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磷酸化蛋白质组学指导的操作揭示 SEC22B 作为肝细胞信号节点,调节胰高血糖素的代谢作用。

Phosphoproteomics-directed manipulation reveals SEC22B as a hepatocellular signaling node governing metabolic actions of glucagon.

机构信息

Nutrient Metabolism & Signalling Laboratory, Metabolism, Diabetes and Obesity Program, Biomedicine Discovery Institute, Monash University, Victoria, Australia.

Department of Biochemistry and Molecular Biology, School of Biomedical Sciences, Faculty of Medicine, Nursing & Health Sciences, Monash University, Victoria, Australia.

出版信息

Nat Commun. 2024 Sep 27;15(1):8390. doi: 10.1038/s41467-024-52703-w.

Abstract

The peptide hormone glucagon is a fundamental metabolic regulator that is also being considered as a pharmacotherapeutic option for obesity and type 2 diabetes. Despite this, we know very little regarding how glucagon exerts its pleiotropic metabolic actions. Given that the liver is a chief site of action, we performed in situ time-resolved liver phosphoproteomics to reveal glucagon signaling nodes. Through pathway analysis of the thousands of phosphopeptides identified, we reveal "membrane trafficking" as a dominant signature with the vesicle trafficking protein SEC22 Homolog B (SEC22B) S137 phosphorylation being a top hit. Hepatocyte-specific loss- and gain-of-function experiments reveal that SEC22B was a key regulator of glycogen, lipid and amino acid metabolism, with SEC22B-S137 phosphorylation playing a major role in glucagon action. Mechanistically, we identify several protein binding partners of SEC22B affected by glucagon, some of which were differentially enriched with SEC22B-S137 phosphorylation. In summary, we demonstrate that phosphorylation of SEC22B is a hepatocellular signaling node mediating the metabolic actions of glucagon and provide a rich resource for future investigations on the biology of glucagon action.

摘要

肽类激素胰高血糖素是一种基本的代谢调节剂,也被认为是肥胖症和 2 型糖尿病的一种治疗选择。尽管如此,我们对胰高血糖素如何发挥其多效代谢作用知之甚少。鉴于肝脏是主要的作用部位,我们进行了原位时间分辨肝磷酸蛋白质组学研究,以揭示胰高血糖素信号节点。通过对鉴定出的数千个磷酸肽的途径分析,我们发现“膜运输”是一个主要特征,囊泡运输蛋白 SEC22 同源物 B (SEC22B) S137 磷酸化是一个主要发现。肝特异性缺失和功能获得实验表明,SEC22B 是糖原、脂质和氨基酸代谢的关键调节剂,SEC22B-S137 磷酸化在胰高血糖素作用中起着重要作用。从机制上讲,我们确定了 SEC22B 的几个受胰高血糖素影响的蛋白质结合伙伴,其中一些与 SEC22B-S137 磷酸化差异富集。总之,我们证明了 SEC22B 的磷酸化是介导胰高血糖素代谢作用的肝细胞信号节点,并为进一步研究胰高血糖素作用的生物学提供了丰富的资源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7362/11436942/49b8e3e5a70f/41467_2024_52703_Fig1_HTML.jpg

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