Hörster Henrik, Garthe Alexander, Walker Tara L, Ichwan Muhammad, Steiner Barbara, Khan Muhammad Amir, Lie Dieter Chichung, Nicola Zeina, Ramirez-Rodriguez Gerardo, Kempermann Gerd
CRTD - Center for Regenerative Therapies Dresden, Technische Universität Dresden, Dresden, Germany.
German Center for Neurodegenerative Diseases (DZNE) Dresden, Dresden, Germany.
Stem Cells. 2017 Mar;35(3):787-799. doi: 10.1002/stem.2536. Epub 2016 Nov 28.
We asked whether cell-cycle associated protein p27kip1 might be involved in the transition of precursor cells to postmitotic maturation in adult hippocampal neurogenesis. p27kip1 was expressed throughout the dentate gyrus with a strong nuclear expression in early postmitotic, calretinin-positive neurons and neuronally determined progenitor cells (type-3 and some type-2b), lower or absent expression in radial glia-like precursor cells (type-1) and type-2a cells and essentially no expression in granule cells. This suggested a transitory role in late proliferative and early postmitotic phases of neurogenesis. Inconsistent with a role limited to cell cycle arrest the acute stimuli, voluntary wheel running (RUN), environmental enrichment (ENR) and kainate-induced seizures increased p27kip1 expressing cells. Sequential short-term combination of RUN and ENR yielded more p27kip1 cells than either stimulus alone, indicating an additive effect. In vitro, p27kip1 was lowly expressed by proliferating precursor cells but increased upon differentiation. In p27kip1-/- mice neurogenesis was reduced in vivo, whereas the number of proliferating cells was increased. Accordingly, the microdissected dentate gyrus of p27kip1-/- mice generated more colonies in the neurosphere assay and an increased number of larger spheres with the differentiation potential unchanged. In p27kip1-/- monolayer cultures, proliferation was increased and cell cycle genes were upregulated. In the Morris water maze p27kip1-/- mice learned the task but were specifically impaired in the reversal phase explainable by the decrease in adult neurogenesis. We conclude that p27kip1 is involved in the decisive step around cell-cycle exit and plays an important role in activity-regulated and functionally relevant adult hippocampal neurogenesis. Stem Cells 2017;35:787-799.
我们探究了细胞周期相关蛋白p27kip1是否参与成年海马神经发生过程中前体细胞向后有丝分裂成熟阶段的转变。p27kip1在整个齿状回均有表达,在有丝分裂后早期、钙视网膜蛋白阳性神经元以及神经元定向祖细胞(3型和部分2b型)中呈强核表达,在放射状胶质样前体细胞(1型)和2a型细胞中表达较低或无表达,在颗粒细胞中基本无表达。这表明p27kip1在神经发生的晚期增殖和有丝分裂后早期阶段发挥短暂作用。与仅限于细胞周期停滞的作用不一致的是,急性刺激,即自愿轮转运动(RUN)、环境富集(ENR)和海藻酸诱导的癫痫发作增加了表达p27kip1的细胞。RUN和ENR的序贯短期联合产生的表达p27kip1的细胞比单独任何一种刺激都多,表明存在累加效应。在体外,增殖的前体细胞中p27kip1低表达,但在分化时增加。在p27kip1基因敲除小鼠中,体内神经发生减少,而增殖细胞数量增加。相应地,在神经球试验中,p27kip1基因敲除小鼠经显微切割的齿状回产生了更多的集落,并且具有分化潜能的更大球体数量增加。在p27kip1基因敲除小鼠的单层培养物中,增殖增加且细胞周期基因上调。在莫里斯水迷宫实验中,p27kip1基因敲除小鼠学会了任务,但在反转阶段出现特异性损伤,这可以通过成年神经发生的减少来解释。我们得出结论,p27kip1参与细胞周期退出前后的决定性步骤,并在活动调节的和功能相关的成年海马神经发生中发挥重要作用。《干细胞》2017年;35:787 - 799。