Maintenance of colonic homeostasis by distinctive apical TLR9 signalling in intestinal epithelial cells

Maintenance of colonic homeostasis by distinctive apical TLR9 signalling in intestinal epithelial cells
复制标题

DOI:
10.1038/ncb1500
复制
发表时间:
2006-12-01
影响因子:
21.3
通讯作者:
Raz, Eyal
Raz, Eyal
中科院分区:
生物学1区
文献类型:
--
作者:
Lee, Jongdae;Mo, Ji-Hun;Raz, Eyal

文献摘要

被引文献

相似文献

肠道细菌抑制肠道炎症信号的机制仍不清楚。在这里,我们提出了一种细胞机制,即肠上皮细胞(IEC)的极性在结肠内稳态中起着重要作用。通过顶端和基底外侧表面结构域的TLR9活化具有不同的转录应答,这通过NF-κ B活化和cDNA微阵列分析得到证实。尽管基底外侧TLR9信号传导I κ B α降解和NF-κ B途径的活化,但顶端TLR9刺激引起独特的应答,其中泛素化的I κ Ba在细胞质中积累,阻止NF-κ B活化。此外,顶端TLR9刺激赋予细胞内耐受随后的TLR挑战。与野生型和TLR 2缺陷小鼠相比,TLR 9缺陷小鼠的IEC显示出较低的NF-κ B激活阈值,这些小鼠对实验性结肠炎高度易感。我们的数据提供了一个器官特异性先天免疫的情况下,TLR表达极化的IEC独特的进化,以维持结肠稳态和调节耐受性和炎症。
The mechanisms by which commensal bacteria suppress inflammatory signalling in the gut are still unclear. Here, we present a cellular mechanism whereby the polarity of intestinal epithelial cells (IECs) has a major role in colonic homeostasis. TLR9 activation through apical and basolateral surface domains have distinct transcriptional responses, evident by NF-kappa B activation and cDNA microarray analysis. Whereas basolateral TLR9 signals I kappa B alpha degradation and activation of the NF-kappa B pathway, apical TLR9 stimulation invokes a unique response in which ubiquitinated I kappa Ba accumulates in the cytoplasm preventing NF-kappa B activation. Furthermore, apical TLR9 stimulation confers intracellular tolerance to subsequent TLR challenges. IECs in TLR9-deficient mice, when compared with wild-type and TLR2-deficient mice, display a lower NF-kappa B activation threshold and these mice are highly susceptible to experimental colitis. Our data provide a case for organ-specific innate immunity in which TLR expression in polarized IECs has uniquely evolved to maintain colonic homeostasis and regulate tolerance and inflammation.