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朝着基于结构的补体凝集素途径的理解。

Toward a structure-based comprehension of the lectin pathway of complement.

机构信息

Department of Biomedicine, Aarhus University, Wilhelm Meyers Allé 4, DK-8000 Aarhus, Denmark.

出版信息

Mol Immunol. 2013 Dec;56(4):413-22. doi: 10.1016/j.molimm.2013.05.007. Epub 2013 Aug 1.

Abstract

To initiate the lectin pathway of complement pattern recognition molecules bind to surface-linked carbohydrates or acetyl groups on pathogens or damaged self-tissue. This leads to activation of the serine proteases MASP-1 and MASP-2 resulting in deposition of C4 on the activator and assembly of the C3 convertase. In addition MASP-3 and the non-catalytic MAp19 and MAp44 presumably play regulatory functions, but the exact function of the MASP-3 protease remains to be established. Recent functional studies have significantly advanced our understanding of the molecular events occurring as activation progresses from pattern recognition to convertase assembly. Furthermore, atomic structures derived by crystallography or solution scattering of most proteins acting in the lectin pathway and two key complexes have become available. Here we integrate the current functional and structural knowledge concerning the lectin pathway proteins and derive overall models for their glycan bound complexes. These models are used to discuss cis- versus trans-activation of MASP proteases and the geometry of C4 deposition occurring on glycans in the lectin pathway.

摘要

为了启动补体凝集素途径,模式识别分子与病原体表面连接的碳水化合物或乙酰基结合,或者与受损的自身组织结合。这导致丝氨酸蛋白酶 MASP-1 和 MASP-2 的激活,导致 C4 在激活剂上的沉积和 C3 转化酶的组装。此外,MASP-3 和非催化的 MAp19 和 MAp44 可能发挥调节功能,但 MASP-3 蛋白酶的确切功能仍有待确定。最近的功能研究极大地促进了我们对从模式识别到转化酶组装过程中发生的分子事件的理解。此外,通过结晶学或溶液散射获得了大多数在凝集素途径中起作用的蛋白质以及两个关键复合物的原子结构。在这里,我们整合了关于凝集素途径蛋白的当前功能和结构知识,并推导出它们与聚糖结合的复合物的整体模型。这些模型用于讨论 MASP 蛋白酶的顺式和反式激活以及在凝集素途径中糖基上发生的 C4 沉积的几何形状。

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