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c-Jun N-末端激酶激活在水螅再生中的芽基形成中的作用。

Role of c-Jun N-terminal kinase activation in blastema formation during planarian regeneration.

机构信息

Department of Biophysics, Graduate School of Science, Kyoto University, Kitashirakawa Oiwake-cho, Sakyo-ku, Kyoto 606-8502, Japan.

出版信息

Dev Growth Differ. 2011 Apr;53(3):389-400. doi: 10.1111/j.1440-169X.2011.01254.x. Epub 2011 Mar 30.

Abstract

The robust regenerative abilities of planarians absolutely depend on a unique population of pluripotent stem cells called neoblasts, which are the only mitotic somatic cells in adult planarians and are responsible for blastema formation after amputation. Little is known about the molecular mechanisms that drive blastema formation during planarian regeneration. Here we found that treatment with the c-Jun N-terminal kinase (JNK) inhibitor SP600125 blocked the entry of neoblasts into the M-phase of the cell cycle, while allowing neoblasts to successfully enter S-phase in the planarian Dugesia japonica. The rapid and efficient blockage of neoblast mitosis by treatment with the JNK inhibitor provided a method to assess whether temporally regulated cell cycle activation drives blastema formation during planarian regeneration. In the early phase of blastema formation, activated JNK was detected prominently in a mitotic region (the "postblastema") proximal to the blastema region. Furthermore, we demonstrated that undifferentiated mitotic neoblasts in the postblastema showed highly activated JNK at the single cell level. JNK inhibition by treatment with SP600125 during this period caused a severe defect of blastema formation, which accorded with a drastic decrease of mitotic neoblasts in regenerating animals. By contrast, these animals still retained many undifferentiated neoblasts near the amputation stump. These findings suggest that JNK signaling plays a crucial role in feeding into the blastema neoblasts for differentiation by regulating the G2/M transition in the cell cycle during planarian regeneration.

摘要

涡虫强大的再生能力绝对依赖于一种称为成体干细胞的独特多能干细胞群体,这些细胞是成年涡虫中唯一有丝分裂的体细胞,负责再生过程中创伤组织的形成。然而,目前对于驱动涡虫再生过程中创伤组织形成的分子机制知之甚少。在这里,我们发现使用 c-Jun N 端激酶(JNK)抑制剂 SP600125 处理可以阻止成体干细胞进入细胞周期的 M 期,同时允许成体干细胞在日本三角涡虫中成功进入 S 期。JNK 抑制剂的快速高效的成体干细胞有丝分裂阻断为评估细胞周期激活的时间调控是否驱动涡虫再生过程中的创伤组织形成提供了一种方法。在创伤组织形成的早期阶段,在靠近创伤组织区域的有丝分裂区域(“后创伤组织”)中检测到明显的活化 JNK。此外,我们证明在“后创伤组织”中未分化的有丝分裂成体干细胞在单细胞水平上表现出高度激活的 JNK。在这段时间内用 SP600125 抑制 JNK 会导致严重的创伤组织形成缺陷,这与再生动物中成体干细胞有丝分裂的急剧减少相符。相比之下,这些动物仍然在截肢部位附近保留了许多未分化的成体干细胞。这些发现表明,JNK 信号通路通过调节细胞周期的 G2/M 转换,在涡虫再生过程中为分化提供了进入创伤组织成体干细胞的关键作用。

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