Gaboriaud Christine, Teillet Florence, Gregory Lynn A, Thielens Nicole M, Arlaud Gérard J
Laboratoire de Cristallographie et Cristallogénèse des Protéines, France.
Immunobiology. 2007;212(4-5):279-88. doi: 10.1016/j.imbio.2006.11.007. Epub 2006 Dec 20.
The classical pathway C1 complex, and the MBL-MASP and ficolin-MASP complexes involved in activation of the lectin pathway have several features in common. Both types of complexes are assembled from two subunits: an oligomeric recognition protein (C1q, MBL, L-, H- or M-ficolin), and a protease component, which is either a tetramer (C1s-C1r-C1r-C1s) or a dimer ((MASP)(2)). Recent functional and 3-D structural investigations have revealed that C1r/C1s and the MASPs associate through a common mechanism involving their N-terminal CUB1-EGF region. In contrast, the C1s-C1r-C1r-C1s tetramer and the (MASP)(2) dimers appear to have evolved distinct strategies to associate with their partner proteins. The purpose of this article is to review these recent advances.
经典途径的C1复合物以及参与凝集素途径激活的MBL-MASP和纤维胶凝蛋白-MASP复合物具有若干共同特征。这两种类型的复合物均由两个亚基组装而成:一个寡聚识别蛋白(C1q、MBL、L-、H-或M-纤维胶凝蛋白)和一个蛋白酶成分,该蛋白酶成分要么是四聚体(C1s-C1r-C1r-C1s),要么是二聚体((MASP)₂)。最近的功能和三维结构研究表明,C1r/C1s和MASP通过涉及它们N端CUB1-EGF区域的共同机制相互关联。相比之下,C1s-C1r-C1r-C1s四聚体和(MASP)₂二聚体似乎已经进化出与它们的伴侣蛋白相互关联的不同策略。本文的目的是综述这些最新进展。