首页> 外文学位 >Induction of pancreatic beta cells in zebrafish.
【24h】

Induction of pancreatic beta cells in zebrafish.

机译:斑马鱼中胰腺β细胞的诱导。

获取原文
获取原文并翻译 | 示例

摘要

The cellular origin and identity of the signals that regulate induction of Insulin-producing pancreatic beta-cell in vivo are not clearly defined. Recent efforts have been aimed at generating functional pancreatic beta-cells from embryonic stem (ES) cell cultures for use in transplantation therapy of diabetes mellitus. A complete mechanistic understanding of how pancreatic beta-cells are induced in vivo will help achieve this goal. During my thesis work, I studied the mechanisms underlying pancreatic beta-cell induction, using the zebrafish as a model system.;First, contrary to the general assumption that mesodermal cells are mostly responsible for inducing pancreatic beta-cells, I found that interactions between endodermal cells are essential for pancreatic beta-cell induction. Through cell lineage analyses, I showed that when the zebrafish endoderm forms a sheet, pancreatic beta-cell precursors lie closest to the midline, the site of Hedgehog (Hh) ligand production. Cell transplantation experiments revealed that Smoothened function, which is activated by Hh ligands and required for the induction of pancreatic beta-cells, is not required in beta-cell precursors. However, the requirement for Smoothened lies in the cells directly adjacent to the beta-cell precursors, which ultimately give rise to the exocrine pancreas and intestine. Thus, pancreatic beta-cell induction requires Smoothened function cell non-autonomously to allow subsequent intra-endodermal interactions.;Second, intrigued by the results showing potential differences between the medial vs lateral endodermal cells, I subsequently performed single cell lineage tracing experiments and the resulting data led me to propose that the endodermal sheet undergoes medio-lateral patterning, a concept that had not been appreciated before, especially as endodermal organs line up along the anterior-posterior axis. Loss- and gain-of-function analyses showed that Bmp2b, which is expressed in the lateral plate mesoderm, signals through Alk8 to induce lateral endodermal cells to become liver. When Bmp2b was overexpressed, medially located endodermal cells, fated to become pancreas and intestine, contributed to the liver. These data provide in vivo evidence for the existence of bipotential hepatopancreatic progenitors, and indicate that their fate is regulated by the medio-lateral patterning of the endodermal sheet, a process controlled by Bmp2b.;Finally, I showed that Bmp signaling restricts the ability of endodermal cells to differentiate into pancreatic endocrine cells, including Insulin-secreting beta-cells. Detailed analysis of mosaic embryos reveals that activation of Bmp signaling in endodermal cells blocks induction of pancreatic beta-cells from both dorsal and ventral pancreatic progenitors. Conversely, suppression of Bmp signaling and knock-down of the type I Bmp receptor Alk8 (also called Alk2 and AcvR1) in the endoderm results in the ectopic formation of pancreatic beta-cells. Further data suggest that Bmp signaling mediates its inhibitory effect by inducing Id2, which in turn inhibits the formation of pancreatic endocrine cells. Thus, Bmp signaling needs to be specifically suppressed in the pancreatic progenitors to allow their differentiation into beta-cells.
机译:尚不清楚在体内调节产生胰岛素的胰β细胞诱导的信号的细胞起源和身份。最近的努力旨在从胚胎干(ES)细胞培养物中产生功能性胰腺β细胞,用于糖尿病的移植治疗。对如何在体内诱导胰腺β细胞的完整机制的理解将有助于实现这一目标。在我的论文工作中,我使用斑马鱼作为模型系统研究了胰岛β细胞诱导的机制。首先,与一般的假设相反,即中胚层细胞主要负责诱导胰岛β细胞,我发现两者之间的相互作用内胚层细胞对于胰腺β细胞诱导至关重要。通过细胞谱系分析,我发现当斑马鱼内胚层形成薄片时,胰腺β细胞前体最接近中线,即刺猬(Hh)配体的产生位置。细胞移植实验表明,由Hh配体激活并诱导胰腺β细胞所需的平滑功能在β细胞前体中并不需要。但是,对平滑化的要求在于与β细胞前体直接相邻的细胞,这最终会导致外分泌胰腺和肠道。因此,胰岛β细胞的诱导需要非自主地使功能细胞平滑化,以允许随后的内胚层内相互作用。;其次,对于显示内侧和外侧内胚层细胞之间潜在差异的结果感兴趣,我随后进行了单细胞谱系示踪实验和由此产生的数据使我提出,对内胚层片进行中外侧构图,这是以前未曾认识到的概念,尤其是当内胚层器官沿前后轴排列时。功能丧失和功能增强分析表明,在外侧板中皮中表达的Bmp2b通过Alk8发出信号,诱导外侧内胚层细胞变成肝脏。当Bmp2b过表达时,位于内侧的内胚层细胞注定会变成胰腺和肠,从而对肝脏产生了影响。这些数据提供了体内存在双能性肝胰腺祖细胞的证据,并表明它们的命运受内胚层片的中外侧构图调节,这一过程受Bmp2b控制。最后,我证明了Bmp信号传导限制了Bmp2b的能力。内胚层细胞分化为胰腺内分泌细胞,包括分泌胰岛素的β细胞。对镶嵌胚胎的详细分析表明,内胚层细胞中Bmp信号的激活会阻断来自胰腺背侧和腹侧胰腺祖细胞的胰腺β细胞的诱导。相反,内胚层中Bmp信号的抑制和I Bmp受体Alk8(也称为Alk2和AcvR1)的敲低导致胰腺β细胞异位形成。进一步的数据表明,Bmp信号传导通过诱导Id2介导其抑制作用,而Id2继而抑制了胰腺内分泌细胞的形成。因此,需要在胰腺祖细胞中特异性抑制Bmp信号传导,以使其分化为β细胞。

著录项

  • 作者

    Chung, Won-suk.;

  • 作者单位

    University of California, San Francisco.;

  • 授予单位 University of California, San Francisco.;
  • 学科 Biology Genetics.;Biology Cell.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 165 p.
  • 总页数 165
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号