应激刺激下气道上皮细胞ITGB4缺陷通过下调HDAC1诱导DNA损伤。

IF 4.5
Kun Xu, Ye Yao, Huijun Liu, Ming Yang, Lin Yuan, Xizi Du, Yu Yang, Ling Qin, Weijie Wang, Kai Zhou, Xinyu Wu, Chi Liu
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引用次数: 1

摘要

背景:外源性干扰物对气道上皮的DNA损伤可引发多种肺部疾病。整合素β 4 (Integrin β 4, ITGB4)是一种结构粘附分子,由于其独特的细胞质结构域亚基,被认为调控气道上皮DNA损伤过程。方法:分别在屋尘螨(HDM)应激模型和臭氧破坏模型中观察ITGB4的表达水平和DNA损伤程度。构建ITGB4条件敲除小鼠和ITGB4缺陷气道上皮细胞,观察ITGB4缺陷对DNA损伤的影响。此外,在应激刺激下测定ITGB4缺乏对气道上皮HDAC1表达的影响。最后,采用相应的干预策略验证itgb4介导的HDAC1通路在气道上皮细胞DNA损伤中的作用。结果:HDM胁迫和臭氧胁迫使ITGB4的表达降低,同时体内外8-oxoG和γ-H2AX的表达升高。此外,在HDM刺激和臭氧胁迫下,气道上皮ITGB4缺乏分别加重了DNA损伤程度。此外,ITGB4缺乏下调了DNA损伤过程中HDAC1的表达,恢复HDAC1可以逆转外源应激后气道上皮细胞DNA损伤的增强。结论:本研究证实了ITGB4通过介导HDAC1参与外源应激下气道上皮细胞DNA损伤的调控。这些结果为了解气道上皮细胞DNA损伤的机制提供了一些有用的见解,为肺部疾病的早期预测和干预提供了可能的靶点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
ITGB4 deficiency induces DNA damage by downregulating HDAC1 in airway epithelial cells under stress stimulation.

Background: DNA damage in airway epithelia under exogenous disruptors can trigger various pulmonary diseases. Integrin beta 4 (ITGB4) is a structural adhesion molecule, which is indicated to regulate the process of DNA damage in airway epithelia for its unique long cytoplasmic domain subunit.

Methods: The expression level of ITGB4 and the degree of DNA damage were observed in the house dust mite (HDM)-stressed model and ozone-challenged model, respectively. Besides, ITGB4 conditional knockout mice and ITGB4-deficient airway epithelial cells were constructed to observe the influence of ITGB4 deficiency on DNA damage. Furthermore, the influence of ITGB4 deficiency on HDAC1 expression in airway epithelia was determined under stress stimulation. Finally, corresponding intervention strategies were carried out to verify the involvement of the ITGB4-mediated HDAC1 pathway in DNA damage of airway epithelial cells.

Results: HDM stress and ozone challenge reduced the expression of ITGB4, which is accompanied by the increased expression of 8-oxoG and γ-H2AX both in vivo and in vitro. Moreover, ITGB4 deficiency in airway epithelia aggravates the degree of DNA damage under HDM stimulation and ozone stress, respectively. Furthermore, ITGB4 deficiency downregulated the expression of HDAC1 during DNA damage, and restoring HDAC1 can reverse the enhanced DNA damage in airway epithelial cells after exogenous stress.

Conclusions: This study confirmed the involvement of ITGB4 in the regulation of DNA damage through mediating HDAC1 in airway epithelial cells under exogenous stress. These results supply some useful insights into the mechanism of DNA damage in airway epithelial cells, which would provide possible targets for early prediction and intervention of pulmonary diseases.

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