首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Tbx2b is essential for neuronal differentiation along the dorsal/ventral axis of the zebrafish retina
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Tbx2b is essential for neuronal differentiation along the dorsal/ventral axis of the zebrafish retina

机译:Tbx2b对于沿着斑马鱼视网膜的背/腹轴神经元分化至关重要

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摘要

The mechanisms by which retinal neurons are patterned along the dorsal/ventral axis remain largely unknown, yet this patterning is integral for the topographic mapping of visual space. With an interest in elucidating the mechanisms that regulate the development of this retinal axis, we have characterized a T-box family transcription factor, Tbx2b, during zebrafish retinogenesis. Tbx2b is expressed throughout all phases of retinal development with a striking asymmetry of distribution highest dorsally to lowest ventrally. To examine Tbx2b function during retinal development, two morpholino antisense oligonucleotides were created; one blocking the translational start site of Tbx2b and the other interfering with Tbx2b mRNA splicing. Injection of either of these morpholinos resulted in profound defects in the development of the dorsal retina. By using molecular markers for neuronal subtypes, the ventral retina contained all cell types, whereas in the dorsal retina, only retinal ganglion cells expressed markers of differentiation. The cells of the dorsal retina were postmitotic, however, as demonstrated by a lack of BrdUrd incorporation during the normal periods of retinal differentiation. Markers for dorsal and ventral retinal compartments were also expressed normally in Tbx2b morphants. Combined, these observations suggest that the cellular mechanisms regulating neuronal differentiation within the retina are asymmetric about the dorsal/ventral axis and that Tbx2b mediates this process within the dorsal retina.
机译:沿背/腹轴构图视网膜神经元的机制仍然未知,但是这种构图对于视觉空间的地形图绘制是必不可少的。为了阐明调节该视网膜轴发育的机制,我们对斑马鱼的视网膜发生过程中的T-box家族转录因子Tbx2b进行了表征。 Tbx2b在整个视网膜发育的各个阶段表达,从背侧到腹侧分布不均。为了检查视网膜发育过程中的Tbx2b功能,创建了两个吗啉代反义寡核苷酸。一个阻止Tbx2b的翻译起始位点,另一个干扰Tbx2b mRNA的剪接。这些吗啉代化合物的注射导致背面视网膜发育中的严重缺陷。通过使用神经元亚型的分子标记,腹侧视网膜包含所有细胞类型,而在背侧视网膜中,仅视网膜神经节细胞表达分化标记。然而,正如在正常视网膜分化期间缺乏BrdUrd掺入所证明的那样,背侧视网膜细胞是有丝分裂的。 Tbx2b morphant中也正常表达了背面和腹侧视网膜区室的标记。综合起来,这些观察结果表明,调节视网膜内神经元分化的细胞机制关于背/腹轴是不对称的,并且Tbx2b介导了视网膜内的这一过程。

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