Center for Functional Protein Assemblies (CPA) and School of Natural Sciences, Department of Bioscience, Technical University of Munich, 85748, Garching, Germany.
Faculty of Pharmaceutical Sciences, Ghent University, Ottergemsesteenweg 460, 9000, Ghent, Belgium.
Commun Biol. 2023 Apr 8;6(1):386. doi: 10.1038/s42003-023-04762-w.
The angiotensin-converting enzyme 2 (ACE2) is a viral receptor used by sarbecoviruses to infect cells. Fusion proteins comprising extracellular ACE2 domains and the Fc part of immunoglobulins exhibit high virus neutralization efficiency, but the structure and stability of these molecules are poorly understood. We show that although the hinge between the ACE2 and the IgG4-Fc is highly flexible, the conformational dynamics of the two ACE2 domains is restricted by their association. Interestingly, the conformational stability of the ACE2 moiety is much lower than that of the Fc part. We found that chemical compounds binding to ACE2, such as DX600 and MLN4760, can be used to strongly increase the thermal stability of the ACE2 by different mechanisms. Together, our findings reveal a general concept for stabilizing the labile receptor segments of therapeutic antiviral fusion proteins by chemical compounds.
血管紧张素转化酶 2(ACE2)是沙贝科病毒用来感染细胞的病毒受体。包含细胞外 ACE2 结构域和免疫球蛋白 Fc 部分的融合蛋白表现出很高的病毒中和效率,但这些分子的结构和稳定性了解甚少。我们表明,尽管 ACE2 和 IgG4-Fc 之间的铰链非常灵活,但两个 ACE2 结构域的构象动力学受到它们之间的关联限制。有趣的是,ACE2 部分的构象稳定性远低于 Fc 部分。我们发现,与 ACE2 结合的化学化合物,如 DX600 和 MLN4760,可以通过不同的机制来强烈提高 ACE2 的热稳定性。总之,我们的研究结果揭示了通过化学化合物稳定治疗性抗病毒融合蛋白不稳定受体片段的一般概念。