Mosoni L, Malmezat T, Valluy M C, Houlier M L, Mirand P P
Laboratoire d'Etude du Métabolisme Azoté, INRA Clermont-Ferrand Theix, Champanelle, France.
J Nutr. 1996 Feb;126(2):516-22. doi: 10.1093/jn/126.2.516.
Our aim was to analyze mechanisms involved in the adaptation of protein metabolism to food deprivation and refeeding in adult rats. Twelve-month-old rats, which had been food-deprived for 113 h and refed for 6 h, were injected subcutaneously with a flooding dose of valine (with 50% [1-13C]-L-valine) to measure in vivo protein synthesis in tibialis anterior, soleus and liver. Protein and RNA contents were also measured. In both muscles, protein mass was maintained during food deprivation. Due to a drop in protein synthetic capacity (Cs), total and myofibrillar protein synthesis rates were reduced in food-deprived rats and were not stimulated by a 6-h refeeding. In contrast, protein levels were maintained lower than RNA levels in liver during food deprivation, and Cs was higher than in fed rats. Protein synthesis rates and ribosomal efficiency were reduced in food-deprived rats. Due to maintenance of protein synthetic capacity, there was a rapid stimulation of liver protein synthesis with refeeding, which induced a significant rise in protein mass (also related to an inhibition of protein degradation). In conclusion, coordinated responses of liver and muscles allowed a sparing of muscle proteins during food deprivation and a rapid recovery of liver proteins during refeeding. Control of ribosome quantity could play a critical role in these adaptations in tissue protein synthesis in adult rats.
我们的目的是分析成年大鼠蛋白质代谢适应食物剥夺和再喂养所涉及的机制。对12月龄、已被食物剥夺113小时并再喂养6小时的大鼠皮下注射大剂量缬氨酸(含50%[1-13C]-L-缬氨酸),以测量胫骨前肌、比目鱼肌和肝脏的体内蛋白质合成。同时还测量了蛋白质和RNA含量。在食物剥夺期间,两块肌肉的蛋白质质量均得以维持。由于蛋白质合成能力(Cs)下降,食物剥夺大鼠的总蛋白和肌原纤维蛋白合成速率降低,且6小时的再喂养并未刺激其合成速率。相反,在食物剥夺期间,肝脏中的蛋白质水平维持在低于RNA水平的状态,且Cs高于喂食大鼠。食物剥夺大鼠的蛋白质合成速率和核糖体效率降低。由于蛋白质合成能力得以维持,再喂养时肝脏蛋白质合成迅速受到刺激,导致蛋白质质量显著增加(这也与蛋白质降解受到抑制有关)。总之,肝脏和肌肉的协同反应使得在食物剥夺期间肌肉蛋白质得以保留,在再喂养期间肝脏蛋白质得以快速恢复。核糖体数量的控制可能在成年大鼠组织蛋白质合成的这些适应性变化中起关键作用。