Metti Samuele, Gambarotto Lisa, Chrisam Martina, Baraldo Martina, Braghetta Paola, Blaauw Bert, Bonaldo Paolo
Department of Molecular Medicine, University of Padova, Padua, Italy.
Department of Biomedical Sciences, University of Padova, Padua, Italy.
Front Cell Dev Biol. 2020 Sep 29;8:580933. doi: 10.3389/fcell.2020.580933. eCollection 2020.
The induction of autophagy, the catabolic pathway by which damaged or unnecessary cellular components are subjected to lysosome-mediated degradation and recycling, is impaired in Collagen VI (COL6) null mice and COL6-related myopathies. This autophagic impairment causes an accumulation of dysfunctional mitochondria, which in turn leads to myofiber degeneration. Our previous work showed that reactivation of autophagy in COL6-related myopathies is beneficial for muscle structure and function both in the animal model and in patients. Here we show that pterostilbene (Pt)-a non-toxic polyphenol, chemically similar to resveratrol but with a higher bioavailability and metabolic stability-strongly promotes autophagic flux in the skeletal muscle of both wild-type and COL6 null mice. Reactivation of autophagy in COL6-deficient muscles was also paralleled by several beneficial effects, including significantly decreased incidence of spontaneous apoptosis, recovery of ultrastructural defects and muscle remodeling. These findings point at Pt as an effective autophagy-inducing nutraceutical for skeletal muscle with great potential in counteracting the major pathogenic hallmarks of COL6-related myopathies, a valuable feature that may be also beneficial in other muscle pathologies characterized by defective regulation of the autophagic machinery.
自噬是一种分解代谢途径,受损或不必要的细胞成分通过该途径进行溶酶体介导的降解和再循环。在胶原蛋白VI(COL6)基因敲除小鼠和COL6相关的肌病中,自噬的诱导受到损害。这种自噬功能障碍导致功能失调的线粒体积累,进而导致肌纤维变性。我们之前的研究表明,在COL6相关的肌病中重新激活自噬对动物模型和患者的肌肉结构和功能均有益处。在此我们表明,紫檀芪(Pt)——一种无毒的多酚,化学结构与白藜芦醇相似,但具有更高的生物利用度和代谢稳定性——能强烈促进野生型和COL6基因敲除小鼠骨骼肌中的自噬通量。COL6缺陷型肌肉中自噬的重新激活还伴随着多种有益作用,包括显著降低自发凋亡的发生率、恢复超微结构缺陷以及肌肉重塑。这些发现表明,紫檀芪是一种有效的骨骼肌自噬诱导营养保健品,在对抗COL6相关肌病的主要致病特征方面具有巨大潜力,这一有价值的特性可能对其他以自噬机制调节缺陷为特征的肌肉疾病也有益处。