生物
重编程
肢芽
中胚层
肢体发育
祖细胞
细胞生物学
间充质干细胞
细胞分化
祖细胞
解剖
干细胞
胚胎干细胞
遗传学
基因
胚胎
细胞
作者
Yuji Atsuta,ChangHee Lee,Alan R. Rodrigues,Charlotte Colle,Reiko R. Tomizawa,Ernesto Lujan,Patrick Tschopp,Laura Galán,Meng Zhu,Joshua M. Gorham,Jean‐Pierre Vannier,Christine E. Seidman,Jonathan G. Seidman,María A. Ros,Olivier Pourquié,Clifford J. Tabin
标识
DOI:10.1016/j.devcel.2023.12.010
摘要
Summary
The early limb bud consists of mesenchymal limb progenitors derived from the lateral plate mesoderm (LPM). The LPM also gives rise to the mesodermal components of the flank and neck. However, the cells at these other levels cannot produce the variety of cell types found in the limb. Taking advantage of a direct reprogramming approach, we find a set of factors (Prdm16, Zbtb16, and Lin28a) normally expressed in the early limb bud and capable of imparting limb progenitor-like properties to mouse non-limb fibroblasts. The reprogrammed cells show similar gene expression profiles and can differentiate into similar cell types as endogenous limb progenitors. The further addition of Lin41 potentiates the proliferation of the reprogrammed cells. These results suggest that these same four factors may play pivotal roles in the specification of endogenous limb progenitors.
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