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DjPum是果蝇Pumilio的同源物,对涡虫干细胞的维持至关重要。

DjPum, a homologue of Drosophila Pumilio, is essential to planarian stem cell maintenance.

作者信息

Salvetti Alessandra, Rossi Leonardo, Lena Annalisa, Batistoni Renata, Deri Paolo, Rainaldi Giuseppe, Locci Maria Teresa, Evangelista Monica, Gremigni Vittorio

机构信息

Dipartimento di Morfologia Umana e Biologia Applicata, Sezione di Biologia e Genetica, Università di Pisa, Pisa, Italy.

出版信息

Development. 2005 Apr;132(8):1863-74. doi: 10.1242/dev.01785. Epub 2005 Mar 16.

Abstract

As stem cells are rare and difficult to study in vivo in adults, the use of classical models of regeneration to address fundamental aspects of the stem cell biology is emerging. Planarian regeneration, which is based upon totipotent stem cells present in the adult--the so-called neoblasts--provides a unique opportunity to study in vivo the molecular program that defines a stem cell. The choice of a stem cell to self-renew or differentiate involves regulatory molecules that also operate as translational repressors, such as members of PUF proteins. In this study, we identified a homologue of the Drosophila PUF gene Pumilio (DjPum) in the planarian Dugesia japonica, with an expression pattern preferentially restricted to neoblasts. Through RNA interference (RNAi), we demonstrate that gene silencing of DjPum dramatically reduces the number of neoblasts, thus supporting the intriguing hypothesis that stem cell maintenance may be an ancestral function of PUF proteins.

摘要

由于干细胞在成体中数量稀少且难以在体内进行研究,因此利用经典的再生模型来研究干细胞生物学的基本方面正逐渐兴起。涡虫再生基于成体中存在的全能干细胞——即所谓的新细胞,为在体内研究定义干细胞的分子程序提供了独特的机会。干细胞选择自我更新或分化涉及一些也作为翻译抑制因子发挥作用的调节分子,比如PUF蛋白家族成员。在本研究中,我们在日本三角涡虫中鉴定出果蝇PUF基因Pumilio的一个同源物(DjPum),其表达模式优先局限于新细胞。通过RNA干扰(RNAi),我们证明DjPum的基因沉默显著减少了新细胞的数量,从而支持了一个有趣的假说,即干细胞维持可能是PUF蛋白的一种原始功能。

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