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首页> 外文期刊>The Biochemical Journal >Raptor ablation in skeletal muscle decreases Cav1.1 expression and affects the function of the excitation-contraction coupling supramolecular complex
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Raptor ablation in skeletal muscle decreases Cav1.1 expression and affects the function of the excitation-contraction coupling supramolecular complex

机译:骨骼肌中的猛禽消融会降低Cav1.1表达并影响兴奋-收缩偶联超分子复合物的功能

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The protein mammalian target of rapamycin (mTOR) is a serine/threonine kinase regulating a number of biochemical pathways controlling cell growth. mTOR exists in two complexes termed mTORC1 and mTORC2. Regulatory associated protein of mTOR (raptor) is associated with mTORC1 and is essential for its function. Ablation of raptor in skeletal muscle results in several phenotypic changes including decreased life expectancy, increased glycogen deposits and alterations of the twitch kinetics of slow fibres. In the present paper, we show that in muscle-specific raptor knockout (RamKO), the bulk of glycogen phosphorylase (GP) is mainly associated in its cAMP-non-stimulated form with sarcoplasmic reticulum (SR) membranes. In addition, (3)[H]-ryanodine and (3)[H]-PN200-110 equilibrium binding show a ryanodine to dihydropyridine receptors (DHPRs) ratio of 0.79 and 1.35 for wild-type (WT) and raptor KO skeletal muscle membranes respectively. Peak amplitude and time to peak of the global calcium transients evoked by supramaximal field stimulation were not different between WT and raptor KO. However, the increase in the voltage sensor-uncoupled RyRs leads to an increase of both frequency and mass of elementary calcium release events (ECRE) induced by hyper-osmotic shock in flexor digitorum brevis (FDB) fibres from raptor KO. The present study shows that the protein composition and function of the molecular machinery involved in skeletal muscle excitation-contraction (E-C) coupling is affected by mTORC1 signalling.
机译:雷帕霉素(mTOR)的哺乳动物蛋白靶标是一种丝氨酸/苏氨酸激酶,可调节许多控制细胞生长的生化途径。 mTOR存在于两个复合物中,称为mTORC1和mTORC2。 mTOR(猛禽)的调节相关蛋白与mTORC1相关,并且对于其功能至关重要。骨骼肌中猛禽的消融会导致一些表型改变,包括预期寿命缩短,糖原沉积增加以及慢纤维的抽搐动力学改变。在本文中,我们表明,在肌肉特异性猛禽敲除(RamKO)中,大部分糖原磷酸化酶(GP)主要以其cAMP非刺激形式与肌浆网(SR)膜相关。此外,(3)[H] -ryanodine和(3)[H] -PN200-110平衡结合显示,对于野生型(WT)和猛禽KO骨骼肌,ryanodine与二氢吡啶受体(DHPRs)的比率为0.79和1.35膜。 WT和猛禽KO之间,由超最大场刺激引起的总体钙瞬变的峰值幅度和到达峰值的时间没有差异。但是,电压传感器未耦合的RyRs的增加会导致猛禽KO短指屈短肌(FDB)纤维中高渗冲击引起的基本钙释放事件(ECRE)的频率和质量的增加。本研究表明,mTORC1信号传导会影响参与骨骼肌兴奋-收缩(E-C)偶联的分子机器的蛋白质组成和功能。

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