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费迪南多·罗西纪念讲座:小脑的区域和条纹模式形成。

The Ferdinando Rossi Memorial Lecture: Zones and Stripes-Pattern Formation in the Cerebellum.

机构信息

Department of Cell Biology & Anatomy and Hotchkiss Brain Institute, Cumming School of Medicine, University of Calgary, Calgary, AB, T2N 4NI, Canada.

出版信息

Cerebellum. 2018 Feb;17(1):12-16. doi: 10.1007/s12311-017-0887-0.

Abstract

The cerebellum has a complex architecture-highly reproducible and conserved through evolution. Cerebellar architecture is organized around the Purkinje cell. Purkinje cells in the mouse cerebellum come in many different subtypes, identifiable by expression markers, sensitivity to mutation, etc. These are organized first into five "transverse zones," each of which is further subdivided into dozens of reproducible "stripes." This arrangement serves as the scaffolding to organize afferent topography and restrict the distribution of excitatory and inhibitory interneurons. This brief review will survey some of the mechanisms that lead to the formation of this elaborate pattern during cerebellar development. Pattern formation in the cerebellar cortex is a multistage process that begins early in development with the generation of the various Purkinje cell subtypes, and matures through the dispersal of Purkinje cell clusters into stripes. Two developmental processes will be discussed in particular: the mechanisms that lead to Purkinje cell subtype specification (i.e., how different kinds of Purkinje cells are made) and the role played by Purkinje cell migration in pattern formation (i.e., how these Purkinje cell subtypes end up in a reproducible array of stripes).

摘要

小脑具有复杂的结构——在进化过程中高度可重复且保持一致。小脑的结构围绕着浦肯野细胞组织。在小鼠小脑中有许多不同的浦肯野细胞亚型,可通过表达标记物、对突变的敏感性等来识别。这些亚型首先组织成五个“横向区”,每个区又进一步细分为几十个可重复的“条纹”。这种排列方式作为支架,组织传入神经的拓扑结构,并限制兴奋性和抑制性中间神经元的分布。这篇简短的综述将探讨在小脑发育过程中导致这种精细模式形成的一些机制。小脑皮层的模式形成是一个多阶段的过程,始于早期发育中各种浦肯野细胞亚型的产生,并通过浦肯野细胞簇的分散成熟为条纹。将特别讨论两个发育过程:导致浦肯野细胞亚型特化的机制(即如何产生不同类型的浦肯野细胞)和浦肯野细胞迁移在模式形成中的作用(即这些浦肯野细胞亚型如何最终以可重复的条纹排列方式出现)。

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