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Fezl基因缺陷小鼠早期发育过程中丘脑与大脑皮质之间相互投射的缺陷

Defects in reciprocal projections between the thalamus and cerebral cortex in the early development of Fezl-deficient mice.

作者信息

Komuta Yukari, Hibi Masahiko, Arai Takao, Nakamura Shun, Kawano Hitoshi

机构信息

Department of Applied Biological Science, Faculty of Science and Technology, Tokyo University of Science, Noda 278-8510, Japan.

出版信息

J Comp Neurol. 2007 Jul 20;503(3):454-65. doi: 10.1002/cne.21401.

Abstract

Fez-like (Fezl), the forebrain embryonic zinc finger-like protein, is a transcriptional repressor selectively expressed in the deep layers of the developing cortex. We examined the thalamocortical and corticofugal pathways in Fezl-deficient fetal mice by using immunohistochemistry and by axonal labeling with the lipophilic dyes DiI and DiA, with special attention to the spatiotemporal relation between thalamocortical and corticofugal axons. In normal mice, thalamic and cortical axons meet in the internal capsule between embryonic day (E) 13.5 and E14.5 and fasciculate with each other as they extend to their targets, the cortex and thalamus, respectively. In Fezl-deficient mice, most of the thalamic and cortical axons stop in the internal capsule and at the pallial-subpallial boundary at E14.5, respectively. This abnormality is transient, and the thalamic and cortical axons reach their targets at E15.5, although the number of thalamic axons is remarkably reduced in the cortical anlage. Double labeling with DiI and DiA demonstrated close apposition of the thalamic and cortical axons in the subpallium and pallium as well as in the external capsule of this mutant after E15.5. Because the expression of genes that define the pallial-subpallial boundary and guidance molecules of thalamocortical axons did not show remarkable changes in Fezl-deficient mice, abnormal formation of thalamocortical pathway in this mutant may be caused by the defect of axons of cortical efferent neurons that express Fezl.

摘要

前脑胚胎锌指样蛋白Fez样蛋白(Fezl)是一种转录抑制因子,在发育中的皮质深层选择性表达。我们通过免疫组织化学以及用亲脂性染料DiI和DiA进行轴突标记,研究了Fezl缺陷型胎鼠的丘脑皮质和皮质传出通路,特别关注丘脑皮质和皮质传出轴突之间的时空关系。在正常小鼠中,丘脑和皮质轴突在胚胎第(E)13.5天至E14.5天之间在内囊中相遇,并在它们分别延伸至其靶标(皮质和丘脑)时相互成束。在Fezl缺陷型小鼠中,大多数丘脑和皮质轴突分别在E14.5天时停留在内囊和 pallial - subpallial边界处。这种异常是短暂的,丘脑和皮质轴突在E15.5天时到达它们的靶标,尽管丘脑轴突的数量在皮质原基中显著减少。用DiI和DiA进行双重标记显示,在E15.5天之后,该突变体的丘脑和皮质轴突在subpallium和pallium以及外囊中紧密并列。由于定义pallial - subpallial边界的基因和丘脑皮质轴突的导向分子的表达在Fezl缺陷型小鼠中没有显示出显著变化,该突变体中丘脑皮质通路的异常形成可能是由表达Fezl的皮质传出神经元的轴突缺陷引起的。

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