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AAV1.NT-3 基因治疗通过激活 mTOR 通路和代谢重塑增加 CMT 小鼠模型的肌纤维直径。

AAV1.NT-3 gene therapy increases muscle fiber diameter through activation of mTOR pathway and metabolic remodeling in a CMT mouse model.

机构信息

Center for Gene Therapy, The Research Institute at Nationwide Children's Hospital, Columbus, OH, USA.

King Chulalongkorn Memorial Hospital and Department of Medicine, Faculty of Medicine, Chulalongkorn University, Bangkok, Thailand.

出版信息

Gene Ther. 2018 Apr;25(2):129-138. doi: 10.1038/s41434-018-0009-8. Epub 2018 Mar 9.

Abstract

Neurotrophin 3 (NT-3) has well-recognized effects on peripheral nerve and Schwann cells, promoting axonal regeneration and associated myelination. In this study, we assessed the effects of AAV.NT-3 gene therapy on the oxidative state of the neurogenic muscle from the TremblerJ (Tr ) mice at 16 weeks post-gene injection and found that the muscle fiber size increase was associated with a change in the oxidative state of muscle fibers towards normalization of the fiber type ratio seen in the wild type. NT-3-induced fiber size increase was most prominent for the fast twitch glycolytic fiber population. These changes in the Tr muscle were accompanied by increased phosphorylation levels of 4E-BP1 and S6 proteins as evidence of mTORC1 activation. In parallel, the expression levels of the mitochondrial biogenesis regulator PGC1α, and the markers of glycolysis (HK1 and PK1) increased in the Tr muscle. In vitro studies showed that recombinant NT-3 can directly induce Akt/mTOR pathway activation in the TrkC expressing myotubes but not in myoblasts. In addition, myogenin expression levels were increased in myotubes while p75 expression was downregulated compared to myoblasts, indicating that NT-3 induced myoblast differentiation is associated with mTORC1 activation. These studies for the first time have shown that NT-3 increases muscle fiber diameter in the neurogenic muscle through direct activation of mTOR pathway and that the fiber size increase is more prominent for fast twitch glycolytic fibers.

摘要

神经营养因子 3(NT-3)对周围神经和雪旺细胞具有公认的作用,促进轴突再生和相关髓鞘形成。在这项研究中,我们评估了 AAV.NT-3 基因治疗对 TremblerJ(Tr)小鼠神经源性肌肉氧化状态的影响,结果发现,肌肉纤维大小的增加与肌肉纤维氧化状态的变化有关,纤维类型比例向野生型正常化。NT-3 诱导的纤维大小增加在快收缩糖酵解纤维群中最为显著。Tr 肌肉的这些变化伴随着 4E-BP1 和 S6 蛋白磷酸化水平的增加,这表明 mTORC1 被激活。同时,Tr 肌肉中的线粒体生物发生调节剂 PGC1α 的表达水平以及糖酵解标志物(HK1 和 PK1)增加。体外研究表明,重组 NT-3 可以直接在表达 TrkC 的肌管中诱导 Akt/mTOR 通路激活,但不能在成肌细胞中诱导。此外,与成肌细胞相比,肌管中的肌生成素表达水平增加,而 p75 的表达水平下调,表明 NT-3 诱导的成肌细胞分化与 mTORC1 激活有关。这些研究首次表明,NT-3 通过直接激活 mTOR 通路增加神经源性肌肉中的纤维直径,并且快收缩糖酵解纤维的纤维大小增加更为显著。

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