TRIM21 and Fc-engineered antibodies: decoding its complex antibody binding mode with implications for viral neutralization

Johannes Reusch, Linda Elise Franken, Jakob Then, Philippe Ringler, Joachim Butzer, Thomas Juroschek, Christian Klein, Tilman Schlothauer, Laurent Larivière
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Abstract

TRIM21 is a pivotal effector in the immune system, orchestrating antibody-mediated responses and modulating immune signaling. In this comprehensive study, we focus on the interaction of TRIM21 with Fc engineered antibodies and subsequent implications for viral neutralization. Through a series of analytical techniques, including biosensor assays, mass photometry, and electron microscopy, along with structure predictions, we unravel the intricate mechanisms governing the interplay between TRIM21 and antibodies. Our investigations reveal that the TRIM21 capacity to recognize, bind, and facilitate the proteasomal degradation of antibody-coated viruses is critically dependent on the affinity and avidity interplay of its interactions with antibody Fc regions. We suggest a novel binding mechanism, where TRIM21 binding to one Fc site results in the detachment of PRYSPRY from the coiled-coil domain, enhancing mobility due to its flexible linker, thereby facilitating the engagement of the second site, resulting in avidity due to bivalent engagement. These findings shed light on the dual role of TRIM21 in antiviral immunity, both in recognizing and directing viruses for intracellular degradation, and demonstrate its potential for therapeutic exploitation. The study advances our understanding of intracellular immune responses and opens new avenues for the development of antiviral strategies and innovation in tailored effector functions designed to leverage TRIM21s unique binding mode.
TRIM21 和 Fc 工程抗体:解码其复杂的抗体结合模式及其对病毒中和的影响
TRIM21 是免疫系统中的一个关键效应因子,它协调抗体介导的反应并调节免疫信号转导。在这项综合研究中,我们重点研究了 TRIM21 与 Fc 工程抗体的相互作用以及随后对病毒中和的影响。通过一系列分析技术,包括生物传感器测定、质量光度测定、电子显微镜以及结构预测,我们揭示了 TRIM21 与抗体之间相互作用的复杂机制。我们的研究发现,TRIM21 识别、结合和促进抗体包被病毒的蛋白酶体降解的能力,关键取决于它与抗体 Fc 区域相互作用的亲和力和热敏性。我们提出了一种新的结合机制,即 TRIM21 与一个 Fc 位点的结合会导致 PRYSPRY 从线圈结构域脱离,由于其柔性连接体而增强了流动性,从而促进了与第二个位点的结合,由于二价结合而产生了亲和力。这些发现揭示了 TRIM21 在抗病毒免疫中的双重作用,既能识别病毒,又能引导病毒在细胞内降解,并证明了它在治疗方面的潜力。这项研究加深了我们对细胞内免疫反应的理解,为开发抗病毒策略和创新定制效应器功能开辟了新途径,这些效应器功能旨在利用 TRIM21 独特的结合模式。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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