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Hedgehog 和 Wnt 信号协调在成肌祖细胞中,并调节肢体再生。

Hedgehog and Wnt coordinate signaling in myogenic progenitors and regulate limb regeneration.

机构信息

Lillehei Heart Institute, University of Minnesota, 420 Delaware Street, SE. MMC508, Minneapolis, MN 55455, USA.

出版信息

Dev Biol. 2012 Nov 1;371(1):23-34. doi: 10.1016/j.ydbio.2012.07.033. Epub 2012 Aug 10.

Abstract

Amphibians have a remarkable capacity for limb regeneration. Following a severe injury, there is complete regeneration with restoration of the patterning and cellular architecture of the amputated limb. While studies have focused on the structural anatomical changes during amphibian limb regeneration, the signaling mechanisms that govern cellular dedifferentiation and blastemal progenitors are unknown. Here, we demonstrate the temporal and spatial requirement for hedgehog (Hh) signaling and its hierarchical correlation with respect to Wnt signaling during newt limb regeneration. While the dedifferentiation process of mature lineages does not depend on Hh signaling, the proliferation and the migration of the dedifferentiated cells are dependent on Hh signaling. Temporally controlled chemical inactivation of the Hh pathway indicates that Hh-mediated antero-posterior (AP) specification occurs early during limb regeneration and that Hh is subsequently required for expansion of the blastemal progenitors. Inhibition of Hh signaling results in G0/G1 arrest with a concomitant reduction in S-phase and G2/M population in myogenic progenitors. Furthermore, Hh inhibition leads to reduced Pax7-positive cells and fewer regenerating fibers relative to control tissue. We demonstrate that activation of Wnt signaling rescues the inhibition of Hh pathway mainly by enhancing proliferative signals, possibly mediated through TCF4 activity. Collectively, our results demonstrate coordinated signaling of Hh and Wnt activities in regulating blastemal progenitors and their hierarchical positioning during limb regeneration.

摘要

两栖动物具有非凡的肢体再生能力。在严重受伤后,肢体完全再生,具有被截肢肢体的模式和细胞结构的恢复。虽然研究集中在两栖动物肢体再生过程中的结构解剖变化,但控制细胞去分化和芽基祖细胞的信号机制尚不清楚。在这里,我们展示了 hedgehog(Hh)信号在蝾螈肢体再生过程中的时空需求及其与 Wnt 信号的层次相关性。虽然成熟谱系的去分化过程不依赖于 Hh 信号,但去分化细胞的增殖和迁移依赖于 Hh 信号。Hh 途径的时间控制化学失活表明,Hh 介导的前后(AP)特化发生在肢体再生的早期,并且 Hh 随后对于芽基祖细胞的扩展是必需的。Hh 信号的抑制导致 G0/G1 期停滞,伴随着成肌祖细胞中 S 期和 G2/M 期的减少。此外,与对照组织相比,Hh 抑制导致 Pax7 阳性细胞减少和再生纤维减少。我们证明 Wnt 信号的激活可以通过增强增殖信号来挽救 Hh 途径的抑制,这可能是通过 TCF4 活性介导的。总的来说,我们的结果表明 Hh 和 Wnt 活性的协调信号在调节芽基祖细胞及其在肢体再生过程中的层次定位方面发挥着重要作用。

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