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Reactive oxygen species generated from skeletal muscles are required for gecko tail regeneration

机译:壁虎尾再生需要从骨骼肌产生的反应性氧物种

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Reactive oxygen species (ROS) participate in various physiological and pathological functions following generation from different types of cells. Here we explore ROS functions on spontaneous tail regeneration using gecko model. ROS were mainly produced in the skeletal muscle after tail amputation, showing a temporal increase as the regeneration proceeded. Inhibition of the ROS production influenced the formation of autophagy in the skeletal muscles, and as a consequence, the length of the regenerating tail. Transcriptome analysis has shown that NADPH oxidase (NOX2) and the subunits (p40(phox) and p47(phox)) are involved in the ROS production. ROS promoted the formation of autophagy through regulation of both ULK and MAPK activities. Our results suggest that ROS produced by skeletal muscles are required for the successful gecko tail regeneration.
机译:反应性氧物种(ROS)在不同类型的细胞中产生各种生理和病理功能。在这里,我们探索使用Gecko Model进行自发尾部再生的ROS功能。 ROS主要在尾巴截肢后在骨骼肌中产生,显示随着再生的时间增加。抑制ROS生产影响了骨骼肌中自噬的形成,因此,再生尾的长度。转录组分析表明,NADPH氧化酶(NOx2)和亚基(P40(PHOX)和P47(PHOX))参与ROS生产。 ROS通过监管ULK和MAPK活动促进了自噬的形成。我们的研究结果表明,成功的壁虎尾再生需要骨骼肌生产的ROS。

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