1 Islet Cell Development Program, Harry Perkins Institute of Medical Research, Centre for Medical Research, University of Western Australia , Nedlands, Australia .
2 The Walter & Eliza Hall Institute of Medical Research , Parkville, Australia .
Stem Cells Dev. 2017 Dec 1;26(23):1706-1714. doi: 10.1089/scd.2017.0040. Epub 2017 Oct 30.
Bone morphogenetic protein (BMP) signaling plays critical roles on the development of a large array of embryonic organs and promotes the in vitro formation of pancreatic cystoid colonies containing insulin-producing cells. However, this signaling and its underlying mechanism on in vivo development of prenatal pancreas have not been clearly understood. To address these questions, we analyzed, with a variety of techniques, the prenatal mouse pancreas after Pdx1 (the pancreas and duodenum homeobox factor 1 gene)-driving deletion of the BMP receptor type 1a gene (Bmpr1a). In this study, we report that the Pdx1-driving deletion of Bmpr1a transiently disrupted only the assembly of architectural structure of prenatal islets. The differentiation of endocrine lineage cells and the development of pancreatic acinar tissue were comparable between Bmpr1a-deleted fetuses and -undeleted Controls throughout the period examined. Molecular studies revealed that among many proteins surveyed, the key cell-cell interaction molecule E-cadherin (E-cad) only was expressed significantly less at both messenger RNA (mRNA) and protein levels in Bmpr1a-deleted than Control fetal endocrine cells. We thus conclude that BMP signaling transiently regulates the expression of E-cad and the establishment of prenatal islet architecture.
骨形态发生蛋白 (BMP) 信号在大量胚胎器官的发育中发挥着关键作用,并促进含有胰岛素分泌细胞的胰腺类囊状集落的体外形成。然而,这种信号及其在产前胰腺体内发育的潜在机制尚未被清楚地理解。为了解决这些问题,我们使用多种技术分析了 Pdx1(胰腺十二指肠同源盒因子 1 基因)驱动的 BMP 受体 1a 型基因(Bmpr1a)缺失的产前小鼠胰腺。在这项研究中,我们报告了 Pdx1 驱动的 Bmpr1a 缺失仅短暂地破坏了产前胰岛的结构组装。在整个研究期间,内分泌谱系细胞的分化和胰腺腺泡组织的发育在 Bmpr1a 缺失的胎儿和未缺失的对照之间是可比的。分子研究表明,在许多被调查的蛋白质中,关键的细胞-细胞相互作用分子 E-钙黏蛋白 (E-cad) 在 Bmpr1a 缺失的胎儿内分泌细胞中的信使 RNA (mRNA) 和蛋白水平的表达显著降低。因此,我们得出结论,BMP 信号短暂地调节 E-cad 的表达和产前胰岛结构的建立。