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小鼠小脑浦肯野细胞中Wnt-3表达的维持依赖于与颗粒细胞的相互作用。

Maintenance of Wnt-3 expression in Purkinje cells of the mouse cerebellum depends on interactions with granule cells.

作者信息

Salinas P C, Fletcher C, Copeland N G, Jenkins N A, Nusse R

机构信息

Department of Developmental Biology, Stanford University, CA 94305-5428.

出版信息

Development. 1994 May;120(5):1277-86. doi: 10.1242/dev.120.5.1277.

Abstract

Wnt genes encode secreted proteins implicated in cell fate changes during development. To define specific cell populations in which Wnt genes act, we have examined Wnt expression in the cerebellum. This part of the brain has a relatively simple structure and contains well-characterized cell populations. We found that Wnt-3 is expressed during development of the cerebellum and that expression is restricted to the Purkinje cell layer in the adult. Wnt-3 expression in Purkinje cells increases postnatally as granule cells start to make contacts with Purkinje cells. To investigate whether interactions with granule cells influence Wnt-3 expression in Purkinje cells, we examined gene expression in several mouse mutants, using the expression of En-2 to follow the fate of granule cells. In the weaver mutant, in which granule cells fail to migrate and subsequently die in the external granular layer, Wnt-3 expression was normal at postnatal day 15 (P15). At that time, some granule cells are still present in the external granular layer. At P28, however, when granule cells could no longer be detected, Wnt-3 expression was almost absent. In the meander tail mutant, in which the anterior cerebellar lobes lack granule cells, Wnt-3 expression was only detected in the normal posterior lobes. Since En genes are implicated in cell-cell interactions mediated by Wnt genes, we examined En-2/En-2 mutant mice, finding normal Wnt-3 expression, indicating that the effect of granule cells on the maintenance of Wnt-3 is not mediated by En-2. Our results show that Wnt-3 expression in Purkinje cells is modulated by their presynaptic granule cells at the time of neuronal maturation.

摘要

Wnt基因编码在发育过程中涉及细胞命运变化的分泌蛋白。为了确定Wnt基因发挥作用的特定细胞群体,我们研究了小脑中小Wnt的表达情况。大脑的这一部分结构相对简单,包含特征明确的细胞群体。我们发现Wnt-3在小脑发育过程中表达,且在成年后其表达局限于浦肯野细胞层。随着颗粒细胞开始与浦肯野细胞建立联系,浦肯野细胞中Wnt-3的表达在出生后增加。为了研究与颗粒细胞的相互作用是否会影响浦肯野细胞中Wnt-3的表达,我们使用En-2的表达来追踪颗粒细胞的命运,检测了几种小鼠突变体中的基因表达。在织工突变体中,颗粒细胞无法迁移,随后在外颗粒层死亡,出生后第15天(P15)时Wnt-3表达正常。此时,外颗粒层中仍存在一些颗粒细胞。然而,在P28时,当无法再检测到颗粒细胞时,Wnt-3的表达几乎消失。在曲折尾突变体中,小脑前叶缺乏颗粒细胞,仅在正常的后叶中检测到Wnt-3表达。由于En基因参与由Wnt基因介导的细胞间相互作用,我们检测了En-2/En-2突变小鼠,发现Wnt-3表达正常,这表明颗粒细胞对Wnt-3维持的影响不是由En-2介导的。我们的结果表明,浦肯野细胞中Wnt-3的表达在神经元成熟时受到其突触前颗粒细胞的调节。

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