首页> 美国卫生研究院文献>The Journal of Neuroscience >Engrailed Homeobox Genes Determine the Organization of Purkinje Cell Sagittal Stripe Gene Expression in the Adult Cerebellum
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Engrailed Homeobox Genes Determine the Organization of Purkinje Cell Sagittal Stripe Gene Expression in the Adult Cerebellum

机译:陷入困境的同源盒基因确定成人小脑浦肯野细胞矢状条纹基因表达的组织。

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摘要

Underlying the seemingly uniform cellular composition of the adult mammalian cerebellum (Cb) are striking parasagittal stripes of gene expression along the medial-lateral (ML) axis that are organized with respect to the lobules that divide the Cb along the anterior–posterior (AP) axis. Although there is a clear correlation between the organization of gene expression stripes and Cb activity patterns, little is known about the genetic pathways that determine the intrinsic stripe molecular code. Here we establish that ML molecular code patterning is highly dependent on two homeobox transcription factors, Engrailed1 (En1) and En2, both of which are also required for patterning the lobules. Gene expression analysis of an allelic series of En1/2 mutant mice that have an intact Purkinje cell layer revealed severe patterning defects using three known components of the ML molecular code and a new marker of Hsp25 negative stripes (Neurofilament heavy chain, Nfh). Importantly, the complementary expression of ZebrinII/PhospholipaseCβ4 and Hsp25/Nfh changes in unison in each mutant. Furthermore, each En gene has unique as well as overlapping functions in patterning the ML molecular code and each En protein has dominant functions in different AP domains (subsets of lobules). Remarkably, in En1/2 mutants with almost normal foliation, ML molecular code patterning is severely disrupted. Thus, independent mechanisms that use En1/2 must pattern foliation and spatial gene expression separately. Our studies reveal that En1/2 are fundamental components of the genetic pathways that pattern the two intersecting coordinate systems of the Cb, morphological divisions and the molecular code.
机译:成年哺乳动物小脑(Cb)看似均匀的细胞组成的基础是沿内侧-外侧(ML)轴的显着矢状旁突基因表达条纹,这些条纹相对于沿前-后(AP)分开Cb的小叶而组织轴。尽管基因表达条带的组织和Cb活性模式之间存在明显的相关性,但对于确定固有条带分子密码的遗传途径知之甚少。在这里,我们确定ML分子代码的图案化高度依赖于两个同源异型盒转录因子Engrailed1(En1)和En2,这两个都是小叶图案化所必需的。具有完整的Purkinje细胞层的等位基因En1 / 2突变小鼠系列的基因表达分析显示,使用ML分子代码的三个已知成分和Hsp25负条纹的新标记(神经丝重链,Nfh),存在严重的模式缺陷。重要的是,每个突变体中ZebrinII /磷脂酶Cβ4和Hsp25 / Nfh的互补表达一致变化。此外,每个En基因在图案化ML分子编码中均具有独特的功能以及重叠的功能,并且每个En蛋白在不同的AP结构域(小叶的子集)中具有主导功能。值得注意的是,在叶片接近正常的En1 / 2突变体中,ML分子编码模式被严重破坏。因此,使用En1 / 2的独立机制必须分别模式化叶子和空间基因表达。我们的研究表明,En1 / 2是遗传途径的基本组成部分,构成了Cb的两个相交坐标系,形态划分和分子密码的模式。

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