Tollenaere Maxim A X, Mølck Christina, Henderson Ian, Pollack Scott, Addis Philip, Petersen Helle Heibroch, Norsgaard Hanne
LEO Pharma A/S, Ballerup, Denmark.
Sygnature Discovery, Nottingham, United Kingdom.
JID Innov. 2023 Jul 4;3(5):100214. doi: 10.1016/j.xjidi.2023.100214. eCollection 2023 Sep.
Tralokinumab, a fully human mAb specifically targeting the IL-13 cytokine, has demonstrated clinical efficacy and safety in patients with moderate-to-severe atopic dermatitis. Tralokinumab binds IL-13 with high affinity, which prevents the interaction of IL-13 with IL-13Rα1 and subsequent signaling. Similarly, tralokinumab-bound IL-13 cannot bind to IL-13Rα2, a proposed decoy receptor that is reported to bind IL-13 with extraordinarily high affinity. It has however not been fully elucidated to what extent tralokinumab interferes with the endogenous regulation of IL-13 through IL-13Rα2. In this mechanistic study, we used biophysical, biochemical, and cellular assays to investigate the effect of tralokinumab on the interaction between IL-13 and IL-13Rα1 and IL-13Rα2, respectively, as well as the effects on IL-13Rα2-mediated IL-13 internalization. We demonstrate that IL-13Rα2 binds IL-13 with exceptionally high affinity and that tralokinumab is unable to displace IL-13 from IL-13Rα2. In contrast to this, tralokinumab is able to disrupt the IL-13/IL-13Rα1 and IL-13Rα1/IL-13/IL-4Rα complex. Furthermore, we demonstrate that whereas the IL-13/tralokinumab complex is unable to bind IL-13Rα2, any IL-13 that is not bound by tralokinumab (i.e., free IL-13) can be bound by IL-13Rα2 and subsequently internalized, regardless of the presence of tralokinumab. In summary, our study indicates that tralokinumab does not interfere with endogenous IL-13Rα2-mediated regulation of free IL-13.
曲罗芦单抗是一种特异性靶向白细胞介素-13(IL-13)细胞因子的全人源单克隆抗体(mAb),已在中度至重度特应性皮炎患者中显示出临床疗效和安全性。曲罗芦单抗以高亲和力结合IL-13,从而阻止IL-13与IL-13Rα1的相互作用及后续信号传导。同样,与曲罗芦单抗结合的IL-13不能与IL-13Rα2结合,IL-13Rα2是一种被认为是诱饵受体的蛋白,据报道它能以极高的亲和力结合IL-13。然而,曲罗芦单抗在多大程度上通过IL-13Rα2干扰IL-13的内源性调节尚未完全阐明。在这项机制研究中,我们使用生物物理、生化和细胞分析方法,分别研究曲罗芦单抗对IL-13与IL-13Rα1和IL-13Rα2之间相互作用的影响,以及对IL-13Rα2介导的IL-13内化的影响。我们证明IL-13Rα2以极高的亲和力结合IL-13,并且曲罗芦单抗无法将IL-13从IL-13Rα2上置换下来。与此相反,曲罗芦单抗能够破坏IL-13/IL-13Rα1和IL-13Rα1/IL-13/IL-4Rα复合物。此外,我们证明,虽然IL-13/曲罗芦单抗复合物不能结合IL-13Rα2,但任何未与曲罗芦单抗结合的IL-13(即游离IL-13)都可以被IL-13Rα2结合并随后内化,无论曲罗芦单抗是否存在。总之,我们的研究表明曲罗芦单抗不会干扰内源性IL-13Rα2介导的游离IL-13调节。