Food Microbiology and Function Research Laboratories, R&D Division, Meiji Co. Ltd., 1-29-1 Nanakuni, Hachiouji, Tokyo 192-0919, Japan.
Nutrients. 2021 Jul 13;13(7):2391. doi: 10.3390/nu13072391.
There is ongoing debate as to whether or not α-hydroxyisocaproic acid (HICA) positively regulates skeletal muscle protein synthesis resulting in the gain or maintenance of skeletal muscle. We investigated the effects of HICA on mouse C2C12 myotubes under normal conditions and during cachexia induced by co-exposure to TNFα and IFNγ. The phosphorylation of AMPK or ERK1/2 was significantly altered 30 min after HICA treatment under normal conditions. The basal protein synthesis rates measured by a deuterium-labeling method were significantly lowered by the HICA treatment under normal and cachexic conditions. Conversely, myotube atrophy induced by TNFα/IFNγ co-exposure was significantly improved by the HICA pretreatment, and this improvement was accompanied by the inhibition of iNOS expression and IL-6 production. Moreover, HICA also suppressed the TNFα/IFNγ co-exposure-induced secretion of 3-methylhistidine. These results demonstrated that HICA decreases basal protein synthesis under normal or cachexic conditions; however, HICA might attenuate skeletal muscle atrophy via maintaining a low level of protein degradation under cachexic conditions.
目前,关于 α-羟基异己酸(HICA)是否能正向调节骨骼肌蛋白合成,从而促进或维持骨骼肌,存在着持续的争论。我们研究了 HICA 在正常条件下以及在 TNFα 和 IFNγ 共同暴露诱导的恶病质条件下对 C2C12 肌管的影响。在正常条件下,HICA 处理 30 分钟后,AMPK 或 ERK1/2 的磷酸化明显改变。通过氘标记法测量的基础蛋白合成率在正常和恶病质条件下均因 HICA 处理而显著降低。相反,HICA 预处理可显著改善 TNFα/IFNγ 共同暴露诱导的肌管萎缩,并且这种改善伴随着 iNOS 表达和 IL-6 产生的抑制。此外,HICA 还抑制了 TNFα/IFNγ 共同暴露诱导的 3-甲基组氨酸的分泌。这些结果表明,HICA 在正常或恶病质条件下降低基础蛋白合成;然而,HICA 可能通过在恶病质条件下维持低水平的蛋白降解来减轻骨骼肌萎缩。