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推断分子结构以表征和改善临床级免疫细胞因子。

Inference of molecular structure for characterization and improvement of clinical grade immunocytokines.

机构信息

The Armenise-Harvard Laboratory of Structural Biology, Dept. Biology and Biotechnology, University of Pavia, Via Ferrata 9/A, 27100 Pavia Italy; Philochem AG, Libernstrasse 3, 8112 Otelfingen, Switzerland.

The Armenise-Harvard Laboratory of Structural Biology, Dept. Biology and Biotechnology, University of Pavia, Via Ferrata 9/A, 27100 Pavia Italy.

出版信息

J Struct Biol. 2021 Mar;213(1):107696. doi: 10.1016/j.jsb.2021.107696. Epub 2021 Jan 23.

Abstract

The use of immunomodulatory agents for the treatment of cancer is gaining a growing biopharmaceutical interest. Antibody-cytokine fusion proteins, namely immunocytokines, represent a promising solution for the regulation of the immune system at the site of disease. The three-dimensional arrangement of these molecules can profoundly influence their biological activity and pharmacokinetic properties. Structural techniques might provide important insight in the 3D arrangement of immunocytokines. Here, we performed structure investigations on clinical grade fusion proteins L19-IL2, IL12-L19L19 and L19L19-IL2 to elucidate their quaternary organization. Crystallographic characterization of the common L19 antibody fragment at a resolution of 2.0-Å was combined with low-resolution studies of the full-length chimeric molecules using small-angle synchrotron X-ray scattering (SAXS) and negative stain electron microscopy. Characterization of the full-length quaternary structures of the immunocytokines in solution by SAXS consistently supported the diabody structure in the L19-IL2 immunocytokine and allowed generation of low-resolution models of the chimeric proteins L19L19-IL2 and IL12-L19L19. Comparison with 3D reconstructions obtained from negative-stain electron microscopy revealed marked flexibility associated to the linker regions connecting the cytokine and the antibody components of the chimeric proteins. Collectively, our results indicate that low-resolution molecular structure characterizations provide useful complementary insights for the quality control of immunocytokines, constituting a powerful tool to guide the design and the subsequent optimization steps towards clinical enhancement of these chimeric protein reagents.

摘要

免疫调节剂在癌症治疗中的应用正引起越来越多的生物制药关注。抗体-细胞因子融合蛋白,即免疫细胞因子,代表了一种在疾病部位调节免疫系统的有前途的解决方案。这些分子的三维排列可以深刻地影响它们的生物学活性和药代动力学特性。结构技术可能为免疫细胞因子的三维排列提供重要的见解。在这里,我们对临床级融合蛋白 L19-IL2、IL12-L19L19 和 L19L19-IL2 进行了结构研究,以阐明它们的四级结构。在 2.0-Å 的分辨率下对常见的 L19 抗体片段进行晶体学表征,并结合使用小角度同步加速器 X 射线散射(SAXS)和负染电子显微镜对全长嵌合分子进行低分辨率研究。通过 SAXS 对免疫细胞因子在溶液中的全长四级结构进行的表征一致支持 L19-IL2 免疫细胞因子中的二聚体结构,并允许生成嵌合蛋白 L19L19-IL2 和 IL12-L19L19 的低分辨率模型。与从负染电子显微镜获得的 3D 重建进行比较,发现连接细胞因子和嵌合蛋白抗体成分的连接区存在明显的灵活性。总的来说,我们的结果表明,低分辨率分子结构表征为免疫细胞因子的质量控制提供了有用的补充见解,构成了一种强大的工具,可以指导这些嵌合蛋白试剂的设计和随后的优化步骤,以实现临床增强。

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