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甘露聚糖结合凝集素通过暴露的低聚甘露糖聚糖与α2巨球蛋白的相互作用:硫酯蛋白家族的一个保守特征?

Interaction of mannan binding lectin with alpha2 macroglobulin via exposed oligomannose glycans: a conserved feature of the thiol ester protein family?

作者信息

Arnold James N, Wallis Russell, Willis Antony C, Harvey David J, Royle Louise, Dwek Raymond A, Rudd Pauline M, Sim Robert B

机构信息

Medical Research Council Immunochemistry Unit and Oxford Glycobiology Institute, Department of Biochemistry, University of Oxford, South Parks Road, Oxford OX1 3QU, England.

出版信息

J Biol Chem. 2006 Mar 17;281(11):6955-63. doi: 10.1074/jbc.M511432200. Epub 2006 Jan 5.

Abstract

The serum collectin mannan-binding lectin (MBL) binds to oligomannose and GlcNAc-terminating glycans present on microorganisms. Using a commercial affinity chromatography resin containing immobilized MBL we screened human and mouse serum for endogenous MBL-binding targets. We isolated the serum protease inhibitor alpha(2) macroglobulin (alpha2M), a heavily glycosylated thiol ester protein (TEP) composed of four identical 180-kDa subunits, each of which has eight N-linked glycosylation sites. alpha2M has previously been reported to interact with MBL; however, the interaction was not characterized. We investigated the mechanism of formation of complexes between alpha2M and MBL and concluded that they form by the direct binding of oligomannose glycans Man(5-7) occupying Asn-846 on alpha2M to the lectin domains (carbohydrate recognition domains) of MBL. The oligomannose glycans are accessible for lectin binding on both active alpha2M (thiol ester intact) and protease-cleaved alpha2M (thiol ester cleaved). We demonstrate that MBL is able to interact with alpha2M in the fluid phase, but the interaction does not inhibit the binding of MBL to mannan-coated surfaces. In addition to alpha2M, two other members of the TEP family, C3 and C4, which also contain oligomannose glycans, were captured from human serum using the MBL resin. MBL binding may be a conserved feature of the TEPs, dating from their ancestral origins. We suggest that the inhibition of proteases on the surface of microorganisms by an ancestral alpha2M-like TEP may generate "arrays" of oligomannose glycans to which MBL or other lectins can bind. Binding would lead to opsonization or activation of enzyme systems such as complement.

摘要

血清凝集素甘露聚糖结合凝集素(MBL)可与微生物上存在的低聚甘露糖和以GlcNAc结尾的聚糖结合。我们使用含有固定化MBL的商业亲和层析树脂,对人和小鼠血清中的内源性MBL结合靶点进行了筛选。我们分离出了血清蛋白酶抑制剂α2巨球蛋白(α2M),它是一种高度糖基化的硫酯蛋白(TEP),由四个相同的180 kDa亚基组成,每个亚基都有八个N-连接糖基化位点。此前已有报道称α2M与MBL相互作用,但这种相互作用尚未得到表征。我们研究了α2M与MBL之间复合物形成的机制,并得出结论:它们是通过α2M上占据Asn-846位点的低聚甘露糖聚糖Man(5-7)与MBL的凝集素结构域(碳水化合物识别结构域)直接结合而形成的。低聚甘露糖聚糖在活性α2M(硫酯完整)和蛋白酶切割后的α2M(硫酯切割)上均可被凝集素结合。我们证明MBL能够在液相中与α2M相互作用,但这种相互作用并不抑制MBL与甘露聚糖包被表面的结合。除了α2M之外,使用MBL树脂还从人血清中捕获了TEP家族的另外两个成员C3和C4,它们也含有低聚甘露糖聚糖。MBL结合可能是TEP的一个保守特征,可追溯到它们的祖先起源。我们认为,一种类似祖先α2M的TEP对微生物表面蛋白酶的抑制作用可能会产生低聚甘露糖聚糖“阵列”,MBL或其他凝集素可以与之结合。这种结合将导致调理作用或酶系统(如补体)的激活。

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