Tapia Victor S, Herrera-Rojas Mauricio, Larrain Juan
Center for Aging and Regeneration Millennium Nucleus in Regenerative Biology Facultad de Ciencias Biologicas Pontificia Universidad Catolica de Chile Santiago Chile.
Regeneration (Oxf). 2017 Mar 14;4(1):21-35. doi: 10.1002/reg2.74. eCollection 2017 Feb.
tadpoles can regenerate the spinal cord after injury but this capability is lost during metamorphosis. Comparative studies between pre-metamorphic and metamorphic stages can aid towards understanding the molecular mechanisms of spinal cord regeneration. Analysis of a previous transcriptome-wide study suggests that, in response to injury, the JAK-STAT pathway is differentially activated in regenerative and non-regenerative stages. We characterized the activation of the JAK-STAT pathway and found that regenerative tadpoles have an early and transient activation. In contrast, the non-regenerative stages have a delayed and sustained activation of the pathway. We found that STAT3 is activated in response to injury mainly in Sox2/3 ependymal cells, motoneurons and sensory neurons. Finally, to study the role of temporal activation we generated a transgenic line to express a constitutively active version of STAT3. The sustained activation of the JAK-STAT pathway in regenerative tadpoles reduced the expression of pro-neurogenic genes normally upregulated in response to spinal cord injury, suggesting that activation of the JAK-STAT pathway modulates the fate of neural progenitors.
蝌蚪在受伤后能够再生脊髓,但这种能力在变态过程中会丧失。对变态前和变态阶段进行比较研究,有助于理解脊髓再生的分子机制。对之前一项全转录组研究的分析表明,在受伤后,JAK-STAT通路在再生阶段和非再生阶段的激活情况有所不同。我们对JAK-STAT通路的激活进行了表征,发现再生蝌蚪具有早期且短暂的激活。相比之下,非再生阶段该通路的激活则延迟且持续。我们发现,STAT3主要在Sox2/3室管膜细胞、运动神经元和感觉神经元中因受伤而被激活。最后,为了研究时间激活的作用,我们构建了一个转基因品系来表达组成型激活的STAT3。再生蝌蚪中JAK-STAT通路的持续激活降低了通常在脊髓损伤后上调的神经源性基因的表达,这表明JAK-STAT通路的激活调节了神经祖细胞的命运。