Dupuy Fabrice, Germot Agnès, Julien Raymond, Maftah Abderrahman
Unité de Génétique Moléculaire Animale, UMR 1061 Université-INRA, GDR-CNRS 2590, Institut des Sciences de la Vie et de la Santé, Faculté des Sciences et Techniques, 87060 Limoges, France.
Glycobiology. 2004 Apr;14(4):347-56. doi: 10.1093/glycob/cwh053. Epub 2004 Jan 12.
All vertebrate alpha3- and alpha3/4-FUTs possess the characteristic acceptor-binding motif VxxHH(W/R)(D/E). FUT6 and FUTb enzymes, harboring R in the acceptor-binding motif, transfer fucose in alpha1,3 linkage, whereas FUT3 and FUT5 enzymes with W at the candidate position can also transfer fucose in alpha1,4 linkage-FUT3 being more efficient than FUT5. To determine the involvement of the W/R residue in acceptor recognition, we produced 34 variants of human FUT3, FUT5, FUT6, and ox FUTb Lewis enzymes. Among the FUT3 variants where W(111) was replaced by the other amino acids, only enzymes with an aromatic residue at the candidate position kept about 50% of alpha1,4 activity and showed no changes in K(m) values for GDP-Fuc donor and H-type 1 acceptor substrates. All other substitutions produced enzymes with less than 20% of the alpha1,4 activity. Thus the ability of alpha3/4-FUTs to recognize type 1 substrates involves the aromatic character of W in the acceptor-binding domain. The alpha1,3 activity of FUT6 and FUTb significantly decreased when their R residue was substituted by basic or charged residues. Moreover, FUT3 and FUT5 variants with W-->R substitution had a better affinity for H-type 2 substrate and higher alpha1,3 activities. Therefore the optimal fucose addition in alpha1,3 linkage requires the R residue in the acceptor-binding motif of Lewis FUTs.
所有脊椎动物的α3 - 和α3/4 - 岩藻糖基转移酶(FUTs)都具有特征性的受体结合基序VxxHH(W/R)(D/E)。FUT6和FUTb酶在受体结合基序中含有R,以α1,3连接方式转移岩藻糖,而在候选位置含有W的FUT3和FUT5酶也能以α1,4连接方式转移岩藻糖——FUT3比FUT5更高效。为了确定W/R残基在受体识别中的作用,我们制备了人FUT3、FUT5、FUT6和牛FUTb Lewis酶的34种变体。在W(111)被其他氨基酸取代的FUT3变体中,只有在候选位置具有芳香族残基的酶保留了约50%的α1,4活性,并且对于GDP - Fuc供体和H - 1型受体底物的K(m)值没有变化。所有其他取代产生的酶的α1,4活性均低于20%。因此,α3/4 - FUTs识别1型底物的能力涉及受体结合域中W的芳香族特性。当FUT6和FUTb的R残基被碱性或带电荷残基取代时,它们的α1,3活性显著降低。此外,W→R取代的FUT3和FUT5变体对H - 2型底物具有更好的亲和力和更高的α1,3活性。因此,α1,3连接中最佳的岩藻糖添加需要Lewis FUTs受体结合基序中的R残基。