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人脑中脑前体细胞在体外激活预期的发育基因程序,并长期分化为功能性 A9 多巴胺神经元。Bcl-X(L) 可增强这种分化。

Human midbrain precursors activate the expected developmental genetic program and differentiate long-term to functional A9 dopamine neurons in vitro. Enhancement by Bcl-X(L).

机构信息

Departmento de Biología Molecular and Centro de Biología Molecular Severo Ochoa, Universidad Autónoma de Madrid-C.S.I.C, Cantoblanco, 28049-Madrid, Spain.

出版信息

Exp Cell Res. 2012 Nov 15;318(19):2446-59. doi: 10.1016/j.yexcr.2012.07.018. Epub 2012 Aug 2.

DOI:10.1016/j.yexcr.2012.07.018
PMID:22884477
Abstract

Understanding the molecular programs of the generation of human dopaminergic neurons (DAn) from their ventral mesencephalic (VM) precursors is of key importance for basic studies, progress in cell therapy, drug screening and pharmacology in the context of Parkinson's disease. The nature of human DAn precursors in vitro is poorly understood, their properties unstable, and their availability highly limited. Here we present positive evidence that human VM precursors retaining their genuine properties and long-term capacity to generate A9 type Substantia nigra human DAn (hVM1 model cell line) can be propagated in culture. During a one month differentiation, these cells activate all key genes needed to progress from pro-neural and pro-dopaminergic precursors to mature and functional DAn. For the first time, we demonstrate that gene cascades are correctly activated during differentiation, resulting in the generation of mature DAn. These DAn have morphological and functional properties undistinguishable from those generated by VM primary neuronal cultures. In addition, we have found that the forced expression of Bcl-X(L) induces an increase in the expression of key developmental genes (MSX1, NGN2), maintenance of PITX3 expression temporal profile, and also enhances genes involved in DAn long-term function, maintenance and survival (EN1, LMX1B, NURR1 and PITX3). As a result, Bcl-X(L) anticipates and enhances DAn generation.

摘要

理解人类中脑腹侧(VM)前体细胞产生多巴胺能神经元(DAn)的分子程序对于基础研究、细胞治疗进展、帕金森病背景下的药物筛选和药理学至关重要。体外人类 DAn 前体的性质知之甚少,其性质不稳定,可用性非常有限。在这里,我们提供了确凿的证据表明,具有真正特性和长期产生 A9 型黑质人类 DAn(hVM1 模型细胞系)能力的人类 VM 前体可以在培养中增殖。在一个月的分化过程中,这些细胞激活了从神经前体细胞和多巴胺能前体细胞向成熟和功能 DAn 进展所需的所有关键基因。我们首次证明,基因级联在分化过程中被正确激活,从而产生成熟的 DAn。这些 DAn 的形态和功能特性与 VM 原代神经元培养产生的 DAn 无法区分。此外,我们发现强制表达 Bcl-X(L)会增加关键发育基因(MSX1、NGN2)的表达,维持 PITX3 表达的时间模式,并增强与 DAn 长期功能、维持和存活相关的基因(EN1、LMX1B、NURR1 和 PITX3)的表达。结果,Bcl-X(L) 预测并增强了 DAn 的产生。

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