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小鼠胰岛细胞发生需要MicroRNA表达。

MicroRNA expression is required for pancreatic islet cell genesis in the mouse.

作者信息

Lynn Francis C, Skewes-Cox Peter, Kosaka Yasuhiro, McManus Michael T, Harfe Brian D, German Michael S

机构信息

Diabetes Center, Hormone Research Institute, University of California San Francisco, 513 Parnassus Ave., San Francisco, CA 94143-0534, USA.

出版信息

Diabetes. 2007 Dec;56(12):2938-45. doi: 10.2337/db07-0175. Epub 2007 Sep 5.

Abstract

OBJECTIVE

The generation of distinct cell types during the development of the pancreas depends on sequential changes in gene expression. We tested the hypothesis that microRNAs (miRNAs), which limit gene expression through posttranscriptional silencing, modulate the gene expression cascades involved in pancreas development.

RESEARCH DESIGN AND METHODS

miRNAs were cloned and sequenced from developing pancreata, and expression of a subset of these genes was tested using locked nucleic acid in situ analyses. To assess the overall contribution of miRNAs to pancreatic development, Dicer1, an enzyme required for miRNA processing, was conditionally deleted from the developing pancreas.

RESULTS

Sequencing of small RNAs identified over 125 miRNAs, including 18 novel sequences, with distinct expression domains within the developing pancreas. To test the developmental contribution of these miRNAs, we conditionally deleted the miRNA processing enzyme Dicer1 early in pancreas development. Dicer-null animals displayed gross defects in all pancreatic lineages, although the endocrine cells, and especially the insulin-producing beta-cells, were most dramatically reduced. The endocrine defect was associated with an increase in the notch-signaling target Hes1 and a reduction in the formation of endocrine cell progenitors expressing the Hes1 target gene neurogenin3.

CONCLUSIONS

The expression of a unique profile of miRNAs is required during pancreas development and is necessary for beta-cell formation.

摘要

目的

胰腺发育过程中不同细胞类型的产生取决于基因表达的顺序变化。我们检验了这样一个假说,即通过转录后沉默限制基因表达的微小RNA(miRNA)调节参与胰腺发育的基因表达级联反应。

研究设计与方法

从发育中的胰腺中克隆并测序miRNA,使用锁核酸原位分析检测这些基因子集的表达。为评估miRNA对胰腺发育的总体贡献,在发育中的胰腺中条件性删除miRNA加工所需的酶Dicer1。

结果

小RNA测序鉴定出125种以上的miRNA,包括18个新序列,在发育中的胰腺内具有不同的表达域。为测试这些miRNA对发育的贡献,我们在胰腺发育早期条件性删除了miRNA加工酶Dicer1。Dicer基因缺失的动物在所有胰腺谱系中均表现出严重缺陷,尽管内分泌细胞,尤其是产生胰岛素的β细胞减少最为显著。内分泌缺陷与Notch信号靶点Hes1的增加以及表达Hes1靶基因neurogenin3的内分泌细胞祖细胞形成减少有关。

结论

胰腺发育过程中需要独特的miRNA表达谱,这对β细胞形成是必需的。

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