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巨噬细胞甘露糖受体对胶原蛋白的非碳水化合物依赖性识别。

Carbohydrate-independent recognition of collagens by the macrophage mannose receptor.

作者信息

Martinez-Pomares Luisa, Wienke Dirk, Stillion Richard, McKenzie Emma J, Arnold James N, Harris James, McGreal Eamon, Sim Robert B, Isacke Clare M, Gordon Siamon

机构信息

Sir William Dunn School of Pathology, Oxford, UK.

出版信息

Eur J Immunol. 2006 May;36(5):1074-82. doi: 10.1002/eji.200535685.

Abstract

Mannose receptor (MR) is the best characterised member of a family of four endocytic molecules that share a common domain structure; a cysteine-rich (CR) domain, a fibronectin-type II (FNII) domain and tandemly arranged C-type lectin-like domains (CTLD, eight in the case of MR). Two distinct lectin activities have been described for MR. The CR domain recognises sulphated carbohydrates while the CTLD mediate binding to mannose, fucose or N-acetylglucosamine. FNII domains are known to be important for collagen binding and this has been studied in the context of two members of the MR family, Endo180 and the phospholipase A2 receptor. Here, we have investigated whether the broad and effective lectin activity mediated by the CR domain and CTLD of MR is favoured to the detriment of FNII-mediated interaction(s). We show that MR is able to bind and internalise collagen in a carbohydrate-independent manner and that MR deficient macrophages have a marked defect in collagen IV and gelatin internalisation. These data have major implications at the molecular level as there are now three distinct ligand-binding sites described for MR. Furthermore our findings extend the range of endogenous ligands recognised by MR, a molecule firmly placed at the interface between homeostasis and immunity.

摘要

甘露糖受体(MR)是具有共同结构域的四个内吞分子家族中特征最明确的成员;一个富含半胱氨酸(CR)结构域、一个纤连蛋白II型(FNII)结构域和串联排列的C型凝集素样结构域(CTLD,MR有八个)。已报道MR有两种不同的凝集素活性。CR结构域识别硫酸化碳水化合物,而CTLD介导与甘露糖、岩藻糖或N-乙酰葡糖胺的结合。已知FNII结构域对胶原结合很重要,这已在MR家族的两个成员Endo180和磷脂酶A2受体的背景下进行了研究。在这里,我们研究了MR的CR结构域和CTLD介导的广泛而有效的凝集素活性是否不利于FNII介导的相互作用。我们表明,MR能够以不依赖碳水化合物的方式结合并内化胶原,并且缺乏MR的巨噬细胞在胶原IV和明胶内化方面有明显缺陷。这些数据在分子水平上具有重要意义,因为现在已描述了MR的三个不同的配体结合位点。此外,我们的发现扩展了MR识别的内源性配体范围,MR是一个牢固地处于内环境稳定和免疫之间界面的分子。

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