van Dop Willemijn A, Uhmann Anja, Wijgerde Mark, Sleddens-Linkels Esther, Heijmans Jarom, Offerhaus G Johan, van den Bergh Weerman Marius A, Boeckxstaens Guy E, Hommes Daan W, Hardwick James C, Hahn Heidi, van den Brink Gijs R
Center for Experimental Molecular Medicine, Academic Medical Center, Amsterdam, The Netherlands.
Gastroenterology. 2009 Jun;136(7):2195-2203.e1-7. doi: 10.1053/j.gastro.2009.02.068. Epub 2009 Mar 6.
BACKGROUND & AIMS: The intestinal epithelium is a homeostatic system in which differentiated cells are in dynamic equilibrium with rapidly cycling precursor cells. Wnt signaling regulates intestinal epithelial precursor cell fate and proliferation. Homeostatic systems exist by virtue of negative feedback loops, and we have previously identified the Hedgehog (Hh) pathway as a potential negative feedback signal in the colonic epithelium. Indian hedgehog (Ihh) is produced by the differentiated enterocytes and negatively regulates Wnt signaling in intestinal precursor cells. We studied the role of members of the Hh signaling family in the intestine using a conditional genetic approach.
We inactivated the Hh receptor Patched1 (Ptch1) in adult mice, resulting in constitutive activation of the Hh signaling pathway. Effects on colonic mucosal homeostasis were examined. Colon tissues were examined by immunohistochemistry, in situ hybridization, transmission electron microscopy, and real-time polymerase chain reaction.
Ihh but not Sonic hedgehog (Shh) was expressed in colonic epithelium. Expression of Ptch1 and Gli1 was restricted to the mesenchyme. Constitutive activation of Hh signaling resulted in accumulation of myofibroblasts and colonic crypt hypoplasia. A reduction in the number of epithelial precursor cells was observed with premature development into the enterocyte lineage and inhibition of Wnt signaling. Activation of Hh signaling resulted in induction of the expression of bone morphogenetic proteins (Bmp) and increased Bmp signaling in the epithelium.
Hh signaling acts in a negative feedback loop from differentiated cells via the mesenchyme to the colonic epithelial precursor cell compartment in the adult mouse.
肠上皮是一个稳态系统,其中分化细胞与快速循环的前体细胞处于动态平衡。Wnt信号通路调节肠上皮前体细胞的命运和增殖。稳态系统借助负反馈回路而存在,我们之前已确定刺猬信号通路(Hh)是结肠上皮中一种潜在的负反馈信号。印度刺猬因子(Ihh)由分化的肠上皮细胞产生,并对肠前体细胞中的Wnt信号起负调节作用。我们采用条件性遗传学方法研究了Hh信号家族成员在肠道中的作用。
我们在成年小鼠中使Hh受体Patched1(Ptch1)失活,导致Hh信号通路的组成性激活。检测对结肠黏膜稳态的影响。通过免疫组织化学、原位杂交、透射电子显微镜和实时聚合酶链反应对结肠组织进行检测。
Ihh而非音猬因子(Shh)在结肠上皮中表达。Ptch1和Gli1的表达局限于间充质。Hh信号的组成性激活导致肌成纤维细胞积聚和结肠隐窝发育不全。观察到上皮前体细胞数量减少,细胞过早发育为肠上皮细胞谱系并抑制Wnt信号。Hh信号的激活导致骨形态发生蛋白(Bmp)表达的诱导以及上皮中Bmp信号的增加。
在成年小鼠中,Hh信号通过间充质从分化细胞向结肠上皮前体细胞区室发挥负反馈回路作用。