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首页> 外文期刊>Biomacromolecules >Analysis of MonoPEGylated Human Galectin-2 by Small-Angle X-ray and Neutron Scattering: Concentration Dependence of PEG Conformation in the Conjugate
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Analysis of MonoPEGylated Human Galectin-2 by Small-Angle X-ray and Neutron Scattering: Concentration Dependence of PEG Conformation in the Conjugate

机译:小角度X射线和中子散射分析单聚乙二醇化的人Galectin-2:结合物中PEG构象的浓度依赖性

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摘要

Protein conjugation with polyethylene glycol (PEG) is a valuable means for improving stability, solubility, and bioavailability of pharmaceutical proteins. Using human galectin-2 (hGal-2) and 5 kDa PEG as a model system we first produced a PEG-hGal-2 conjugate exclusively at the Cys75 residue, resulting in two monosubstituted subunits per hGal-2 homodimer. Small angle X-ray and neutron scattering (SAXS and SANS) were combined to provide complementary structural information about the PEG-hGal-2 conjugate, wherein signal generation in SAXS depends mainly on the protein while SANS data presents signals from both the protein and PEG moieties. SAXS data gave a constant radius of gyration (R_g = 21.5 A) for the conjugate at different concentrations and provided no evidence for an alteration of homodimeric structure or hGal-2 ellipsoidal shape upon PEGylation. In contrast, SANS data revealed a concentration dependence of R_g for the conjugate, with the value decreasing from 31.5 A at 2 mg/mL to 26 A at 14 mg/mL (based on hGal-2 concentration). Scattering data have been successfully described by the model of the ellipsoidal homogeneous core (hGal-2) attached with polymer chains (PEG) at the surface. Evidently, the PEG conformation of the conjugate strongly depends on conjugate concentration and PEG'S radius of gyration decreases from 24.5 to 15 A. An excluded volume effect, arising from steric clashes between PEG molecules at high concentration, was quantified by estimating the second virial coefficient, A2, of PEGylated hGal-2 from the SANS data. A positive value of A2 (6.0 ± 0.4 x 10~(-4) cm~3 mol g~(-2)) indicates repulsive interactions between molecules, which are expected to protect the PEGylated protein against aggregation.
机译:聚乙二醇(PEG)与蛋白质结合是提高药物蛋白质稳定性,溶解性和生物利用度的宝贵手段。使用人galectin-2(hGal-2)和5 kDa PEG作为模型系统,我们首先仅在Cys75残基上产生了PEG-hGal-2共轭物,每个hGal-2同型二聚体产生两个单取代的亚基。小角度X射线和中子散射(SAXS和SANS)结合在一起以提供有关PEG-hGal-2共轭物的补充结构信息,其中SAXS中的信号生成主要取决于蛋白质,而SANS数据同时显示来自蛋白质和PEG的信号部分。 SAXS数据给出了不同浓度下缀合物的恒定回转半径(R_g = 21.5 A),并且没有提供证据表明聚乙二醇化后同二聚体结构或hGal-2椭圆形发生变化。相反,SANS数据显示了结合物的R_g浓度依赖性,其值从2 mg / mL时的31.5 A降至14 mg / mL时的26 A(基于hGal-2浓度)。散射数据已通过表面附着有聚合物链(PEG)的椭圆形均质核(hGal-2)模型成功描述。显然,缀合物的PEG构象在很大程度上取决于缀合物的浓度,并且PEG的回转半径从24.5降低至15A。高浓度PEG分子之间的空间碰撞引起的排除体积效应可通过估算第二病毒系数来量化,来自SANS数据的PEG化hGal-2的A2。 A2的正值(6.0±0.4 x 10〜(-4)cm〜3 mol g〜(-2))表示分子之间的排斥性相互作用,有望保护PEG化蛋白免于聚集。

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