[No authors listed]
Râspondin2 (Rspo2), one of the four members of the Râspondin family of proteins, has agonistic activity in the Wnt/βâcatenin signaling pathway, and it is associated with normal development, as well as disease, such as cancer. The present study focused on the Câmannosylation of Rspo2, which is a novel and unique type of glycosylation that occurs via a CâC linkage between the tryptophan residue and an αâmannose. Although Rspo2 has two putative Câmannosylation sites at residues Trp150 and Trp153, it had not been reported to date whether these sites are Câmannosylated. Firstly, results from mass spectrometry demonstrated that Rspo2 was Câmannosylated at the Trp150 and Trp153 residues. Notably, while this Câmannosylation of Rspo2 resulted in increased extracellular secretion in human fibrosarcoma HT1080 cells, in other human tumor cell lines it inhibited secretion. However, Câmannosylation had consistent effects on the activation of Wnt/βâcatenin signaling in PANC1 and MDAâMBâ231 cells, as well as HT1080 cells. Furthermore, overexpression of wildâtype Rspo2 significantly increased the migratory ability of A549 and HT1080 cells, whereas overexpression of a Câmannosylationâdefective mutant enhanced migration to a lesser degree. These results suggested that Câmannosylation of Rspo2 may promote cancer progression and that the inhibition of Câmannosylation may serve as a potential novel therapeutic approach for cancer therapy.
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