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Analysis of the sugar‐binding specificity of mannose‐binding‐type Jacalin‐related lectins by frontal affinity chromatography – an approach to functional classification
Author(s) -
NakamuraTsuruta Sachiko,
Uchiyama Noboru,
Peumans Willy J.,
Van Damme Els J. M.,
Totani Kiichiro,
Ito Yukishige,
Hirabayashi Jun
Publication year - 2008
Publication title -
the febs journal
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.981
H-Index - 204
eISSN - 1742-4658
pISSN - 1742-464X
DOI - 10.1111/j.1742-4658.2008.06282.x
Subject(s) - jacalin , biology , moraceae , botany , convolvulaceae , convolvulus , sambucus nigra , sugar , lectin , biochemistry , weed
The Jacalin‐related lectin (JRL) family comprises galactose‐binding‐type (gJRLs) and mannose‐binding‐type (mJRLs) lectins. Although the documented occurrence of gJRLs is confined to the family Moraceae, mJRLs are widespread in the plant kingdom. A detailed comparison of sugar‐binding specificity was made by frontal affinity chromatography to corroborate the structure–function relationships of the extended mJRL subfamily. Eight mJRLs covering a broad taxonomic range were used: Artocarpin from Artocarpus integrifolia (jackfruit, Moraceae), BanLec from Musa acuminata (banana, Musaceae), Calsepa from Calystegia sepium (hedge bindweed, Convolvulaceae), CCA from Castanea crenata (Japanese chestnut, Fagaceae), Conarva from Convolvulus arvensis (bindweed, Convolvulaceae), CRLL from Cycas revoluta (King Sago palm tree, Cycadaceae), Heltuba from Helianthus tuberosus (Jerusalem artichoke, Asteraceae) and MornigaM from Morus nigra (black mulberry, Moraceae). The result using 103 pyridylaminated glycans clearly divided the mJRLs into two major groups, each of which was further divided into two subgroups based on the preference for high‐mannose‐type N‐glycans. This criterion also applied to the binding preference for complex‐type N‐glycans. Notably, the result of cluster analysis of the amino acid sequences clearly corresponded to the above specificity classification. Thus, marked correlation between the sugar‐binding specificity of mJRLs and their phylogeny should shed light on the functional significance of JRLs.

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