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机械刺激激活 Piezo1 促进杯状细胞黏蛋白 2 的表达。

Mechanical stimulation activates Piezo1 to promote mucin2 expression in goblet cells.

机构信息

Department of Gastroenterology, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, China.

出版信息

J Gastroenterol Hepatol. 2021 Nov;36(11):3127-3139. doi: 10.1111/jgh.15596. Epub 2021 Jul 6.

Abstract

BACKGROUND AND AIM

Studies on the regulation of mucin2 expression in intestinal goblet cells by the endocrine system and the immune system have been comprehensive, but the effects of abundant mechanical factors in the intestinal microenvironment on goblet cells are not clear.

METHODS

We constructed mechanical stimulation models in vivo and in vitro to explore the effect of mechanical stimulation on intestinal goblet cells. Piezo1 expression and function were regulated through model mouse and drugs to explored whether Piezo1 mediated mechanical stimulation.

RESULTS

The results showed that hydrostatic pressure could promote mucus secretion in the mouse colon, and both traction force and shear force could promote the expression of mucin2 in the LS174T cell line. We further found that the Piezo1 protein, which was abundantly expressed in goblet cells, acted as a mechanoreceptor. Knockout of Piezo1 in the intestinal epithelial cells of mice could reduce the promotion of mucus secretion by pressure stimulation, and the specific downregulation of Piezo1 protein in LS174T cells or Piezo1 inhibitor treatment could significantly reduce the promotion of mucin2 expression in goblet cells by mechanical stimulation; however, treatment with a Piezo1 agonist had the opposite effect. Moreover, we found that Piezo1 regulated mucin2 expression through the downstream Erk/Ca pathway.

CONCLUSION

In short, our study confirmed for the first time that goblet cells are mechanoreceptive cells that can directly sense mechanical stimulation in the intestinal tract and respond back through the Piezo1-Erk/Ca -mucin2 pathway.

摘要

背景与目的

关于内分泌系统和免疫系统对肠杯状细胞黏蛋白 2 表达的调控作用的研究已经较为全面,但肠道微环境中丰富的机械因素对杯状细胞的影响尚不清楚。

方法

我们构建了体内和体外的机械刺激模型,以探讨机械刺激对肠杯状细胞的影响。通过模型小鼠和药物调节 Piezo1 的表达和功能,探讨 Piezo1 是否介导机械刺激。

结果

结果表明,静水压力可促进小鼠结肠中的黏液分泌,牵拉力和切应力均可促进 LS174T 细胞系中黏蛋白 2 的表达。我们进一步发现,Piezo1 蛋白在杯状细胞中大量表达,作为机械感受器。敲除小鼠肠上皮细胞中的 Piezo1 可减少压力刺激引起的黏液分泌增加,LS174T 细胞中 Piezo1 蛋白的特异性下调或 Piezo1 抑制剂处理可显著减少机械刺激引起的黏蛋白 2 表达增加;然而,Piezo1 激动剂的作用则相反。此外,我们发现 Piezo1 通过下游的 Erk/Ca 通路调节黏蛋白 2 的表达。

结论

总之,本研究首次证实,杯状细胞是能够直接感受肠道内机械刺激的机械感受细胞,并通过 Piezo1-Erk/Ca -黏蛋白 2 通路作出反应。

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