Silica Perturbs Primary Cilia and Causes Myofibroblast Differentiation during Silicosis by Reduction of the KIF3A-Repressor GLI3 Complex

二氧化硅通过减少 KIF3A 抑制剂 GLI3 复合物扰乱原发纤毛并在硅肺病期间引起肌成纤维细胞分化

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作者:Shifeng Li, Zhongqiu Wei, Gengxu Li, Qiaodan Zhang, Siyu Niu, Dingjie Xu, Na Mao, Si Chen, Xuemin Gao, Wenchen Cai, Ying Zhu, Guizhen Zhang, Dan Li, Xue Yi, Fang Yang, Hong Xu

Conclusion

Our findings indicate that primary cilia are markedly altered during silicosis and the loss of KIF3A may promote myofibroblast differentiation induced by SiO2.

Methods

Changes in primary cilia during silicosis and myofibroblast differentiation were detected in silicotic patients, experimental silicotic rats, and a myofibroblast differentiation model induced by SiO2. We also explored the mechanisms underlying KIF3A regulation of Glioma-associated oncogene homologs (GLIs) involved in myofibroblast differentiation.

Results

Primary cilia (marked by ARL13B and Ac-α-Tub) and ciliary-related proteins (IFT 88 and KIF3A) were increased initially and then decreased as silicosis progressed. Loss and shedding of primary cilia were also found during silicosis. Treatment of MRC-5 fibroblasts with silica and then transfection of KIF3A-siRNA blocked activation of SHH signalling, but increased GLI2FL as a transcriptional activator of SRF, and reduced the inhibitory effect of GLI3R on ACTA2.

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