首页> 外文期刊>Developmental dynamics: an official publication of the American Association of Anatomists >Ectopic expression of Hoxd10 in thoracic spinal segments induces motoneurons with a lumbosacral molecular profile and axon projections to the limb.
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Ectopic expression of Hoxd10 in thoracic spinal segments induces motoneurons with a lumbosacral molecular profile and axon projections to the limb.

机译:Hoxd10在胸椎节段中的异位表达诱导运动神经元,具有腰部分子轮廓和轴突投射到肢体。

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摘要

Hox genes encode anterior-posterior identity during central nervous system development. Few studies have examined Hox gene function at lumbosacral (LS) levels of the spinal cord, where there is extensive information on normal development. Hoxd10 is expressed at high levels in the embryonic LS cord but not the thoracic cord. To test the hypothesis that restricted expression of Hoxd10 contributes to the attainment of an LS identity, and specifically an LS motoneuron identity, Hoxd10 was ectopically expressed in thoracic segments in chick embryos by means of in ovo electroporation. Regional motoneuron identity was assessed after the normal period of motoneuron differentiation. Subsets of motoneurons in transfected thoracic segments developed a molecular profile normally shown by LS motoneurons, including Lim 1 and RALDH2 expression. In addition, motoneurons in posterior thoracic segments showed novel axon projections to two muscles in the anterodorsal limb, the sartorius and anterior iliotibialis muscles.At thoracic levels, we also found a decrease in motoneuron numbers and a reduction in gonad size. These last findings suggest that early and high levels of Hox expression impeded motoneuron development and neural-mesodermal interactions. Despite these adverse effects, our data indicate that Hoxd10 expression is sufficient to induce LS motoneuron identity and axon trajectories characteristic of motoneurons in the LS region. Developmental Dynamics 231:43-56, 2004. Copyright 2004 Wiley-Liss, Inc.
机译:Hox基因在中枢神经系统发育过程中编码前后身份。很少有研究在脊髓腰s(LS)水平检查Hox基因功能,那里有关于正常发育的大量信息。 Hoxd10在胚胎LS索中高表达,但在胸索中不高。为了检验Hoxd10的限制性表达有助于达到LS同一性,特别是LS机动神经元同一性的假设,通过卵内电穿孔在鸡胚的胸段异位表达Hoxd10。在正常运动神经元分化期后评估区域运动神经元身份。转染的胸段中的运动神经元亚集形成了通常由LS运动神经元显示的分子图谱,包括Lim 1和RALDH2表达。此外,后胸节中的运动神经元在前脚四肢的肌肉,缝线和胫前肌中显示出新的轴突投影。这些最新发现表明,Hox表达的早期和高水平阻碍了运动神经元的发育和神经-中胚层的相互作用。尽管有这些不利影响,我们的数据表明Hoxd10表达足以在LS区中诱导LS运动神经元身份和运动神经元的轴突轨迹特征。 Developmental Dynamics 231:43-56,2004。版权所有2004 Wiley-Liss,Inc.。

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