, were used to examine the effect of LPS polysaccharide chain length on LPS lipid (lipid A)-dependent activation of the classical pathway of complement (CPC). To examine specific lipid A-dependent activation of the CPC, sera deficient in alternative pathway of complement activity were prepared by the removal of factor D. Absorption of normal human sera with formalinized rabbit erythrocytes was found to remove natural antibodies, factors capable of forming LPS complexes which activate the CPC, or both. By using such factor D-depleted formalinized rabbit erythrocyte-absorbed normal human sera, only isolated lipid A and Re-chemotype LPS (R595 LPS) were found to activate the CPC. Thus, the presence of the additional monosaccharide L-glycero-D-mannoheptose in the Rd2 LPS oligosaccharide chain compared with the L-glycero-D-mannoheptose-deficient Re-chemotype LPS structure is sufficient to block lipid A-dependent activation of the CPC by LPS.

摘要

将大多数细菌脂多糖(LPS)与正常人血清在37℃孵育会激活血清补体系统,导致溶血补体水平降低。使用一组从明尼苏达沙门氏菌粗糙突变株中分离出的R-化学型LPS制剂,以及来自明尼苏达沙门氏菌、大肠杆菌O55-B5、粘质沙雷氏菌和小肠结肠炎耶尔森氏菌的光滑野生型LPS,来研究LPS多糖链长度对LPS脂质(脂质A)依赖性补体经典途径(CPC)激活的影响。为了研究CPC的特定脂质A依赖性激活,通过去除因子D制备了缺乏补体替代途径活性的血清。发现用甲醛化兔红细胞吸收正常人血清可去除天然抗体、能够形成激活CPC的LPS复合物的因子或两者。通过使用这种去除因子D并用甲醛化兔红细胞吸收的正常人血清,发现只有分离的脂质A和Re-化学型LPS(R595 LPS)能激活CPC。因此,与缺乏L-甘油-D-甘露庚糖的Re-化学型LPS结构相比,Rd2 LPS寡糖链中额外的单糖L-甘油-D-甘露庚糖的存在足以阻断LPS对脂质A依赖性CPC的激活。

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