Pax4 and Arx Represent Crucial Regulators of the Development of the Endocrine Pancreas

Monica L Courtney, Tamara I Rabe, P. Collombat, A. Mansouri
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引用次数: 8

Abstract

The development of the endocrine pancreas is under the control of highly orchestrated, cross-interacting transcription factors. Pancreas genesis is initiated by the emergence of a Pdx1/Ptf1a marked territory at the foregut/midgut junction. A small fraction of pancreatic fated cells activates the expression of the bHLH transcription factor Ngn3 triggering the endocrine cell program, thus giving rise to beta-, alpha-, delta-, PP-, and epsilon-cells, producing insulin, glucagon, somatostatin, pancreatic polypeptide, and ghrelin, respectively. Two transcription factors, Pax4 and Arx, play a crucial role in differential endocrine cell subtype specification. They were shown to be necessary and sufficient to endow endocrine progenitors with either a beta- or alpha-cell destiny. Interestingly, whereas the forced expression of Arx in beta-cells converts these into cells exhibiting alpha- and PP-cell characteristics, the sole expression of Pax4 in alpha-cells promotes alpha-cell-neogenesis and the acquisition of beta-cell features, the resulting beta-like cells being capable of counteracting chemically induced diabetes. Gaining new insights into the molecular mechanisms controlling Pax4 and Arx expression in the endocrine pancreas may therefore pave new avenues for the therapy of diabetes.
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Pax4和Arx是胰腺内分泌发育的重要调控因子
胰腺内分泌的发育受高度协调、相互作用的转录因子的控制。胰腺的发生是由在前肠/中肠交界处出现的Pdx1/Ptf1a标记区域开始的。一小部分胰腺宿命细胞激活bHLH转录因子Ngn3的表达,触发内分泌细胞程序,从而产生β -、α -、δ -、PP-和epsilon-细胞,分别产生胰岛素、胰高血糖素、生长抑素、胰腺多肽和胃饥饿素。两个转录因子Pax4和Arx在内分泌细胞亚型分化中起着至关重要的作用。它们被证明是赋予内分泌祖细胞β细胞或α细胞命运的必要和充分条件。有趣的是,虽然在β细胞中强制表达Arx会将这些细胞转化为具有α和pp细胞特征的细胞,但在α细胞中单独表达Pax4会促进α细胞新生并获得β细胞特征,从而产生β样细胞,能够对抗化学诱导的糖尿病。因此,对控制内分泌胰腺中Pax4和Arx表达的分子机制有了新的认识,可能为糖尿病的治疗开辟新的途径。
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