Activation of the complement system by (1----3)-beta-D-glucans having different degrees of branching and different ultrastructures.

T Suzuki, N Ohno, K Saito, T Yadomae
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引用次数: 42

Abstract

Activation of the alternative (APC) and classical (CPC) pathways of complement by fungal (1----3)-beta-D-glucans having different degrees of branching (DB) and different conformations were examined by using human serum and plasma. The glucans used in this study were curdlan (no branch; 0/1), grifolan (one branch in every third main chain unit; 1/3), schizophyllan (1/3), SSG (1/2), and OL-2(2/3). Triple or single helix conformer of these glucans were prepared by heating at 150 degrees C or dissolution in sodium hydroxide. Activation of APC by these glucans were dependent on incubation time, concentration, molecular weight, and DB. Interestingly, the triple helix conformer of all glucans tested activated APC stronger than a single helix one. The activity of branched glucans in plasma was weaker than those in serum. On the other hand, in the case of CPC, a single helix conformer activated CPC stronger than a triple helix one, and the activity was dependent on DB. Activation of CPC by a single helix conformer was thought to be dependent on the binding of beta-glucan to immunoglobulin in serum, because the complex was clearly detected by gel permeation chromatography only in the case of single helix one. From these results, it appears that the different conformers were recognized by the host complement systems in different ways. (1----3)-beta-D-Glucan is one of the major constituents of fungal cell wall and is thought to be clearly recognized by the host immune systems.(ABSTRACT TRUNCATED AT 250 WORDS)

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(1----3)- β - d -葡聚糖对补体系统的激活具有不同程度的分支和不同的超微结构。
采用人血清和血浆检测了不同分支度(DB)和不同构象的真菌(1----3)- β - d -葡聚糖对补体替代(APC)和经典(CPC)途径的激活作用。本研究中使用的葡聚糖为无分支葡聚糖;0/1), grifolan(每3个主链单元中有一个分支;1/3), schizophyllan(1/3),江源发展促进会(1/2),OL-2(2/3)。在150℃下加热或在氢氧化钠中溶解制备了这些葡聚糖的三螺旋或单螺旋构象。这些葡聚糖对APC的激活依赖于孵育时间、浓度、分子量和DB。有趣的是,所有葡聚糖的三螺旋构象比单螺旋构象更能激活APC。血浆中支链葡聚糖活性弱于血清。另一方面,在CPC的情况下,单螺旋构象比三螺旋构象对CPC的活性更强,并且活性依赖于DB。单螺旋构象对CPC的激活被认为依赖于血清中β -葡聚糖与免疫球蛋白的结合,因为只有在单螺旋构象的情况下,凝胶渗透色谱才能清楚地检测到复合物。从这些结果来看,似乎不同的构象被宿主补体系统以不同的方式识别。(1----3)- β - d -葡聚糖是真菌细胞壁的主要成分之一,被认为可以被宿主免疫系统清楚地识别。(摘要删节250字)
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