INRA, UR1067 Nutrition Métabolisme Aquaculture,F-64310St-Pée-sur-Nivelle,France.
Br J Nutr. 2014 Aug 28;112(4):493-503. doi: 10.1017/S0007114514001226. Epub 2014 May 30.
Methionine is a limiting essential amino acid in most plant-based ingredients of fish feed. In the present study, we aimed to determine the effect of dietary methionine concentrations on several main factors involved in the regulation of mRNA translation and the two major proteolytic pathways (ubiquitin-proteasome and autophagy-lysosomal) in the white muscle of rainbow trout (Oncorhynchus mykiss). The fish were fed for 6 weeks one of the three isonitrogenous diets providing three different methionine concentrations (deficient (DEF), adequate (ADQ) and excess (EXC)). At the end of the experiment, the fish fed the DEF diet had a significantly lower body weight and feed efficiency compared with those fed the EXC and ADQ diets. This reduction in the growth of fish fed the DEF diet was accompanied by a decrease in the activation of the translation initiation factors ribosomal protein S6 and eIF2α. The levels of the main autophagy-related markers (LC3-II and beclin 1) as well as the expression of several autophagy genes (atg4b, atg12 l, Uvrag, SQSTM1, Mul1 and Bnip3) were higher in the white muscle of fish fed the DEF diet. Similarly, the mRNA levels of several proteasome-related genes (Fbx32, MuRF2, MuRF3, ZNF216 and Trim32) were significantly up-regulated by methionine limitation. Together, these results extend our understanding of mechanisms regulating the reduction of muscle growth induced by dietary methionine deficiency, providing valuable information on the biomarkers of the effects of low-fishmeal diets.
蛋氨酸是大多数鱼类饲料植物性成分中一种限制必需氨基酸。在本研究中,我们旨在确定膳食蛋氨酸浓度对调节鱼类白肌中 mRNA 翻译和两种主要蛋白水解途径(泛素-蛋白酶体和自噬-溶酶体)的几个主要因素的影响。将鱼用三种等氮饲料中的一种喂养 6 周,这三种饲料提供三种不同的蛋氨酸浓度(缺乏(DEF)、充足(ADQ)和过量(EXC))。实验结束时,与喂养 EXC 和 ADQ 饲料的鱼相比,喂养 DEF 饲料的鱼体重和饲料效率显著降低。与喂养 DEF 饲料的鱼相比,喂养 DEF 饲料的鱼的生长减少伴随着翻译起始因子核糖体蛋白 S6 和 eIF2α 的激活减少。自噬相关主要标志物(LC3-II 和 beclin 1)的水平以及几种自噬基因(atg4b、atg12 l、Uvrag、SQSTM1、Mul1 和 Bnip3)的表达在喂养 DEF 饲料的鱼的白肌中更高。同样,几种蛋白酶体相关基因(Fbx32、MuRF2、MuRF3、ZNF216 和 Trim32)的 mRNA 水平也因蛋氨酸限制而显著上调。总的来说,这些结果扩展了我们对调节由膳食蛋氨酸缺乏引起的肌肉生长减少的机制的理解,为低鱼粉饮食影响的生物标志物提供了有价值的信息。