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神经生成素3足以使肝祖细胞在体内转决定为新胰岛,但不能使肝细胞转分化。

Neurogenin3 is sufficient for transdetermination of hepatic progenitor cells into neo-islets in vivo but not transdifferentiation of hepatocytes.

作者信息

Yechoor Vijay, Liu Victoria, Espiritu Christie, Paul Antoni, Oka Kazuhiro, Kojima Hideto, Chan Lawrence

机构信息

Division of Diabetes, Endocrinology, and Metabolism, Department of Medicine, Baylor College of Medicine, Houston, TX 77030, USA.

出版信息

Dev Cell. 2009 Mar;16(3):358-73. doi: 10.1016/j.devcel.2009.01.012.

Abstract

The transcription factor Neurogenin3 (Ngn3) is required for islet-cell type specification. Here, we show that hepatic gene transfer of Ngn3 transiently induces insulin in terminally differentiated hepatocytes but fails to transdifferentiate them, i.e., switch their lineage into islet cells. However, Ngn3 leads to long-term diabetes reversal in mice due to the emergence of periportal islet-like cell clusters. These neo-islets display glycemia-regulated insulin, beta-cell-specific transcripts, and an islet-specific transcription cascade, and they produce all four major islet hormones. They appear to arise from hepatic progenitor cells, most likely endoderm-derived oval cells. Thus, transfer of a single lineage-defining transcription factor, Ngn3, is sufficient to induce cell-lineage switching from a hepatic to an islet lineage in these progenitor cells, a process consistent with transdetermination, i.e, lineage switching in lineage-determined, but not terminally differentiated, cells. This paradigm of induced transdetermination of receptive progenitor cells in vivo may be generally applicable to therapeutic organogenesis for multiple diseases, including diabetes.

摘要

转录因子神经生成素3(Ngn3)是胰岛细胞类型特化所必需的。在此,我们表明,Ngn3的肝脏基因转移可在终末分化的肝细胞中短暂诱导胰岛素生成,但无法使其转分化,即无法将其细胞谱系转变为胰岛细胞。然而,由于门静脉周围出现胰岛样细胞簇,Ngn3可使小鼠长期糖尿病逆转。这些新胰岛表现出血糖调节的胰岛素、β细胞特异性转录本以及胰岛特异性转录级联反应,并且它们能产生所有四种主要的胰岛激素。它们似乎起源于肝脏祖细胞,很可能是内胚层来源的卵圆细胞。因此,单一的谱系决定转录因子Ngn3的转移足以在这些祖细胞中诱导细胞谱系从肝脏谱系转变为胰岛谱系,这一过程与转决定一致,即在谱系确定但未终末分化的细胞中进行谱系转换。这种体内诱导感受态祖细胞转决定的范例可能普遍适用于多种疾病的治疗性器官发生,包括糖尿病。

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