首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Molecular engineering of an efficient four-domain DAF-MCP chimera reveals the presence of functional modularity in RCA proteins
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Molecular engineering of an efficient four-domain DAF-MCP chimera reveals the presence of functional modularity in RCA proteins

机译:高效四域DAF-MCP嵌合体的分子工程研究揭示了RCA蛋白中功能模块的存在

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摘要

The complement system is highly efficient in targeting pathogens, but lack of its apposite regulation results in host-cell damage, which is linked to diseases. Thus, complement activation is tightly regulated by a series of proteins, which primarily belong to the regulators of complement activation (RCA) family. Structurally, these proteins are composed of repeating complement control protein (CCP) domains where two to four successive domains contribute to the regulatory functions termed decay-accelerating activity (DAA) and cofactor activity (CFA). However, the precise constitution of the functional units and whether these units can be joined to form a larger composition with dual function have not been demonstrated. Herein, we have parsed the functional units for DAA and CFA by constructing chimeras of the decay-accelerating factor (DAF) that exhibits DAA and membrane cofactor protein (MCP) that exhibits CFA. We show that in a four-CCP framework, a functional unit for each of the regulatory activities is formed by only two successive CCPs wherein each participates in the function, albeit CCP2 has a bipartite function. Additionally, optimal activity requires C-terminal domains that enhance the avidity of the molecule for C3b/C4b. Furthermore, by composing a four-CCP DAF-MCP chimera with robust CFA (for C3b and C4b) and DAA (for classical and alternative pathway C3 convertases), named decay cofactor protein, we show that CCP functional units can be linked to design a dual-activity regulator. These data indicate that the regulatory determinants for these two biological processes are distinct and modular in nature.
机译:补体系统在靶向病原体方面非常高效,但是缺乏适当的调节会导致宿主细胞受损,这与疾病有关。因此,补体激活受到一系列蛋白质的严格调控,这些蛋白质主要属于补体激活(RCA)家族的调节者。从结构上讲,这些蛋白质由重复补体控制蛋白质(CCP)域组成,其中两个至四个连续域对称为衰变加速活性(DAA)和辅因子活性(CFA)的调节功能有贡献。然而,尚未证明功能单元的精确构造以及这些单元是否可以连接以形成具有双重功能的更大的组合物。在这里,我们已经通过构建展示DAA的衰变加速因子(DAF)和展示CFA的膜辅因子蛋白(MCP)的嵌合体来解析DAA和CFA的功能单元。我们表明,在四CCP框架中,每个监管活动的功能单元仅由两个连续的CCP组成,其中每个CCP均参与该功能,尽管CCP2具有双向功能。此外,最佳活性需要C末端结构域,以增强分子对C3b / C4b的亲和力。此外,通过将具有鲁棒CFA(对于C3b和C4b)和DAA(对于经典途径和替代途径C3转化酶)的四CCP DAF-MCP嵌合体(称为衰变辅因子蛋白)组成,我们证明了CCP功能单元可以链接到设计一个双活动调节器。这些数据表明,这两个生物学过程的调节决定因素在本质上是不同的和模块化的。

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