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非经典 Hedgehog 信号通路调控幼虫脊髓和肌肉再生。

Non-canonical Hedgehog signaling regulates spinal cord and muscle regeneration in larvae.

机构信息

Department of Physiology & Membrane Biology Shriners Hospitals for Children Northern California, University of California, Sacramento, School of Medicine, Sacramento, United States.

出版信息

Elife. 2021 May 6;10:e61804. doi: 10.7554/eLife.61804.

Abstract

Inducing regeneration in injured spinal cord represents one of modern medicine's greatest challenges. Research from a variety of model organisms indicates that Hedgehog (Hh) signaling may be a useful target to drive regeneration. However, the mechanisms of Hh signaling-mediated tissue regeneration remain unclear. Here, we examined Hh signaling during post-amputation tail regeneration in larvae. We found that while Smoothened (Smo) activity is essential for proper spinal cord and skeletal muscle regeneration, transcriptional activity of the canonical Hh effector Gli is repressed immediately following amputation, and inhibition of Gli1/2 expression or transcriptional activity has minimal effects on regeneration. In contrast, we demonstrate that protein kinase A is necessary for regeneration of both muscle and spinal cord, in concert with and independent of Smo, respectively, and that its downstream effector CREB is activated in spinal cord following amputation in a Smo-dependent manner. Our findings indicate that non-canonical mechanisms of Hh signaling are necessary for spinal cord and muscle regeneration.

摘要

在受伤的脊髓中诱导再生是现代医学面临的最大挑战之一。来自多种模式生物的研究表明,Hedgehog(Hh)信号可能是促进再生的有用靶点。然而,Hh 信号介导的组织再生的机制尚不清楚。在这里,我们在 幼虫的截肢后尾巴再生过程中研究了 Hh 信号。我们发现,虽然 Smoothened(Smo)活性对于适当的脊髓和骨骼肌再生是必需的,但经典 Hh 效应物 Gli 的转录活性在截肢后立即受到抑制,并且抑制 Gli1/2 的表达或转录活性对再生的影响很小。相比之下,我们证明蛋白激酶 A 分别与 Smo 协同和独立于 Smo 对于肌肉和脊髓的再生都是必需的,并且其下游效应物 CREB 以 Smo 依赖性的方式在脊髓中被激活。我们的研究结果表明,Hh 信号的非经典机制对于脊髓和肌肉再生是必要的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c582/8137141/3034c6ab990f/elife-61804-fig1.jpg

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