Department of Structural and Molecular Biology, Darwin Building, University College London, Gower Street, London WC1E 6BT, UK.
J Mol Biol. 2012 May 4;418(3-4):248-63. doi: 10.1016/j.jmb.2012.02.038. Epub 2012 Mar 1.
A novel therapeutic reagent TT30 was designed to be effective in diseases of the alternative pathway of complement such as paroxysmal nocturnal hemoglobinuria and other diseases. TT30 is constructed from the first four short complement regulator (SCR) domains of complement receptor type 2 (CR2) that bind to complement C3d, followed by the first five SCR domains of complement factor H that bind to complement C3b. In order to assess how TT30 binds to C3d and C3b, we determined the TT30 solution structure by a combination of analytical ultracentrifugation, X-ray scattering and constrained modeling. The sedimentation coefficients and radius of gyration of TT30 were unaffected by citrate or phosphate-buffered saline buffers and indicate an elongated monomeric structure with a sedimentation coefficient of 3.1 S and a radius of gyration R(G) of 6.9 nm. Molecular modeling starting from 3000 randomized TT30 conformations showed that high-quality X-ray curve fits were obtained with extended SCR arrangements, showing that TT30 has a limited degree of inter-SCR flexibility in its solution structure. The best-fit TT30 structural models are readily merged with the crystal structure of C3b to show that the four CR2 domains extend freely into solution when the five complement factor H domains are bound within C3b. We reevaluated the solution structure of the CR2-C3d complex that confirmed its recent crystal structure. This recent CR2-C3d crystal structure showed that TT30 is able to interact readily with C3d ligands in many orientations when TT30 is bound to C3b.
一种新型治疗试剂 TT30 被设计用于补体替代途径疾病,如阵发性夜间血红蛋白尿和其他疾病。TT30 由补体受体 2(CR2)的前四个短补体调节(SCR)结构域组成,这些结构域与补体 C3d 结合,随后是结合补体 C3b 的补体因子 H 的前五个 SCR 结构域。为了评估 TT30 如何与 C3d 和 C3b 结合,我们通过分析超速离心、X 射线散射和约束建模相结合的方法确定了 TT30 的溶液结构。TT30 的沉降系数和回转半径不受柠檬酸盐或磷酸盐缓冲盐水缓冲液的影响,表明其具有拉长的单体结构,沉降系数为 3.1 S,回转半径 R(G)为 6.9nm。从 3000 个随机 TT30 构象开始的分子建模表明,通过扩展 SCR 排列获得了高质量的 X 射线曲线拟合,表明 TT30 在其溶液结构中具有有限的 SCR 之间的柔韧性。最佳拟合的 TT30 结构模型很容易与 C3b 的晶体结构合并,表明当五个补体因子 H 结构域结合在 C3b 内时,四个 CR2 结构域自由延伸到溶液中。我们重新评估了 CR2-C3d 复合物的溶液结构,证实了其最近的晶体结构。最近的 CR2-C3d 晶体结构表明,当 TT30 结合到 C3b 时,TT30 能够以多种取向与 C3d 配体容易地相互作用。