Article

Convergent syntheses of Le<sup>X</sup> analogues

Beilstein Journal of Organic Chemistry 01/2010; DOI:http://www.doaj.org/doaj?func=openurl&genre=article&issn=18605397&date=2010&volume=6&issue=1&spage=17
Source: DOAJ

ABSTRACT The synthesis of three Lex derivatives from one common protected trisaccharide is reported. These analogues will be used respectively for competitive binding experiments, conjugation to carrier proteins and immobilization on gold. An N-acetylglucosamine monosaccharide acceptor was first glycosylated at O-4 with a galactosyl imidate. This coupling was performed at 40 °C under excess of BF3·OEt2 activation and proceeded best if the acceptor carried a 6-chlorohexyl rather than a 6-azidohexyl aglycon. The 6-chlorohexyl disaccharide was then converted to an acceptor and submitted to fucosylation yielding the corresponding protected 6-chlorohexyl Lex trisaccharide. This protected trisaccharide was used as a precursor to the 6-azidohexyl, 6-acetylthiohexyl and 6-benzylthiohexyl trisaccharide analogues which were obtained in excellent yields (70–95%). In turn, we describe the deprotection of these intermediates in one single step using dissolving metal conditions. Under these conditions, the 6-chlorohexyl and 6-azidohexyl intermediates led respectively to the n-hexyl and 6-aminohexyl trisaccharide targets. Unexpectedly, the 6-acetylthiohexyl analogue underwent desulfurization and gave the n-hexyl glycoside product, whereas the 6-benzylthiohexyl analogue gave the desired disulfide trisaccharide dimer. This study constitutes a particularly efficient and convergent preparation of these three Lex analogues.

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Keywords

6-azidohexyl
 
6-azidohexyl aglycon
 
6-azidohexyl intermediates
 
6-chlorohexyl
 
6-chlorohexyl disaccharide
 
6-chlorohexyl Lex trisaccharide
 
BF3·OEt2 activation
 
carrier proteins
 
common
 
competitive binding experiments
 
conjugation
 
convergent preparation
 
desired disulfide trisaccharide dimer
 
desulfurization
 
dissolving metal conditions
 
fucosylation
 
immobilization
 
N-acetylglucosamine monosaccharide acceptor
 
n-hexyl glycoside product
 
single step