Intermediate cells of in vitro cellular reprogramming and in vivo tissue regeneration require desmoplakin

重编程 细胞生物学 再生(生物学) 生物 诱导多能干细胞 斑马鱼 桥粒蛋白 干细胞 祖细胞 细胞 遗传学 胚胎干细胞 基因
作者
Jeongmin Ha,Bum Suk Kim,Byungkuk Min,Juhyeon Nam,Jae-Geun Lee,Minhyung Lee,Byoung-Ha Yoon,Yoon Ha Choi,Ilkyun Im,Jung Sun Park,Hyosun Choi,Areum Baek,Sang Mi Cho,Mi-Ok Lee,Ki-Hoan Nam,Ji Young Mun,Miyoung Kim,Seon-Young Kim,Mi-Young Son,Yong-Kook Kang,Jeong-Soo Lee,Jong Kyoung Kim,Jang Hwan Kim
标识
DOI:10.1126/sciadv.abk1239
摘要

Amphibians and fish show considerable regeneration potential via dedifferentiation of somatic cells into blastemal cells. In terms of dedifferentiation, in vitro cellular reprogramming has been proposed to share common processes with in vivo tissue regeneration, although the details are elusive. Here, we identified the cytoskeletal linker protein desmoplakin (Dsp) as a common factor mediating both reprogramming and regeneration. Our analysis revealed that Dsp expression is elevated in distinct intermediate cells during in vitro reprogramming. Knockdown of Dsp impedes in vitro reprogramming into induced pluripotent stem cells and induced neural stem/progenitor cells as well as in vivo regeneration of zebrafish fins. Notably, reduced Dsp expression impairs formation of the intermediate cells during cellular reprogramming and tissue regeneration. These findings suggest that there is a Dsp-mediated evolutionary link between cellular reprogramming in mammals and tissue regeneration in lower vertebrates and that the intermediate cells may provide alternative approaches for mammalian regenerative therapy.

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