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依赖转录因子 Shox2 来特异性指定传递辨别触压觉的感觉神经元。

Dependence on the transcription factor Shox2 for specification of sensory neurons conveying discriminative touch.

机构信息

Division of Molecular Neurobiology, Department of Medical Biochemistry and Biophysics, Karolinska Institute, Stockholm, Sweden.

出版信息

Eur J Neurosci. 2011 Nov;34(10):1529-41. doi: 10.1111/j.1460-9568.2011.07883.x.

Abstract

Touch sensation is mediated by specific subtypes of sensory neurons which develop in a hierarchical process from common early progenitor neurons, but the molecular mechanism that underlies diversification of touch-sensitive mechanoreceptive neurons is not fully known. Here, we use genetically manipulated mice to examine whether the transcription factor short stature homeobox 2 (Shox2) participates in the acquisition of neuronal subtypes conveying touch sensation. We show that Shox2 encodes the development of category I low-threshold mechanoreceptive neurons in glabrous skin, i.e. discriminative touch-sensitive neurons which form innervations of epidermal Merkel cell and Meissner corpuscles. In contrast, other sensory fiber endings, including those innervating Pacinian corpuscles, are not dependent on Shox2. Shox2 is expressed in neurons of most or all classes of sensory neurons at early embryonic stages and is later confined to touch-sensitive neurons expressing Ret and/or TrkB. Conditional deletion of Shox2 and analysis of Runx3(-/-);Bax(-/-) mutant mice reveals that Runx3 is suppressing Shox2 while Shox2 is necessary for TrkB expression, and that these interactions are necessary for diversification of TrkB(+) and TrkC(+) mechanoreceptive neurons. In particular, development of TrkB(+)/Ret(+) and TrkB(+)/Ret(-) touch-sensitive neurons is critically dependent on Shox2. Consistently, Shox2 conditional mutant mice demonstrate a dramatic impairment of light touch responses. These results show that Shox2 is required for specification of a subclass of TrkB(+) sensory neurons which convey the sensation of discriminative touch arising from stimuli of the skin.

摘要

触觉是由特定的感觉神经元亚型介导的,这些神经元亚型是从共同的早期祖细胞通过层次化的过程发育而来的,但支配机械感受神经元多样化的分子机制尚不完全清楚。在这里,我们使用遗传操作的小鼠来研究转录因子短体节同源盒 2 (Shox2) 是否参与了传递触觉感觉的神经元亚型的获得。我们表明 Shox2 编码了无毛皮肤中 I 型低阈值机械感受器神经元的发育,即辨别性触觉敏感神经元,它形成表皮 Merkel 细胞和 Meissner 小体的神经支配。相比之下,其他感觉纤维末梢,包括支配 Pacinian 小体的末梢,并不依赖于 Shox2。Shox2 在早期胚胎阶段表达于大多数或所有类别的感觉神经元中,随后局限于表达 Ret 和/或 TrkB 的触觉敏感神经元。Shox2 的条件性缺失和 Runx3(-/-);Bax(-/-) 突变小鼠的分析表明,Runx3 抑制 Shox2,而 Shox2 是 TrkB 表达所必需的,并且这些相互作用对于 TrkB(+)和 TrkC(+)机械感受神经元的多样化是必需的。特别是,TrkB(+)/Ret(+)和 TrkB(+)/Ret(-)触觉敏感神经元的发育严重依赖于 Shox2。一致地,Shox2 条件性突变小鼠表现出对轻触反应的显著损害。这些结果表明,Shox2 是 TrkB(+)感觉神经元亚类的特异性所必需的,该亚类神经元传递来自皮肤刺激的辨别性触觉感觉。

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