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通过转录因子 Runx1 的表达对小鼠上外侧臂旁核的分子特征进行研究。

Molecular characterization of the mouse superior lateral parabrachial nucleus through expression of the transcription factor Runx1.

机构信息

Centre for Neuronal Survival, Montreal Neurological Institute, McGill University, Montreal, Quebec, Canada.

出版信息

PLoS One. 2010 Nov 11;5(11):e13944. doi: 10.1371/journal.pone.0013944.

Abstract

BACKGROUND

The ability to precisely identify separate neuronal populations is essential to the understanding of the development and function of different brain structures. This necessity is particularly evident in regions such as the brainstem, where the anatomy is quite complex and little is known about the identity, origin, and function of a number of distinct nuclei due to the lack of specific cellular markers. In this regard, the gene encoding the transcription factor Runx1 has emerged as a specific marker of restricted neuronal populations in the murine central and peripheral nervous systems. The aim of this study was to precisely characterize the expression of Runx1 in the developing and postnatal mouse brainstem.

METHODS AND PRINCIPAL FINDINGS

Anatomical and immunohistochemical studies were used to characterize mouse Runx1 expression in the brainstem. It is shown here that Runx1 is expressed in a restricted population of neurons located in the dorsolateral rostral hindbrain. These neurons define a structure that is ventromedial to the dorsal nucleus of the lateral lemniscus, dorsocaudal to the medial paralemniscal nucleus and rostral to the cerebellum. Runx1 expression in these cells is first observed at approximately gestational day 12.5, persists into the adult brain, and is lost in knockout mice lacking the transcription factor Atoh1, an important regulator of the development of neuronal lineages of the rhombic lip. Runx1-expressing neurons in the rostral hindbrain produce cholecystokinin and also co-express members of the Groucho/Transducin-like Enhancer of split protein family.

CONCLUSION

Based on the anatomical and molecular characteristics of the Runx1-expressing cells in the rostral hindbrain, we propose that Runx1 expression in this region of the mouse brain defines the superior lateral parabrachial nucleus.

摘要

背景

精确定位分离神经元群体的能力对于理解不同脑结构的发育和功能至关重要。这种必要性在脑干等区域尤为明显,由于缺乏特定的细胞标记物,该区域的解剖结构非常复杂,对于许多不同核的身份、来源和功能知之甚少。在这方面,编码转录因子 Runx1 的基因已成为小鼠中枢和周围神经系统中受限制的神经元群体的特异性标记物。本研究的目的是精确描述 Runx1 在发育中和出生后小鼠脑干中的表达。

方法和主要发现

使用解剖学和免疫组织化学研究来描述 Runx1 在脑干中的表达。结果表明,Runx1 在位于脑干背外侧的局限神经元群体中表达。这些神经元定义了一个位于外侧丘系背核腹内侧、内侧旁正中核背侧和小脑腹侧的结构。这些细胞中的 Runx1 表达大约在妊娠第 12.5 天开始观察到,持续到成年期,并在缺乏转录因子 Atoh1 的敲除小鼠中丢失,Atoh1 是菱唇神经元谱系发育的重要调节因子。背侧后脑的 Runx1 表达神经元产生胆囊收缩素,也共同表达 Groucho/Transducin-like Enhancer of split 蛋白家族的成员。

结论

基于背侧后脑中 Runx1 表达细胞的解剖学和分子特征,我们提出小鼠大脑该区域的 Runx1 表达定义了上外侧臂旁核。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e82d/2978708/ad267a2ff0fd/pone.0013944.g001.jpg

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