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调节树突野的建立、维持和重塑的机制。

Mechanisms that regulate establishment, maintenance, and remodeling of dendritic fields.

作者信息

Parrish Jay Z, Emoto Kazuo, Kim Michael D, Jan Yuh Nung

机构信息

Howard Hughes Medical Institute, Departments of Physiology, Biochemistry and Biophysics, University of California, San Francisco, San Francisco, California 94143, USA.

出版信息

Annu Rev Neurosci. 2007;30:399-423. doi: 10.1146/annurev.neuro.29.051605.112907.

Abstract

Although dendrite arborization patterns are hallmarks of neuronal type and critical determinants of neuronal function, how dendritic arbors take shape is still largely unknown. Transcription factors play important roles in specifying neuronal types and have a profound influence on dendritic arbor size and complexity. The space that a dendritic arbor occupies is determined largely by a combination of growth-promoting signals that regulate arbor size, chemotropic cues that steer dendrites into the appropriate space, and neurite-neurite contacts that ensure proper representation of the dendritic field and appropriate synaptic contacts. Dendritic arbors are largely maintained over the neuron's lifetime, but in some cases, dendritic arbors are refined, in large part as a result of neuronal activity. In this review, we summarize our current understanding of the cellular and molecular mechanisms that regulate dendritic field formation and influence the shaping of dendritic arbors.

摘要

尽管树突分支模式是神经元类型的标志以及神经元功能的关键决定因素,但树突分支如何形成在很大程度上仍不清楚。转录因子在确定神经元类型中发挥重要作用,并对树突分支的大小和复杂性有深远影响。树突分支所占据的空间在很大程度上由多种因素共同决定,这些因素包括调节分支大小的促生长信号、引导树突进入适当空间的化学趋向性线索以及确保树突场正确呈现和适当突触接触的神经突 - 神经突接触。树突分支在神经元的整个生命周期中大多保持稳定,但在某些情况下,树突分支会得到优化,这在很大程度上是神经元活动的结果。在这篇综述中,我们总结了目前对调节树突场形成并影响树突分支塑造的细胞和分子机制的理解。

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