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梨状皮质的扩张导致Gli3条件性突变体中皮质丘脑路径寻找缺陷。

Expansion of the piriform cortex contributes to corticothalamic pathfinding defects in Gli3 conditional mutants.

作者信息

Amaniti Eleni-Maria, Fu Chaoying, Lewis Sean, Saisana Marina, Magnani Dario, Mason John O, Theil Thomas

机构信息

Centre for Integrative Physiology, University of Edinburgh, Edinburgh EH8 9XD, UK.

出版信息

Cereb Cortex. 2015 Feb;25(2):460-71. doi: 10.1093/cercor/bht244. Epub 2013 Sep 7.

DOI:10.1093/cercor/bht244
PMID:24014668
Abstract

The corticothalamic and thalamocortical tracts play essential roles in the communication between the cortex and thalamus. During development, axons forming these tracts have to follow a complex path to reach their target areas. While much attention has been paid to the mechanisms regulating their passage through the ventral telencephalon, very little is known about how the developing cortex contributes to corticothalamic/thalamocortical tract formation. Gli3 encodes a zinc finger transcription factor widely expressed in telencephalic progenitors which has important roles in corticothalamic and thalamocortical pathfinding. Here, we conditionally inactivated Gli3 in dorsal telencephalic progenitors to determine its role in corticothalamic tract formation. In Emx1Cre;Gli3(fl/fl) mutants, only a few corticothalamic axons enter the striatum in a restricted dorsal domain. This restricted entry correlates with a medial expansion of the piriform cortex. Transplantation experiments showed that the expanded piriform cortex repels corticofugal axons. Moreover, expression of Sema5B, a chemorepellent for corticofugal axons produced by the piriform cortex, is similarly expanded. Finally, time course analysis revealed an expansion of the ventral pallial progenitor domain which gives rise to the piriform cortex. Hence, control of lateral cortical development by Gli3 at the progenitor level is crucial for corticothalamic pathfinding.

摘要

皮质丘脑束和丘脑皮质束在皮质与丘脑之间的通讯中发挥着重要作用。在发育过程中,形成这些束的轴突必须沿着复杂的路径到达其目标区域。虽然人们对调节它们通过腹侧端脑的机制给予了很多关注,但对于发育中的皮质如何促进皮质丘脑/丘脑皮质束的形成却知之甚少。Gli3编码一种在端脑祖细胞中广泛表达的锌指转录因子,它在皮质丘脑和丘脑皮质的路径寻找中起重要作用。在这里,我们有条件地使背侧端脑祖细胞中的Gli3失活,以确定其在皮质丘脑束形成中的作用。在Emx1Cre;Gli3(fl/fl)突变体中,只有少数皮质丘脑轴突在一个受限的背侧区域进入纹状体。这种受限的进入与梨状皮质的内侧扩张相关。移植实验表明,扩张的梨状皮质排斥皮质传出轴突。此外,梨状皮质产生的皮质传出轴突化学排斥物Sema5B的表达也同样增加。最后,时间进程分析揭示了产生梨状皮质的腹侧 pallial 祖细胞区域的扩张。因此,Gli3在祖细胞水平对皮质外侧发育的控制对于皮质丘脑路径寻找至关重要。

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