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成纤维细胞生长因子 8 和 SHH 替代前后组织相互作用诱导肢体再生。

FGF8 and SHH substitute for anterior-posterior tissue interactions to induce limb regeneration.

机构信息

DFG Research Center for Regenerative Therapies, Technische Universität Dresden, 01307 Dresden, Germany.

Max Planck Institute of Molecular Cell Biology and Genetics, 01307 Dresden, Germany.

出版信息

Nature. 2016 May 19;533(7603):407-10. doi: 10.1038/nature17972.

Abstract

In salamanders, grafting of a left limb blastema onto a right limb stump yields regeneration of three limbs, the normal limb and two 'supernumerary' limbs. This experiment and other research have shown that the juxtaposition of anterior and posterior limb tissue plus innervation are necessary and sufficient to induce complete limb regeneration in salamanders. However, the cellular and molecular basis of the requirement for anterior-posterior tissue interactions were unknown. Here we have clarified the molecular basis of the requirement for both anterior and posterior tissue during limb regeneration and supernumerary limb formation in axolotls (Ambystoma mexicanum). We show that the two tissues provide complementary cross-inductive signals that are required for limb outgrowth. A blastema composed solely of anterior tissue normally regresses rather than forming a limb, but activation of hedgehog (HH) signalling was sufficient to drive regeneration of an anterior blastema to completion owing to its ability to maintain fibroblast growth factor (FGF) expression, the key signalling activity responsible for blastema outgrowth. In blastemas composed solely of posterior tissue, HH signalling was not sufficient to drive regeneration; however, ectopic expression of FGF8 together with endogenous HH signalling was sufficient. In axolotls, FGF8 is expressed only in the anterior mesenchyme and maintenance of its expression depends on sonic hedgehog (SHH) signalling from posterior tissue. Together, our findings identify key anteriorly and posteriorly localized signals that promote limb regeneration and show that these single factors are sufficient to drive non-regenerating blastemas to complete regeneration with full elaboration of skeletal elements.

摘要

在蝾螈中,将左侧肢体芽基移植到右侧肢体残端上,会产生三条肢体的再生,即正常肢体和两条“额外”肢体。这项实验和其他研究表明,前肢和后肢组织的并列以及神经支配是诱导蝾螈完全肢体再生所必需且充分的。然而,前-后组织相互作用的细胞和分子基础尚不清楚。在这里,我们阐明了在蝾螈肢体再生和额外肢体形成过程中,前-后组织都需要的细胞和分子基础。我们表明,这两种组织提供了互补的交叉诱导信号,是肢体生长所必需的。仅由前组织组成的芽基通常会退化而不是形成肢体,但 Hedgehog (HH) 信号的激活足以驱动前芽基的完全再生,因为它能够维持成纤维细胞生长因子 (FGF) 的表达,FGF 是负责芽基生长的关键信号活性。在仅由后组织组成的芽基中,HH 信号不足以驱动再生;然而,FGF8 的异位表达与内源性 HH 信号一起足以驱动其再生。在蝾螈中,FGF8 仅在前间充质中表达,其表达的维持依赖于来自后组织的 sonic Hedgehog (SHH) 信号。总之,我们的研究结果确定了促进肢体再生的关键前-后局部信号,并表明这些单一因素足以驱动非再生芽基完成再生,具有完整的骨骼元素发育。

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