首页> 外文期刊>The Journal of Physiology >PPARdelta expression is influenced by muscle activity and induces slow muscle properties in adult rat muscles after somatic gene transfer.
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PPARdelta expression is influenced by muscle activity and induces slow muscle properties in adult rat muscles after somatic gene transfer.

机译:PPARdelta表达受肌肉活动的影响,并在体细胞基因转移后诱导成年大鼠肌肉的缓慢肌肉特性。

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The effects of exercise on skeletal muscle are mediated by a coupling between muscle electrical activity and gene expression. Several activity correlates, such as intracellular Ca(2+), hypoxia and metabolites like free fatty acids (FFAs), might initiate signalling pathways regulating fibre-type-specific genes. FFAs can be sensed by lipid-dependent transcription factors of the peroxisome proliferator-activated receptor (PPAR) family. We found that the mRNA for the predominant muscle isoform, PPARdelta, was three-fold higher in the slow/oxidative soleus compared to the fast/glycolytic extensor digitorum longus (EDL) muscle. In histological sections of the soleus, the most oxidative fibres display the highest levels of PPARdelta protein. When the soleus muscle was stimulated electrically by a pattern mimicking fast/glycolytic IIb motor units, the mRNA level of PPARdelta was reduced to less than half within 24 h. In the EDL, a three-fold increase was observed after slow type I-like electrical stimulation. When a constitutively active form of PPARdelta was overexpressed for 14 days in normally active adult fibres after somatic gene transfer, the number of I/IIa hybrids in the EDL more than tripled, IIa fibres increased from 14% to 25%, and IIb fibres decreased from 55% to 45%. The level of succinate dehydrogenase activity increased and size decreased, also when compared to normal fibres of the same type. Thus PPARdelta can change myosin heavy chain, oxidative enzymes and size locally in muscle cells in the absence of general exercise. Previous studies on PPARdelta in muscle have been performed in transgenic animals where the transgene has been present during muscle development. Our data suggest that PPARdelta can mediate activity effects acutely in pre-existing adult fibres, and thus is an important link in excitation-transcription coupling.
机译:运动对骨骼肌的影响是由肌肉电活动和基因表达之间的耦合介导的。几个活动相关,如细胞内Ca(2+),缺氧和代谢产物如游离脂肪酸(FFA),可能会启动调节纤维类型特异性基因的信号通路。 FFA可以通过过氧化物酶体增殖物激活受体(PPAR)家族的脂质依赖性转录因子来检测。我们发现,慢/氧化比目鱼肌中主要的肌肉同工型PPARdelta的mRNA比快速/糖酵解趾长肌(EDL)肌肉高三倍。在比目鱼的组织学切片中,最具氧化性的纤维显示出最高水平的PPARdelta蛋白。当通过模仿快速/糖酵解IIb运动单位的模式对比目鱼肌进行电刺激时,PPARdelta的mRNA水平在24小时内降低到不到一半。在EDL中,缓慢的I型电刺激后观察到增加了三倍。当体细胞基因转移后,在正常活动的成年纤维中,组成型活性形式的PPARdelta过表达14天时,EDL中I / IIa杂种的数量增加了两倍多,IIa纤维从14%增加到25%,IIb纤维减少了从55%到45%。与相同类型的普通纤维相比,琥珀酸脱氢酶活性水平增加,尺寸减小。因此,PPARdelta可以在不进行一般运动的情况下局部改变肌细胞中的肌球蛋白重链,氧化酶和大小。对肌肉中PPARδ的先前研究已经在转基因动物中进行,其中转基因在肌肉发育过程中存在。我们的数据表明,PPARdelta可以在已有的成年纤维中急性地介导活性作用,因此是激发-转录偶联的重要环节。

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