N-Lactoyl Phenylalanine Disrupts Insulin Signaling, Induces Inflammation, and Impairs Mitochondrial Respiration in Cell Models

炎症 线粒体 葡萄糖摄取 胰岛素 二甲双胍 苯丙氨酸 骨骼肌 生物 内科学 内分泌学 医学 生物化学 氨基酸
作者
Laila Hedaya,Khaled Naja,Shamma Almuraikhy,Najeha Anwardeen,Asma A. Elashi,Maha Al‐Asmakh,Susu M. Zughaier,Meritxell Espino-Guarch,Osama Y. Al-Dirbashi,Gavin P. Davey,Mohamed A. Elrayess
出处
期刊:Cells [Multidisciplinary Digital Publishing Institute]
卷期号:14 (16): 1296-1296 被引量:2
标识
DOI:10.3390/cells14161296
摘要

N-lactoyl amino acids (Lac-AAs) are key players that regulate appetite and body weight. The most prominent and well-studied member is N-lactoyl phenylalanine (Lac-Phe), which can be induced by food intake, exercise and metformin treatment. However, its broader metabolic impact remains insufficiently characterized. This study investigates the effects of Lac-Phe on insulin signaling, inflammation, and mitochondrial respiration using HepG2 and differentiated C2C12 cell models, as well as isolated rat brain mitochondria and synaptosomes. Our results demonstrate that Lac-Phe significantly impairs insulin-stimulated phosphorylation of key proteins in the insulin signaling pathway, particularly in skeletal muscle cells, indicating disrupted insulin signaling. Additionally, Lac-Phe exposure increases the secretion of pro-inflammatory cytokines in C2C12 skeletal muscle cells and markedly impairs mitochondrial respiration in HepG2 liver cells and rat brain-derived synaptosomes, but not in isolated mitochondria. These findings highlight potential adverse metabolic effects of Lac-Phe, especially when administered at high concentrations, and underscore the necessity of conducting a comprehensive risk assessment and dose optimization before considering Lac-Phe or related Lac-AAs as therapeutic agents. Our work provides important insights into the molecular liabilities associated with Lac-Phe and calls for further studies to balance its therapeutic promise against possible metabolic risks.
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