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首页> 外文期刊>Mechanisms of Development >A BMP-mediated transcriptional cascade involving Cash1 and Tlx-3 specifies first-order relay sensory neurons in the developing hindbrain
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A BMP-mediated transcriptional cascade involving Cash1 and Tlx-3 specifies first-order relay sensory neurons in the developing hindbrain

机译:涉及Cash1和Tlx-3的BMP介导的转录级联反应指定了发育中的后脑中的一阶中继感觉神经元

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摘要

The divergent homeobox-containing transcription factor, Tlx-3 (also known as Hox11L2/Rnx), is required for proper formation of first-order relay sensory neurons in the developing vertebrate brainstem. To date, however, the inductive signals and transcriptional regulatory cascade underlying their development are poorly understood. We previously isolated the chick Tlx-3 homologue and showed it is expressed early (i.e. beginning at HH15) in distinct subcomponents of both the trigeminal/solitary and vestibular nuclei. Here we show via in vivo rhombomere inversions that expression of Tlx-3 is under control of local environmental signals. Our RNA in situ analysis shows expression of the BMP-specific receptor, Bmpr-1b, correlates well with Tlx-3. Furthermore, manipulation of the BMP signaling pathway in vivo via electroporation of expression vectors encoding either BMP or NOGGIN coupled with MASH1 gain-of-function experiments demonstrate that a BMP-mediated transcriptional cascade involving Cash1 and Tlx-3 specifies first-order relay sensory neurons in the developing brainstem. Notably, high-level Noggin misexpression results in an increase in newly differentiated Tlx-3(+) neurons that correlates with a corresponding increase in the number of Calretinin(+) neurons in vestibular nuclei at later developmental stages strongly suggesting that Tlx-3, in addition to being required for proper formation of somatic as well as visceral sensory neurons in the trigeminal and solitary nuclei, respectively, is sufficient for proper formation of special somatic sensory neurons in vestibular nuclei.
机译:为了在发育中的脊椎动物脑干中正确形成一阶中继感觉神经元,需要含有异型同源盒的转录因子Tlx-3(也称为Hox11L2 / Rnx)。然而,迄今为止,人们对它们的潜在基础的诱导信号和转录调节级联反应知之甚少。我们之前分离出了小鸡Tlx-3同源物,并显示了它在三叉/单核和前庭核的不同亚成分中早期表达(即从HH15开始)。在这里,我们通过体内菱形反转显示Tlx-3的表达受局部环境信号的控制。我们的RNA原位分析显示BMP特异性受体Bmpr-1b的表达与Tlx-3密切相关。此外,通过电穿孔编码BMP或NOGGIN的表达载体并结合MASH1功能获得实验,体内对BMP信号通路的操纵表明,涉及Cash1和Tlx-3的BMP介导的转录级联反应可指定一阶中继感觉神经元在发育中的脑干中。值得注意的是,高水平的Noggin错误表达会导致新分化的Tlx-3(+)神经元增加,这与后期发育阶段前庭核中Calretinin(+)神经元的数量相应增加有关,这强烈表明Tlx-3,除了分别在三叉神经和孤立核中分别正确形成躯体和内脏感觉神经元所需的条件外,还足以在前庭核中正确形成特殊的躯体感觉神经元。

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