Fam20c regulates the calpain proteolysis system through phosphorylating Calpasatatin to maintain cell homeostasis

Fam20c 通过磷酸化钙蛋白酶水解系统来维持细胞稳态

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作者:Xinpeng Liu #, Lili Jiang #, Wenxuan Zhang #, Jiahui Zhang, Xinrui Luan, Yuanbo Zhan, Tuo Wang, Junlong Da, Lixue Liu, Shujian Zhang, Yuyao Guo, Kai Zhang, Zhiping Wang, Nan Miao, Xiaohua Xie, Peihong Liu, Ying Li, Han Jin, Bin Zhang

Background

The family with sequence similarity 20-member C (FAM20C) kinase, a Golgi casein kinase, which is responsible for phosphorylating the majority of the extracellular phosphoproteins within S-x-E/pS motifs, and is fundamentally associated with multiple biological processes to maintain cell proliferation, biomineralization, migration, adhesion, and phosphate homeostasis. In dissecting how FAM20C regulates downstream molecules and potential mechanisms, however, there are multiple target molecules of FAM20C, particularly many phenomena remain elusive, such as changes in cell-autonomous behaviors, incompatibility in genotypes and phenotypes, and others.

Conclusion

These observations implied that Fam20c knockout osteoblasts would cause cell homeostatic imbalance, involving changes in multiple signaling pathways in the conduction system.

Methods

Here, assay for transposase-accessible chromatin using sequencing (ATAC-seq), RNA sequencing (RNA-seq), proteomics, and phosphoproteomics were performed in Fam20c-dificient osteoblasts and to facilitate an integrated analysis and determine the impact of chromatin accessibility, genomic expression, protein alterations, signaling pathway, and post translational modifcations.

Results

By combining ATAC-seq and RNA-seq, we identified TCF4 and Wnt signaling pathway as the key regulators in Fam20c-dificient cells. Further, we showed Calpastatin/Calpain proteolysis system as a novel target axis for FAM20C to regulate cell migration and F-actin cytoskeleton by integrated analysis of proteomics and phosphoproteomics. Furthermore, Calpastatin/Calpain proteolysis system could negatively regulate the Wnt signaling pathway.

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