WEHI, 1G Royal Parade, Parkville, VIC, 3052, Australia.
Department of Medical Biology, Faculty of Medicine, Dentistry and Health Sciences, University of Melbourne, Parkville, VIC, 3050, Australia.
Nat Commun. 2022 Sep 28;13(1):5695. doi: 10.1038/s41467-022-33315-8.
The human insulin receptor signalling system plays a critical role in glucose homeostasis. Insulin binding brings about extensive conformational change in the receptor extracellular region that in turn effects trans-activation of the intracellular tyrosine kinase domains and downstream signalling. Of particular therapeutic interest is whether insulin receptor signalling can be replicated by molecules other than insulin. Here, we present single-particle cryoEM structures that show how a 33-mer polypeptide unrelated to insulin can cross-link two sites on the receptor surface and direct the receptor into a signalling-active conformation. The 33-mer polypeptide engages the receptor by two helical binding motifs that are each potentially mimicable by small molecules. The resultant conformation of the receptor is distinct from-but related to-those in extant three-dimensional structures of the insulin-complexed receptor. Our findings thus illuminate unexplored pathways for controlling the signalling of the insulin receptor as well as opportunities for development of insulin mimetics.
人类胰岛素受体信号系统在葡萄糖稳态中起着至关重要的作用。胰岛素结合引起受体细胞外区域的广泛构象变化,进而影响细胞内酪氨酸激酶结构域的跨激活和下游信号转导。特别具有治疗意义的是,除胰岛素以外的分子是否可以复制胰岛素受体信号。在这里,我们呈现了单颗粒冷冻电镜结构,展示了一种与胰岛素无关的 33 个氨基酸多肽如何交联受体表面的两个位点,并将受体引导至信号激活构象。33 个氨基酸多肽通过两个螺旋结合基序与受体结合,每个基序都可能被小分子模拟。受体的这种构象与胰岛素复合物受体的现有三维结构不同,但相关。因此,我们的研究结果阐明了控制胰岛素受体信号的未知途径,以及开发胰岛素类似物的机会。