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Arx和Pax4在内分泌胰腺发育中的相反作用。

Opposing actions of Arx and Pax4 in endocrine pancreas development.

作者信息

Collombat Patrick, Mansouri Ahmed, Hecksher-Sorensen Jacob, Serup Palle, Krull Jens, Gradwohl Gerard, Gruss Peter

机构信息

Department of Molecular Cell Biology, Max-Planck Institute for Biophysical Chemistry, D-37077 Göttingen, Germany.

出版信息

Genes Dev. 2003 Oct 15;17(20):2591-603. doi: 10.1101/gad.269003.

Abstract

Genes encoding homeodomain-containing proteins potentially involved in endocrine pancreas development were isolated by combined in silico and nested-PCR approaches. One such transcription factor, Arx, exhibits Ngn3-dependent expression throughout endocrine pancreas development in alpha, beta-precursor, and delta cells. We have used gene targeting in mouse embryonic stem cells to generate Arx loss-of-function mice. Arx-deficient animals are born at the expected Mendelian frequency, but develop early-onset hypoglycemia, dehydration, and weakness, and die 2 d after birth. Immunohistological analysis of pancreas from Arx mutants reveals an early-onset loss of mature endocrine alpha cells with a concomitant increase in beta-and delta-cell numbers, whereas islet morphology remains intact. Our study indicates a requirement of Arx for alpha-cell fate acquisition and a repressive action on beta-and delta-cell destiny, which is exactly the opposite of the action of Pax4 in endocrine commitment. Using multiplex reverse transcriptase PCR (RT-PCR), we demonstrate an accumulation of Pax4 and Arx transcripts in Arx and Pax4 mutant mice, respectively. We propose that the antagonistic functions of Arx and Pax4 for proper islet cell specification are related to the pancreatic levels of the respective transcripts.

摘要

通过计算机分析和巢式聚合酶链反应(PCR)相结合的方法,分离出了可能参与内分泌胰腺发育的含同源结构域蛋白的基因。其中一种转录因子Arx,在α细胞、β前体细胞和δ细胞的整个内分泌胰腺发育过程中,表现出依赖神经源性分化因子3(Ngn3)的表达。我们利用小鼠胚胎干细胞中的基因打靶技术,培育出了Arx功能缺失的小鼠。Arx基因缺陷的动物以预期的孟德尔频率出生,但会出现早发性低血糖、脱水和虚弱症状,并在出生后2天死亡。对Arx突变体的胰腺进行免疫组织学分析发现,成熟内分泌α细胞早期开始缺失,同时β细胞和δ细胞数量增加,而胰岛形态保持完整。我们的研究表明,Arx对于α细胞命运的获得是必需的,并且对β细胞和δ细胞的命运具有抑制作用,这与Pax4在内分泌细胞定向分化中的作用正好相反。通过多重逆转录聚合酶链反应(RT-PCR),我们分别在Arx和Pax4突变小鼠中证实了Pax4和Arx转录本的积累。我们提出,Arx和Pax4在胰岛细胞正确分化中的拮抗功能与各自转录本在胰腺中的水平有关。

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