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通过多效脂肪因子瘦素实现受体组装的机制。

Mechanism of receptor assembly via the pleiotropic adipokine Leptin.

机构信息

Unit for Structural Biology, Department of Biochemistry and Microbiology, Ghent University, Ghent, Belgium.

Unit for Structural Biology, VIB-UGent Center for Inflammation Research, Ghent, Belgium.

出版信息

Nat Struct Mol Biol. 2023 Apr;30(4):551-563. doi: 10.1038/s41594-023-00941-9. Epub 2023 Mar 23.

Abstract

The adipokine Leptin activates its receptor LEP-R in the hypothalamus to regulate body weight and exerts additional pleiotropic functions in immunity, fertility and cancer. However, the structure and mechanism of Leptin-mediated LEP-R assemblies has remained unclear. Intriguingly, the signaling-competent isoform of LEP-R is only lowly abundant amid several inactive short LEP-R isoforms contributing to a mechanistic conundrum. Here we show by X-ray crystallography and cryo-EM that, in contrast to long-standing paradigms, Leptin induces type I cytokine receptor assemblies featuring 3:3 stoichiometry and demonstrate such Leptin-induced trimerization of LEP-R on living cells via single-molecule microscopy. In mediating these assemblies, Leptin undergoes drastic restructuring that activates its site III for binding to the Ig domain of an adjacent LEP-R. These interactions are abolished by mutations linked to obesity. Collectively, our study provides the structural and mechanistic framework for how evolutionarily conserved Leptin:LEP-R assemblies with 3:3 stoichiometry can engage distinct LEP-R isoforms to achieve signaling.

摘要

瘦素是一种脂肪细胞因子,它在大脑下丘脑通过激活瘦素受体(LEP-R)来调节体重,并在免疫、生育和癌症等方面发挥额外的多效作用。然而,瘦素介导的 LEP-R 组装的结构和机制仍不清楚。有趣的是,LEP-R 的信号转导功能形式在几种无活性的短 LEP-R 异构体中含量很低,这导致了一种机制上的难题。通过 X 射线晶体学和 cryo-EM 研究,我们发现,与长期以来的范式相反,瘦素诱导 I 型细胞因子受体组装,其特征为 3:3 化学计量,并通过单分子显微镜在活细胞上证明了这种瘦素诱导的 LEP-R 三聚体化。在介导这些组装的过程中,瘦素经历了剧烈的结构重排,激活了其与相邻 LEP-R 的 Ig 结构域结合的 III 结构域。这些相互作用被与肥胖相关的突变所破坏。总的来说,我们的研究为进化上保守的瘦素:LEP-R 三聚体与 3:3 化学计量如何与不同的 LEP-R 异构体结合以实现信号转导提供了结构和机制框架。

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