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具有细胞因子刺激活性的银耳酸性杂聚糖的表征

Characterisation of acidic heteroglycans from Tremella fuciformis Berk with cytokine stimulating activity.

作者信息

Gao Q, Seljelid R, Chen H, Jiang R

机构信息

University of Tromsø, Institute of Medical Biology, Norway.

出版信息

Carbohydr Res. 1996 Jul 19;288:135-42. doi: 10.1016/s0008-6215(96)90789-2.

Abstract

Four kinds of acidic heteroglycan, T3a-T3d, were isolated from the body of the fungus Tremella fuciformis Berk. The molecular weights of T3a-T3d were 550, 420, 55, and 48 kDa, respectively. Glycosidic linkage analysis showed that they had a mannan backbone consisting of 3-linked Man p, and side chains containing glucosyl, mannosyl, fucosyl, xylosyl, and glucuronic acid residues attached through O-2, O-4, or O-6 of about half of the backbone mannosyl residues. A partial acidic hydrolysate of T3a could be divided into a low-branching region (T3a-1, 2, 3, 4) mainly branched at the 2-position of 3-linked Man p in the mannan backbone, and a high-branching region (T3a-5A) branched at the 2,4- or 2,4,6-positions of 3-linked Man p in the backbone. The low-branching region, which is predominant in the backbone, was substituted with non-reducing terminal Glc pA, Fuc p and short side chains consisting of (1-->6)-linked Glc p and (1-->2)-linked Man p linked through C-2 of the mannan backbone. The high-branching region, which is a minor component of the backbone, was linked with long side chains of (1-->6)-linked Glc p and (1-->4)-linked Glc pA in their branching points. T3a-T3d were able to induce human monocytes to produce interleukin-1, interleukin-6, and tumor necrosis factor in vitro. The different fragments of the acidic hydrolysate of T3a (T3a-1, 2, 3, 4, 5A) also induced monocytes to secret interleukin-6 with high potency, indicating that the activity may be caused by a common structure, (1-->3)-mannan in the four heteroglycans and their fragments. The change of molecular weight had no obvious influence on the activity of the heteroglycans.

摘要

从真菌银耳(Tremella fuciformis Berk.)子实体中分离出四种酸性杂聚糖,T3a - T3d。T3a - T3d的分子量分别为550、420、55和48 kDa。糖苷键分析表明,它们具有由3 - 连接的甘露糖(Man p)组成的甘露聚糖主链,以及通过约一半主链甘露糖残基的O - 2、O - 4或O - 6连接的含有葡萄糖基、甘露糖基、岩藻糖基、木糖基和葡萄糖醛酸残基的侧链。T3a的部分酸性水解产物可分为主要在甘露聚糖主链中3 - 连接的Man p的2位分支的低分支区域(T3a - 1、2、3、4)和在主链中3 - 连接的Man p的2、4 - 或2、4、6 - 位分支的高分支区域(T3a - 5A)。在主链中占主导的低分支区域被非还原末端的葡萄糖醛酸(Glc pA)、岩藻糖(Fuc p)以及由通过甘露聚糖主链的C - 2连接的(1→6) - 连接的Glc p和(1→2) - 连接的Man p组成的短侧链取代。作为主链次要成分的高分支区域在其分支点与(1→6) - 连接的Glc p和(1→4) - 连接的Glc pA的长侧链相连。T3a - T3d能够在体外诱导人单核细胞产生白细胞介素 - 1、白细胞介素 - 6和肿瘤坏死因子。T3a酸性水解产物的不同片段(T3a - 1、2、3、4、5A)也能高效诱导单核细胞分泌白细胞介素 - 6,表明该活性可能由四种杂聚糖及其片段中的共同结构(1→3) - 甘露聚糖引起。分子量的变化对杂聚糖的活性没有明显影响。

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