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Ionic tethering contributes to the conformational stability and function of complement C3b

机译:离子系列有助于补体C3b的构象稳定性和功能

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C3b, the central component of the alternative pathway (AP) of the complement system, coexists as a mixture of conformations in solution. These conformational changes can affect interactions with other proteins and complement regulators. Here we combine a computational model for electrostatic interactions within C3b with molecular imaging to study the conformation of C3b. The computational analysis shows that the TED domain in C3b is tethered ionically to the macroglobulin (MG) ring. Monovalent counterion concentration affects the magnitude of electrostatic forces anchoring the TED domain to the rest of the C3b molecule in a thermodynamic model. This is confirmed by observing NaCl concentration dependent conformational changes using single molecule electron microscopy (EM). We show that the displacement of the TED domain is compatible with C3b binding to Factor B (FB), suggesting that the regulation of the C3bBb convertase could be affected by conditions that promote movement in the TED domain. Our molecular model also predicts mutations that could alter the positioning of the TED domain, including the common R102G polymorphism, a risk variant for developing age-related macular degeneration. The common C3b isoform, C3bS, and the risk isoform, C3bF, show distinct energetic barriers to displacement in the TED that are related to a network of electrostatic interactions at the interface of the TED and MG-ring domains of Ob. These computational predictions agree with experimental evidence that shows differences in conformation observed in C3b isoforms purified from homozygous donors. Altogether, we reveal an ionic, reversible attachment of the TED domain to the MG ring that may influence complement regulation in some mutations and polymorphisms of C3b. (C) 2016 Elsevier Ltd. All rights reserved.
机译:C3b,补体系统的替代途径(AP)的中心部件,作为溶液中符合致形的混合物共存。这些构象变化可以影响与其他蛋白质和补体调节剂的相互作用。在这里,我们将C3B内的静电相互作用与分子成像结合起来研究C3B的构象。计算分析表明,C3B中的TED结构域将被离子地拴在宏观球蛋白(Mg)环上。单价抗衡离子浓度影响热力学模型中锚固到C3B分子的其余域的静电力的大小。通过单分子电子显微镜(EM)观察NaCl浓度依赖性构象变化来证实这一点。我们表明TED结构域的位移与与因子B(FB)结合的C3B相容,表明C3BBB转化酶的调节可能受到促进TED结构域中运动的条件的影响。我们的分子模型还预测了可以改变TED结构域的定位的突变,包括常见的R102G多态性,这是一种用于发展年龄相关性黄斑变性的风险变量。常见的C3B同种型,C3B和风险同种型C3BF,在TED和MG-环形域的界面的静电相互作用网络中显示出不同的能量屏障。这些计算预测与实验证据一致,实验证据表明在纯合供体纯化的C3B同种型中观察到的构象的差异。完全,我们揭示了TED结构域的离子,可逆附着到Mg环,其可能影响C3b的一些突变和多态性的补体调节。 (c)2016 Elsevier Ltd.保留所有权利。

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