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调节骨骼肌中糖原磷酸化酶转录水平的神经依赖性因子。

Nerve-dependent factors regulating transcript levels of glycogen phosphorylase in skeletal muscle.

作者信息

Matthews C C, Carlsen R C, Froman B, Tait R, Gorin F

机构信息

Department of Human Physiology, School of Medicine, University of California, Davis 95616, USA.

出版信息

Cell Mol Neurobiol. 1998 Jun;18(3):319-38. doi: 10.1023/a:1022553115779.

Abstract
  1. Muscle glycogen phosphorylase (MGP), the rate-limiting enzyme for glycogen metabolism in skeletal muscle, is neurally regulated. Steady-state transcript levels of the skeletal muscle isozyme of MGP decrease significantly following muscle denervation and after prolonged muscle inactivity with an intact motor nerve. These data suggest that muscle activity has an important influence on MGP gene expression. The evidence to this point, however, does not preclude the possibility that MGP is also regulated by motor neuron-derived trophic factors. This study attempts to distinguish between regulation provided by nerve-evoked muscle contractile activity and that provided by the delivery of neurotrophic factors. 2. Steady-state MGP transcript levels were determined in rat tibialis anterior (TA) muscles following controlled interventions aimed at separating the contributions of contractile activity from axonally transported trophic factors. The innervated TA was rendered inactive by daily epineural injections of tetrodotoxin (TTX) into the sciatic nerve. Sustained inhibition of axonal transport was accomplished by applying one of three different concentrations of the antimicrotubule agent, vinblastine (VIN), to the proximal sciatic nerve for 1 hr. The axonal transport of acetylcholinesterase (AChE) was assessed 7, 14, and 28 days after the single application of VIN. 3. MGP transcript levels normalized to total RNA were reduced by 67% in rat TA, 7 days after nerve section. Daily injection of 2 microg TTX into the sciatic nerve for 7 days eliminated muscle contractile activity and reduced MGP transcript levels by 60%. 4. A single, 1-hr application of 0.10% (w/v) VIN to the sciatic nerve reduced axonal transport but did not alter MGP transcript levels in the associated TA, 7 days after treatment. Application of 0.10% VIN to the sciatic nerve also did not affect IA sensory or motor nerve conduction velocities or TA contractile function. 5. Treatment of the sciatic nerve with 0.40% (w/v) VIN for 1 hr reduced axonal transport and decreased MGP transcript levels by 50% within 7 days, but also reduced sensory and motor nerve conduction velocities and depressed TA contractile function. 6. Myogenin, a member of a family of regulatory factors shown to influence the transcription of many muscle genes, including MGP, was used as a molecular marker for muscle inactivity. Myogenin transcript levels were increased following denervation and after treatment with TTX or 0.40% VIN but not after treatment with 0.10% VIN. 7. The results suggest that MGP transcript levels in TA are regulated predominantly by muscle activity, rather than by the delivery of neurotrophic factors. Intrinsic myogenic factors, however, also play a role in MGP expression, since denervation did not reduce MGP transcript levels below 30% of control TA. The dominant influence of activity in the regulation of MGP contrasts with the proposed regulation of oxidative enzyme expression, which appears to depend on both activity and trophic factor influences.
摘要
  1. 肌肉糖原磷酸化酶(MGP)是骨骼肌糖原代谢的限速酶,受神经调节。肌肉去神经支配后以及在运动神经完整但肌肉长期不活动后,MGP骨骼肌同工酶的稳态转录水平显著下降。这些数据表明肌肉活动对MGP基因表达有重要影响。然而,到目前为止的证据并不排除MGP也受运动神经元衍生的营养因子调节的可能性。本研究试图区分神经诱发的肌肉收缩活动所提供的调节和神经营养因子传递所提供的调节。2. 在大鼠胫前肌(TA)中,通过旨在区分收缩活动和轴突运输的营养因子贡献的对照干预措施,测定MGP的稳态转录水平。通过每天向坐骨神经进行神经外膜注射河豚毒素(TTX),使受支配的TA失去活性。通过将三种不同浓度的抗微管药物长春碱(VIN)之一应用于坐骨神经近端1小时,实现对轴突运输的持续抑制。在单次应用VIN后7、14和28天评估乙酰胆碱酯酶(AChE)的轴突运输。3. 神经切断7天后,大鼠TA中相对于总RNA标准化的MGP转录水平降低了67%。每天向坐骨神经注射2微克TTX,持续7天,消除了肌肉收缩活动,并使MGP转录水平降低了60%。4. 在治疗7天后,单次向坐骨神经应用0.10%(w/v)的VIN 1小时,可减少轴突运输,但未改变相关TA中的MGP转录水平。向坐骨神经应用0.10%的VIN也不影响IA感觉或运动神经传导速度或TA的收缩功能。5. 用0.40%(w/v)的VIN处理坐骨神经1小时,可减少轴突运输,并在7天内使MGP转录水平降低50%,但也降低了感觉和运动神经传导速度,并抑制了TA的收缩功能。6. 肌细胞生成素是已显示影响包括MGP在内的许多肌肉基因转录的调节因子家族的成员,用作肌肉不活动的分子标记。去神经支配后以及用TTX或0.40%的VIN处理后,肌细胞生成素转录水平升高,但用0.10%的VIN处理后未升高。7. 结果表明,TA中的MGP转录水平主要受肌肉活动调节,而非神经营养因子的传递。然而,内在的肌源性因子在MGP表达中也起作用,因为去神经支配并未使MGP转录水平降低至对照TA的30%以下。MGP调节中活动的主导影响与氧化酶表达的拟议调节形成对比,氧化酶表达似乎取决于活动和营养因子的影响。

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