首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Krüppel-like Factor 7 engineered for transcriptional activation promotes axon regeneration in the adult corticospinal tract
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Krüppel-like Factor 7 engineered for transcriptional activation promotes axon regeneration in the adult corticospinal tract

机译:Krüppel样因子7被设计用于转录激活可促进成人皮质脊髓束的轴突再生。

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摘要

Axon regeneration in the central nervous system normally fails, in part because of a developmental decline in the intrinsic ability of CNS projection neurons to extend axons. Members of the KLF family of transcription factors regulate regenerative potential in developing CNS neurons. Expression of one family member, KLF7, is down-regulated developmentally, and overexpression of KLF7 in cortical neurons in vitro promotes axonal growth. To circumvent difficulties in achieving high neuronal expression of exogenous KLF7, we created a chimera with the VP16 transactivation domain, which displayed enhanced neuronal expression compared with the native protein while maintaining transcriptional activation and growth promotion in vitro. Overexpression of VP16-KLF7 overcame the developmental loss of regenerative ability in cortical slice cultures. Adult corticospinal tract (CST) neurons failed to up-regulate KLF7 in response to axon injury, and overexpression of VP16-KLF7 in vivo promoted both sprouting and regenerative axon growth in the CST of adult mice. These findings identify a unique means of promoting CST axon regeneration in vivo by reengineering a developmentally down-regulated, growth-promoting transcription factor.
机译:中枢神经系统中的轴突再生通常会失败,部分原因是中枢神经系统投射神经元延伸轴突的内在能力的发育下降。 KLF转录因子家族的成员调节发育中枢神经系统神经元的再生潜力。一个家族成员KLF7的表达在发育中被下调,并且在体外皮层神经元中KLF7的过表达促进轴突生长。为了规避在外源性KLF7的高神经元表达中遇到的困难,我们创建了一个具有VP16反式激活结构域的嵌合体,与天然蛋白相比,它显示出增强的神经元表达,同时在体外保持转录激活和生长促进。 VP16-KLF7的过表达克服了皮质切片培养物中再生能力的发育损失。成年皮质脊髓束(CST)神经元未能响应轴突损伤而上调KLF7,体内VP16-KLF7的过表达促进成年小鼠CST的发芽和再生轴突生长。这些发现确定了通过重新设计发育上调的生长促进转录因子来促进体内CST轴突再生的独特方法。

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