Termin A, Pette D
Fakultät für Biologie, Universität Konstanz, Federal Republic of Germany.
Eur J Biochem. 1992 Mar 1;204(2):569-73. doi: 10.1111/j.1432-1033.1992.tb16669.x.
Chronic low-frequency stimulation was used for studying the adaptive potential of rat fast-twitch muscle to increased neuromuscular activity. The sequential exchange of myosin heavy chain isoforms HCIIb with HCIId and HCIIa was studied at the translational level using an in-vivo-labeling technique with [35S]methionine. Alterations in heavy chain isoform synthesis, i.e. a decrease in the labeling of HCIIb concomitant with an enhanced labeling of HCIId/IIa, were detectable already two days after the onset of stimulation. This time course corresponds to the previously observed alterations in the amounts of HCIIb and HCIIa mRNAs. However, significant changes in the relative protein amounts of HCIIb and HCIId/IIa were recorded only after an 8-day stimulation period. This delay at the protein level was interpreted to relate to the slow turnover of HCIIb which was estimated from its decay in long-term stimulated muscles with an approximate value of 14.7 days. Therefore, protein degradation seems to be an important post-translational regulatory step in the remodeling process of the thick filament.
采用慢性低频刺激来研究大鼠快肌对神经肌肉活动增加的适应潜力。使用[35S]甲硫氨酸体内标记技术,在翻译水平上研究了肌球蛋白重链异构体HCIIb与HCIId和HCIIa的顺序交换。刺激开始两天后即可检测到重链异构体合成的变化,即HCIIb标记减少,同时HCIId/IIa标记增加。这个时间进程与之前观察到的HCIIb和HCIIa mRNA量的变化一致。然而,仅在8天的刺激期后才记录到HCIIb和HCIId/IIa相对蛋白量的显著变化。蛋白质水平的这种延迟被解释为与HCIIb的缓慢周转有关,根据其在长期刺激肌肉中的衰减估计,周转时间约为14.7天。因此,蛋白质降解似乎是粗肌丝重塑过程中一个重要的翻译后调节步骤。