Kawahira Hiroshi, Ma Nancy H, Tzanakakis Emmanouhl S, McMahon Andrew P, Chuang Pao-Tien, Hebrok Matthias
Diabetes Center, Department of Medicine, University of California, San Francisco, CA 94143, USA.
Development. 2003 Oct;130(20):4871-9. doi: 10.1242/dev.00653. Epub 2003 Aug 13.
Hedgehog signaling is known to regulate tissue morphogenesis and cell differentiation in a dose-dependent manner. Loss of Indian hedgehog (Ihh) results in reduction in pancreas size, indicating a requirement for hedgehog signaling during pancreas development. By contrast, ectopic expression of sonic hedgehog (Shh) inhibits pancreatic marker expression and results in transformation of pancreatic mesenchyme into duodenal mesoderm. These observations suggest that hedgehog signaling activity has to be regulated tightly to ensure proper pancreas development. We have analyzed the function of two hedgehog inhibitors, Hhip and patched 1 (Ptch), during pancreas formation. Our results indicated that loss of Hhip results in increased hedgehog signaling within the pancreas anlage. Pancreas morphogenesis, islet formation and endocrine cell proliferation is impaired in Hhip mutant embryos. Additional loss of one Ptch allele in Hhip-/-Ptch+/- embryos further impairs pancreatic growth and endodermal cell differentiation. These results demonstrate combined requirements for Hhip and Ptch during pancreas development and point to a dose-dependent response to hedgehog signaling within pancreatic tissue. Reduction of Fgf10 expression in Hhip homozygous mutants suggests that at least some of the observed phenotypes result from hedgehog-mediated inhibition of Fgf signaling at early stages.
已知刺猬信号通路以剂量依赖的方式调节组织形态发生和细胞分化。印度刺猬因子(Ihh)缺失会导致胰腺尺寸减小,这表明胰腺发育过程中需要刺猬信号通路。相比之下,音猬因子(Shh)的异位表达会抑制胰腺标志物的表达,并导致胰腺间充质转化为十二指肠中胚层。这些观察结果表明,必须严格调节刺猬信号通路的活性,以确保胰腺正常发育。我们分析了两种刺猬信号抑制剂Hhip和patched 1(Ptch)在胰腺形成过程中的功能。我们的结果表明,Hhip缺失会导致胰腺原基内刺猬信号通路活性增加。Hhip突变胚胎中的胰腺形态发生、胰岛形成和内分泌细胞增殖均受损。在Hhip-/-Ptch+/-胚胎中额外缺失一个Ptch等位基因会进一步损害胰腺生长和内胚层细胞分化。这些结果证明了胰腺发育过程中对Hhip和Ptch的联合需求,并表明胰腺组织对刺猬信号通路存在剂量依赖性反应。Hhip纯合突变体中Fgf10表达的降低表明,至少部分观察到的表型是由早期刺猬信号介导的Fgf信号抑制所致。