Kimball S R, Jefferson L S
Department of Cellular and Molecular Physiology, College of Medicine, Pennsylvania State University, Hershey 17033.
Acta Diabetol. 1991;28(2):134-9. doi: 10.1007/BF00579715.
Protein synthesis is impaired in skeletal muscle and heart from diabetic rats. In muscles composed primarily of slow-twitch fibres (e.g. heart or soleus), the inhibition of protein synthesis can be accounted for entirely by a decrease in the amount of RNA. In contrast, in muscles of mixed fibre composition (e.g. gastrocnemius or psoas), the inhibition of protein synthesis is associated with an impairment in peptide-chain initiation. We have found that the inhibition of peptide-chain initiation that occurs in muscles composed of mixed fast-twitch fibres involves eukaryotic initiation factor 2B (eIF-2B). Thus, eIF-2B activity is inhibited in gastrocnemius and psoas but not heart or soleus from diabetic rats. In other systems eIF-2B activity is regulated by phosphorylation of the alpha-subunit of a second initiation factor, eIF-2. However, we have found no change in the phosphorylation state of eIF-2 alpha in either fast- or slow-twitch muscles from diabetic compared to control animals. Instead, the available evidence suggests that eIF-2B activity may be modulated by an alternate mechanism such as a change in the extent of phosphorylation of the 82,000 Mr subunit of the factor or a change in the NADPH/NADP+ ratio.
糖尿病大鼠的骨骼肌和心脏中蛋白质合成受损。在主要由慢肌纤维组成的肌肉(如心脏或比目鱼肌)中,蛋白质合成的抑制完全可归因于RNA量的减少。相比之下,在混合纤维组成的肌肉(如腓肠肌或腰大肌)中,蛋白质合成的抑制与肽链起始的损伤有关。我们发现,在由混合快肌纤维组成的肌肉中发生的肽链起始抑制涉及真核起始因子2B(eIF-2B)。因此,糖尿病大鼠的腓肠肌和腰大肌中eIF-2B活性受到抑制,但心脏或比目鱼肌中则未受抑制。在其他系统中,eIF-2B活性受另一种起始因子eIF-2的α亚基磷酸化调节。然而,我们发现,与对照动物相比,糖尿病大鼠的快肌或慢肌中eIF-2α的磷酸化状态均无变化。相反,现有证据表明,eIF-2B活性可能通过另一种机制调节,如该因子82,000 Mr亚基磷酸化程度的变化或NADPH/NADP+比值的变化。