| Literature DB >> 27775350 |
Masahiro Nagasaki1, Yoshiyuki Manabe1, Naoya Minamoto1, Katsunori Tanaka1,2, Alba Silipo3, Antonio Molinaro1,3, Koichi Fukase1.
Abstract
A chemical synthesis of a core fucose containing N-glycan was achieved. Asparagine was introduced at an early stage of the synthesis, and the sugar chain was convergently elongated. As for the fragment synthesis, we reinvestigated α-sialylation, β-mannosylation, and N-glycosylation to reveal that precise temperature control was essential for these glycosylations. Intermolecular hydrogen bonds involving acetamide groups were found to reduce the reactivity in glycosylations: the protection of NHAc as NAc2 dramatically improved the reactivity. The dodecasaccharide-asparagine framework was constructed via the (4 + 4) glycosylation and the (4 + 8) glycosylation using the tetrasaccharide donor and the tetrasaccharide-asparagine acceptor. An ether-type solvent enhanced the yields of these key glycosylations between large substrates. After the whole deprotection of the dodecasaccharide, the target N-glycan was obtained.Entities:
Year: 2016 PMID: 27775350 DOI: 10.1021/acs.joc.6b02106
Source DB: PubMed Journal: J Org Chem ISSN: 0022-3263 Impact factor: 4.354