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干酪乳杆菌 IM13 发酵乳清蛋白通过 PI3K/AKT/FOXO 通路对肌肉萎缩的预防作用。

Preventive effect of fermented whey protein mediated by Lactobacillus gasseri IM13 via the PI3K/AKT/FOXO pathway in muscle atrophy.

机构信息

Department of Food and Biotechnology, Korea University, Sejong 30019, Korea.

Department of Biotechnology, College of Life Sciences and Biotechnology, Korea University, Seoul 02841, Korea.

出版信息

J Dairy Sci. 2024 May;107(5):2606-2619. doi: 10.3168/jds.2023-24027. Epub 2023 Nov 16.

DOI:10.3168/jds.2023-24027
PMID:37977441
Abstract

This study investigated the preventive effects of whey protein fermented with Lactobacillus gasseri IM13 (F-WP) against dexamethasone (DEX)-induced muscle atrophy. C2C12 muscle cells were treated with F-WP followed by DEX treatment. Dexamethasone treatment inhibited myotube formation and the expression of myogenic regulatory factors; however, pretreatment with F-WP attenuated DEX-induced damage. The F-WP significantly activated the phosphorylation of the IGF-1/PI3K/AKT pathway and improved muscle homeostasis suppressed by DEX. Moreover, F-WP alleviated the phosphorylation of mTOR, S6K1, and 4E-BP1 and enhanced muscle protein synthesis. Muscle-specific ubiquitin ligases and autophagy lysosomes, which were activated by the dephosphorylation of FOXO3a by DEX treatment, were significantly attenuated by F-WP pretreatment of myotubes. For peptidomic analysis, F-WP was fractionated using preparative HPLC (prep-HPLC), and the AA sequences of 11 peptides were identified using MALDI-TOF/MS/MS. In conclusion, fermentation of whey protein by the specific probiotic strain IM13 produced bioactive peptides with high antioxidant and anti-sarcopenic-sarcopenic effects, which markedly enhanced myogenesis and muscle protein synthesis while diminishing muscle protein degradation compared with intact whey protein.

摘要

本研究旨在探讨干酪乳杆菌 IM13 发酵乳清蛋白(F-WP)对地塞米松(DEX)诱导的肌肉萎缩的预防作用。先用 F-WP 处理 C2C12 肌管细胞,然后用 DEX 处理。DEX 处理抑制肌管形成和肌生成调节因子的表达;然而,F-WP 的预处理减轻了 DEX 诱导的损伤。F-WP 显著激活了 IGF-1/PI3K/AKT 通路的磷酸化,改善了 DEX 抑制的肌肉内稳态。此外,F-WP 减轻了 mTOR、S6K1 和 4E-BP1 的磷酸化,增强了肌肉蛋白合成。DEX 处理通过去磷酸化 FOXO3a 激活的肌肉特异性泛素连接酶和自噬溶酶体,被 F-WP 预处理的肌管显著减弱。用于肽组学分析,用制备高效液相色谱(prep-HPLC)对 F-WP 进行分级,并用 MALDI-TOF/MS/MS 鉴定了 11 个肽的 AA 序列。总之,特定益生菌菌株 IM13 发酵乳清蛋白产生了具有高抗氧化和抗肌肉减少症作用的生物活性肽,与完整乳清蛋白相比,它显著增强了肌生成和肌肉蛋白合成,同时减少了肌肉蛋白降解。

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