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Zbtb20 对于发育中海马 CA1 区的特征指定是必需的。

Zbtb20 is essential for the specification of CA1 field identity in the developing hippocampus.

机构信息

Department of Pathophysiology, Second Military Medical University, Shanghai 200433, China.

出版信息

Proc Natl Acad Sci U S A. 2010 Apr 6;107(14):6510-5. doi: 10.1073/pnas.0912315107. Epub 2010 Mar 22.

Abstract

The development of hippocampal circuitry depends on the proper assembly of correctly specified and fully differentiated hippocampal neurons. Little is known about factors that control the hippocampal specification. Here, we show that zinc finger protein Zbtb20 is essential for the specification of hippocampal CA1 field identity. We found that Zbtb20 expression was initially activated in the hippocampal anlage at the onset of corticogenesis, and persisted in immature hippocampal neurons. Targeted deletion of Zbtb20 in mice did not compromise the progenitor proliferation in the hippocampal and adjacent transitional ventricular zone, but led to the transformation of the hippocampal CA1 field into a transitional neocortex-like structure, as evidenced by cytoarchitectural, neuronal migration, and gene expression phenotypes. Correspondingly, the subiculum was ectopically located adjacent to the CA3 in mutant. Although the field identities of the mutant CA3 and dentate gyrus (DG) were largely maintained, their projections were severely impaired. The hippocampus of Zbtb20 null mice was reduced in size, and exhibited increased apoptotic cell death during postnatal development. Our data establish an essential role of Zbtb20 in the specification of CA1 field identity by repressing adjacent transitional neocortex-specific fate determination.

摘要

海马回路的发育取决于正确指定和完全分化的海马神经元的适当组装。关于控制海马规范的因素知之甚少。在这里,我们表明锌指蛋白 Zbtb20 对于海马 CA1 场身份的指定是必不可少的。我们发现 Zbtb20 的表达最初在皮质发生开始时在海马原基中被激活,并在未成熟的海马神经元中持续存在。在小鼠中靶向缺失 Zbtb20 不会影响海马和相邻过渡室带中的祖细胞增殖,但会导致海马 CA1 场转变为过渡性新皮质样结构,这可以从细胞结构、神经元迁移和基因表达表型得到证明。相应地,在突变体中,下托被异位定位在 CA3 旁边。尽管突变体 CA3 和齿状回 (DG) 的场身份在很大程度上得到了维持,但它们的投射受到严重损害。Zbtb20 缺失小鼠的海马体体积减小,并且在出生后发育过程中出现增加的细胞凋亡。我们的数据通过抑制相邻过渡性新皮质特异性命运决定来确定 Zbtb20 在 CA1 场身份指定中的重要作用。

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