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More alive than dead: non-apoptotic roles for caspases in neuronal development, plasticity and disease

机译:比死亡更活跃:神经元发育中的胱天蛋白酶的非凋亡作用,可塑性和疾病

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摘要

Nervous systems are arguably the most fascinating and complex structures in the known universe. How they are built, changed by experience and then degenerate are some of the biggest questions in biology. Regressive phenomena, such as neuron pruning and programmed cell death, have a key role in the building and maintenance of the nervous systems. Both of these cellular mechanisms deploy the caspase family of protease enzymes. In this review, we highlight the non-apoptotic function of caspases during nervous system development, plasticity and disease, particularly focussing on their role in structural remodelling. We have classified pruning as either macropruning, where complete branches are removed, or micropruning, where individual synapses or dendritic spines are eliminated. Finally we discuss open questions and possible future directions within the field.
机译:神经系统可以说是已知宇宙中最令人迷人和复杂的结构。 如何建造,因经验而改变,然后退化是生物学中最大的问题。 回归现象,如神经元修剪和编程的细胞死亡,在神经系统的建筑和维护方面具有关键作用。 这两种细胞机制都展署了蛋白酶酶的蛋白酶酶系列。 在本综述中,我们突出了神经系统开发,可塑性和疾病期间胱糖的非凋亡功能,特别是对它们在结构重塑中的作用。 我们已经将修剪作为宏观调制,其中除去完整的分支,或者被消除的单个突触或树突状刺的微量化。 最后,我们讨论了领域内的未来问题和可能的未来方向。

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