Developmental regulation of oligosialylation in zebrafish

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Chang, Lan-Yi | Harduin-Lepers, Anne | Kitajima, Ken | Sato, Chihiro | Huang, C., J. | Khoo, Kay-Hooi | Guerardel, Yann

Edité par CCSD ; Springer Verlag -

International audience. Zebrafish appears as a relevant model for the functional study of glycoconjugates along vertebrate's development. Indeed, as a prelude to such studies, we have previously identified a vast array of potentially stage-specific glycoconjugates, which structures are reminiscent of glycosylation pathways common to all vertebrates. In the present study, we have focused on the identification and regulation of major protein and lipids associated α2-8-linked oligosialic acids motifs in the early development of zebrafish. By a combination of partial hydrolysis, anion exchange HPLC-FD and mass spectrometry, we demonstrated that glycoproteins and glycolipids differed by the extent and the nature of their substituting oligosialylated sequences. Furthermore, relative quantifications showed that α2-8-linked sialylation was differentially regulated in both families of glycoconjugates along development. Accordingly, we established that α2,8-sialyltransferase mRNA levels was directly correlated with changes of α2,8-sialylation status of glycolipids, but independent of those observed on major glycoproteins that appear to originate from the mother.

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