Probing the binding of interleukin-23 to individual receptor components and the IL-23 heteromeric receptor complex in living cells using NanoBRET

利用NanoBRET技术探测活细胞中白细胞介素-23与单个受体组分以及IL-23异源受体复合物的结合情况。

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作者:Charles S Lay ,Angela Bridges ,Joelle Goulding ,Stephen J Briddon ,Zoja Soloviev ,Peter D Craggs ,Stephen J Hill

Abstract

Interleukin-23 (IL-23) is a pro-inflammatory cytokine involved in the host defense against pathogens but is also implicated in the development of several autoimmune disorders. The IL-23 receptor has become a key target for drug discovery, but the exact mechanism of the receptor ligand interaction remains poorly understood. In this study the affinities of IL-23 for its individual receptor components (IL23R and IL12Rβ1) and the heteromeric complex formed between them have been measured in living cells using NanoLuciferase-tagged full-length proteins. Here, we demonstrate that TAMRA-tagged IL-23 has a greater than 7-fold higher affinity for IL12Rβ1 than IL23R. However, in the presence of both receptor subunits, IL-23 affinity is increased more than three orders of magnitude to 27 pM. Furthermore, we show that IL-23 induces a potent change in the position of the N-terminal domains of the two receptor subunits, consistent with a conformational change in the heteromeric receptor structure. Keywords: IL12Rβ1; IL12p40; IL23R; IL23p19; NanoBRET; cytokine receptor; interleukin-23; ligand binding; receptor oligomerization.

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