Kragl Martin, Knapp Dunja, Nacu Eugen, Khattak Shahryar, Maden Malcolm, Epperlein Hans Henning, Tanaka Elly M
Max Planck Institute of Molecular Cell Biology and Genetics, Pfotenhauerstrasse 108.
Nature. 2009 Jul 2;460(7251):60-5. doi: 10.1038/nature08152.
During limb regeneration adult tissue is converted into a zone of undifferentiated progenitors called the blastema that reforms the diverse tissues of the limb. Previous experiments have led to wide acceptance that limb tissues dedifferentiate to form pluripotent cells. Here we have reexamined this question using an integrated GFP transgene to track the major limb tissues during limb regeneration in the salamander Ambystoma mexicanum (the axolotl). Surprisingly, we find that each tissue produces progenitor cells with restricted potential. Therefore, the blastema is a heterogeneous collection of restricted progenitor cells. On the basis of these findings, we further demonstrate that positional identity is a cell-type-specific property of blastema cells, in which cartilage-derived blastema cells harbour positional identity but Schwann-derived cells do not. Our results show that the complex phenomenon of limb regeneration can be achieved without complete dedifferentiation to a pluripotent state, a conclusion with important implications for regenerative medicine.
在肢体再生过程中,成体组织会转变为一个称为芽基的未分化祖细胞区域,该区域会重新形成肢体的各种组织。先前的实验已使人们广泛接受肢体组织去分化形成多能细胞这一观点。在此,我们使用一个整合的绿色荧光蛋白(GFP)转基因来追踪墨西哥钝口螈(美西螈)肢体再生过程中的主要肢体组织,重新审视了这个问题。令人惊讶的是,我们发现每个组织产生的祖细胞潜能有限。因此,芽基是具有有限潜能的祖细胞的异质集合。基于这些发现,我们进一步证明位置身份是芽基细胞的一种细胞类型特异性属性,其中软骨来源的芽基细胞具有位置身份,而雪旺氏细胞来源的细胞则不具有。我们的结果表明,肢体再生这一复杂现象无需完全去分化为多能状态即可实现,这一结论对再生医学具有重要意义。