Arabadjis P G, Tullson P C, Terjung R L
Department of Physiology, State University of New York, Syracuse 13210.
Am J Physiol. 1993 May;264(5 Pt 1):C1246-51. doi: 10.1152/ajpcell.1993.264.5.C1246.
To determine the capacity for purine nucleotide degradation among skeletal muscle fiber types, we established energy-depleted conditions in muscles of the rat hindlimb by inducing muscle contraction during ischemia. After 5, 10, 15, or 20 min of ischemic contractions, representative muscle sections were freeze-clamped and analyzed for purine nucleotides, nucleosides, and bases. Fast-twitch muscle sections accumulated about fourfold more IMP than the slow-twitch red soleus muscle. Inosine begins to accumulate at < 0.5 mumol/g IMP in slow-twitch muscle and at approximately 2 mumol/g IMP in fast-twitch muscle. This suggests that inosine is formed intracellularly by 5'-nucleotidase acting on IMP and that the activity and/or substrate affinity of the 5'-nucleotidase present in slow-twitch muscle may be higher than in fast-twitch muscle. At similar concentrations of precursor IMP, slow-twitch muscle has a greater capacity for purine nucleoside formation and should be more dependent on salvage and de novo synthesis of purine for the maintenance of muscle adenine nucleotides. Fast-twitch muscles are better able to retain IMP for subsequent reamination due to their lower capacity to degrade IMP to inosine.
为了确定骨骼肌纤维类型之间嘌呤核苷酸的降解能力,我们通过在缺血期间诱导肌肉收缩,在大鼠后肢肌肉中建立了能量耗尽的条件。在缺血性收缩5、10、15或20分钟后,将代表性的肌肉切片进行冷冻钳夹,并分析嘌呤核苷酸、核苷和碱基。快肌切片积累的肌苷酸比慢肌红比目鱼肌多约四倍。在慢肌中,当肌苷酸含量低于0.5μmol/g时,肌苷开始积累;在快肌中,当肌苷酸含量约为2μmol/g时,肌苷开始积累。这表明肌苷是由5'-核苷酸酶作用于肌苷酸在细胞内形成的,并且慢肌中存在的5'-核苷酸酶的活性和/或底物亲和力可能高于快肌。在相似浓度的前体肌苷酸条件下,慢肌具有更大的嘌呤核苷形成能力,并且在维持肌肉腺嘌呤核苷酸方面应该更依赖于嘌呤的补救合成和从头合成。由于快肌将肌苷酸降解为肌苷的能力较低,因此它们能够更好地保留肌苷酸以供后续再氨基化。