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Lmx1a在人胚胎干细胞体外分化为中脑多巴胺能神经元以及移植到帕金森病模型后所起的作用。

The role of Lmx1a in the differentiation of human embryonic stem cells into midbrain dopamine neurons in culture and after transplantation into a Parkinson's disease model.

作者信息

Cai Jingli, Donaldson Angela, Yang Ming, German Michael S, Enikolopov Grigori, Iacovitti Lorraine

机构信息

Farber Institute for Neurosciences, Department of Neurology, Thomas Jefferson University Medical College, Philadelphia, Pennsylvania 19107, USA.

出版信息

Stem Cells. 2009 Jan;27(1):220-9. doi: 10.1634/stemcells.2008-0734.

DOI:10.1634/stemcells.2008-0734
PMID:18832589
Abstract

Recent studies have provided important insight into the homeoprotein LIM homeobox transcription factor 1alpha (Lmx1a) and its role in the commitment of cells to a midbrain dopamine (mDA) fate in the developing mouse. We show here that Lmx1a also plays a pivotal role in the mDA differentiation of human embryonic stem (hES) cells. Thus, as indicated by small interfering RNA experiments, the transient early expression of Lmx1a is necessary for the coordinated expression of all other dopamine (DA)-specific phenotypic traits as hES cells move from multipotent human neural progenitor cells (hNPs) to more restricted precursor cells in vitro. Moreover, only Lmx1a-specified hNPs have the potential to differentiate into bona fide mDA neurons after transplantation into the 6-hydroxydopamine-treated rat striatum. In contrast, cortical human neuronal precursor cells (HNPCs) and mouse subventricular zone cells do not express Lmx1a or become mDA neurons even when placed in an environment that fosters their DA differentiation in vitro or in vivo. These findings suggest that Lmx1a may be critical to the development of mDA neurons from hES cells and that, along with other key early DA markers (i.e., Aldh1a1), may prove to be extremely useful for the selection of appropriately staged and suitably mDA-specified hES cells for cell replacement in Parkinson's disease.

摘要

最近的研究为同源异形蛋白LIM同源框转录因子1α(Lmx1a)及其在发育中的小鼠细胞向中脑多巴胺(mDA)命运定向分化过程中的作用提供了重要见解。我们在此表明,Lmx1a在人胚胎干细胞(hES)的mDA分化中也起着关键作用。因此,如小干扰RNA实验所示,当hES细胞在体外从多能性人神经祖细胞(hNP)转变为更具限制性的前体细胞时,Lmx1a的短暂早期表达对于所有其他多巴胺(DA)特异性表型特征的协调表达是必需的。此外,只有经Lmx1a指定的hNP在移植到6-羟基多巴胺处理的大鼠纹状体后才有潜力分化为真正的mDA神经元。相比之下,皮质人神经元前体细胞(HNPC)和小鼠脑室下区细胞即使置于在体外或体内促进其DA分化的环境中,也不表达Lmx1a或成为mDA神经元。这些发现表明,Lmx1a可能对hES细胞来源的mDA神经元的发育至关重要,并且与其他关键的早期DA标记物(即醛脱氢酶1a1)一起,可能被证明对选择用于帕金森病细胞替代的适当阶段和合适的mDA指定的hES细胞极为有用。

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