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衔接蛋白 NumbL 参与调控糖脂毒性诱导的胰岛β细胞凋亡。

The Adaptor Protein NumbL Is Involved in the Control of Glucolipotoxicity-Induced Pancreatic Beta Cell Apoptosis.

机构信息

Department of Molecular and Cellular Endocrinology, Arthur Riggs Diabetes and Metabolism Research Institute, City of Hope, Duarte, CA 91010, USA.

Comprehensive Metabolic Phenotyping Core, Beckman Research Institute, City of Hope, 1500 E. Duarte Rd., Duarte, CA 91010, USA.

出版信息

Int J Mol Sci. 2023 Feb 7;24(4):3308. doi: 10.3390/ijms24043308.

Abstract

Avoiding the loss of functional beta cell mass is critical for preventing or treating diabetes. Currently, the molecular mechanisms underlying beta cell death are partially understood, and there is a need to identify new targets for developing novel therapeutics to treat diabetes. Previously, our group established that Mig6, an inhibitor of EGF signaling, mediates beta cell death under diabetogenic conditions. The objective here was to clarify the mechanisms linking diabetogenic stimuli to beta cell death by investigating Mig6-interacting proteins. Using co-immunoprecipitation and mass spectrometry, we evaluated the binding partners of Mig6 under both normal glucose (NG) and glucolipotoxic (GLT) conditions in beta cells. We identified that Mig6 interacted dynamically with NumbL, whereas Mig6 associated with NumbL under NG, and this interaction was disrupted under GLT conditions. Further, we demonstrated that the siRNA-mediated suppression of NumbL expression in beta cells prevented apoptosis under GLT conditions by blocking the activation of NF-κB signaling. Using co-immunoprecipitation experiments, we observed that NumbL's interactions with TRAF6, a key component of NFκB signaling, were increased under GLT conditions. The interactions among Mig6, NumbL, and TRAF6 were dynamic and context-dependent. We proposed a model wherein these interactions activated pro-apoptotic NF-κB signaling while blocking pro-survival EGF signaling under diabetogenic conditions, leading to beta cell apoptosis. These findings indicated that NumbL should be further investigated as a candidate anti-diabetic therapeutic target.

摘要

避免功能性β细胞数量的减少对于预防或治疗糖尿病至关重要。目前,β细胞死亡的分子机制部分得到了理解,需要确定新的靶点,以开发治疗糖尿病的新疗法。先前,我们的研究小组发现,EGF 信号通路的抑制剂 Mig6 在致糖尿病条件下介导β细胞死亡。本研究旨在通过研究 Mig6 相互作用蛋白,阐明将致糖尿病刺激与β细胞死亡联系起来的机制。我们通过共免疫沉淀和质谱分析,评估了 Mig6 在正常葡萄糖(NG)和糖脂毒性(GLT)条件下与β细胞中相互作用的结合蛋白。结果表明,Mig6 与 NumbL 动态相互作用,而 Mig6 在 NG 条件下与 NumbL 结合,这种相互作用在 GLT 条件下被破坏。此外,我们证明,通过阻断 NF-κB 信号的激活,在β细胞中用 siRNA 抑制 NumbL 的表达,可以防止 GLT 条件下的细胞凋亡。通过共免疫沉淀实验,我们观察到 NumbL 与 TRAF6(NFκB 信号的关键组成部分)的相互作用在 GLT 条件下增加。Mig6、NumbL 和 TRAF6 之间的相互作用是动态的和依赖于上下文的。我们提出了一个模型,其中这些相互作用在致糖尿病条件下激活促凋亡的 NF-κB 信号,同时阻断促生存的 EGF 信号,导致β细胞凋亡。这些发现表明,NumbL 应该作为候选的抗糖尿病治疗靶点进一步研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2b77/9959170/d7c190bb619d/ijms-24-03308-g001.jpg

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