Diabetes Center, University of California, San Francisco, San Francisco, California, USA.
Diabetes. 2010 May;59(5):1211-21. doi: 10.2337/db09-0914. Epub 2010 Feb 25.
Current studies indicate that Hedgehog (Hh) signaling must be excluded during early stages of pancreas formation. However, conflicting evidence suggests that Hh signaling may be active later during pancreas formation and that it is required for insulin production and secretion in cultured beta-cell lines. The objective of this study was to address these discrepancies by assessing the in vivo role of epithelial Hh signaling in the pancreas.
To identify Hh-active cells in the developing and adult pancreas epithelium, we characterized transgenic reporter Patched1-LacZ mice. To determine the requirement for epithelial Hh signaling in the pancreas, we eliminated an essential Hh signaling component, Smoothened (Smo), in the pancreatic epithelium, and assessed pancreatic development and adult beta-cell physiology phenotypes.
Characterization of Patched1-LacZ reporter mice revealed low-level LacZ expression in pancreatic epithelial cells throughout development until birth, when LacZ activity increases in intensity specifically in endocrine and ductal cells. In the absence of Hh signaling, Smo-deficient mice have delayed pancreas formation leading to a temporary reduction in pancreatic epithelium and beta-cell numbers. Although beta-cell numbers recover by birth, adult Smo-deficient mice display glucose intolerance, increased insulin sensitivity, and reduced total insulin production.
These data show that Hh signaling functions early during pancreas morphogenesis to regulate epithelial and beta-cell expansion and to modulate glucose metabolism by regulating insulin production in adult mice.
目前的研究表明,Hedgehog(Hh)信号在胰腺形成的早期阶段必须被排除。然而,相互矛盾的证据表明,Hh 信号可能在胰腺形成的后期活跃,并且它是培养的β细胞系中胰岛素产生和分泌所必需的。本研究的目的是通过评估上皮细胞 Hh 信号在胰腺中的体内作用来解决这些差异。
为了鉴定发育中和成年胰腺上皮中的 Hh 活性细胞,我们对转染的 Patched1-LacZ 报告小鼠进行了特征描述。为了确定上皮细胞 Hh 信号在胰腺中的必要性,我们在胰腺上皮中消除了必需的 Hh 信号成分 Smoothened(Smo),并评估了胰腺发育和成年β细胞生理表型。
Patched1-LacZ 报告小鼠的特征描述显示,在整个发育过程中,胰腺上皮细胞中的 LacZ 表达水平较低,直到出生时,LacZ 活性在内分泌和导管细胞中特异性增强。在没有 Hh 信号的情况下,Smo 缺陷小鼠的胰腺形成延迟,导致胰腺上皮和β细胞数量暂时减少。尽管β细胞数量在出生时恢复,但成年 Smo 缺陷小鼠表现出葡萄糖不耐受、胰岛素敏感性增加和总胰岛素产生减少。
这些数据表明,Hh 信号在胰腺形态发生的早期阶段发挥作用,以调节上皮和β细胞的扩张,并通过调节成年小鼠的胰岛素产生来调节葡萄糖代谢。