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化学交联的HIV-1包膜糖蛋白实验性疫苗抗原的深度结构保守性

Profound structural conservation of chemically cross-linked HIV-1 envelope glycoprotein experimental vaccine antigens.

作者信息

Martin Gregory M, Russell Rebecca A, Mundsperger Philip, Harris Scarlett, Jovanoska Lu, Trajano Luiza Farache, Schiffner Torben, Fabian Katalin, Tolazzi Monica, Scarlatti Gabriella, McFarlane Leon, Cheeseman Hannah, Aldon Yoann, Schermer Edith E, Breemen Marielle, Sliepen Kwinten, Katinger Dietmar, Kunert Renate, Sanders Rogier W, Shattock Robin, Ward Andrew B, Sattentau Quentin J

机构信息

Department of Integrative Structural and Computational Biology, The Scripps Research Institute, La Jolla, CA, USA.

The Sir William Dunn School of Pathology, The University of Oxford, Oxford, UK.

出版信息

NPJ Vaccines. 2023 Jul 13;8(1):101. doi: 10.1038/s41541-023-00696-w.

Abstract

Chemical cross-linking is used to stabilize protein structures with additional benefits of pathogen and toxin inactivation for vaccine use, but its use has been restricted by the potential for local or global structural distortion. This is of particular importance when the protein in question requires a high degree of structural conservation for inducing a biological outcome such as the elicitation of antibodies to conformationally sensitive epitopes. The HIV-1 envelope glycoprotein (Env) trimer is metastable and shifts between different conformational states, complicating its use as a vaccine antigen. Here we have used the hetero-bifunctional zero-length reagent 1-Ethyl-3-(3-Dimethylaminopropyl)-Carbodiimide (EDC) to cross-link two soluble Env trimers, selected well-folded trimer species using antibody affinity, and transferred this process to good manufacturing practice (GMP) for experimental medicine use. Cross-linking enhanced trimer stability to biophysical and enzyme attack. Cryo-EM analysis revealed that cross-linking retained the overall structure with root-mean-square deviations (RMSDs) between unmodified and cross-linked Env trimers of 0.4-0.5 Å. Despite this negligible distortion of global trimer structure, we identified individual inter-subunit, intra-subunit, and intra-protomer cross-links. Antigenicity and immunogenicity of the trimers were selectively modified by cross-linking, with cross-linked ConS retaining bnAb binding more consistently than ConM. Thus, the EDC cross-linking process improves trimer stability whilst maintaining protein folding, and is readily transferred to GMP, consistent with the more general use of this approach in protein-based vaccine design.

摘要

化学交联用于稳定蛋白质结构,还具有使病原体和毒素失活的额外益处,可用于疫苗制备,但其应用受到局部或整体结构扭曲可能性的限制。当所讨论的蛋白质需要高度的结构保守性以诱导生物学结果(如引发针对构象敏感表位的抗体)时,这一点尤为重要。HIV-1包膜糖蛋白(Env)三聚体是亚稳态的,会在不同构象状态之间转变,这使其作为疫苗抗原的应用变得复杂。在这里,我们使用了异双功能零长度试剂1-乙基-3-(3-二甲基氨基丙基)碳二亚胺(EDC)来交联两个可溶性Env三聚体,利用抗体亲和力选择折叠良好的三聚体种类,并将此过程转化为用于实验医学的药品生产质量管理规范(GMP)。交联增强了三聚体对生物物理和酶攻击的稳定性。冷冻电镜分析表明,交联保留了整体结构,未修饰和交联的Env三聚体之间的均方根偏差(RMSD)为0.4-0.5 Å。尽管三聚体整体结构的这种扭曲可忽略不计,但我们确定了单个亚基间、亚基内和原体内的交联。三聚体的抗原性和免疫原性通过交联被选择性地修饰,交联后的ConS比ConM更一致地保留了bnAb结合。因此,EDC交联过程提高了三聚体稳定性,同时保持了蛋白质折叠,并且很容易转化为GMP,这与这种方法在基于蛋白质的疫苗设计中的更广泛应用相一致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2883/10345191/3e3a94d86bcb/41541_2023_696_Fig1_HTML.jpg

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