| Literature DB >> 26867733 |
Michiko Shimokawa1, Tomokazu Haraguchi1, Yuji Minami1, Fumio Yagi2, Keiko Hiemori3, Hiroaki Tateno3, Jun Hirabayashi3.
Abstract
Cycas revoluta leaf lectin (CRLL) of mannose-recognizing jacalin-related lectin (mJRL) has two tandem repeated carbohydrate recognition domains, and shows the characteristic sugar-binding specificity toward high mannose-glycans, compared with other mJRLs. We expressed the N-terminal domain and C-terminal domain (CRLL-N and CRLL-C) separately, to determine the fine sugar-binding specificity of each domain, using frontal affinity chromatography, glycan array and equilibrium dialysis. The specificity of CRLL toward high mannose was basically derived from CRLL-N, whereas CRLL-C had affinity for α1-6 extended mono-antennary complex-type glycans. Notably, the affinity of CRLL-N was most potent to one of three Man 8 glycans and Man 9 glycan, whereas the affinity of CRLL-C decreased with the increase in the number of extended α1-2 linked mannose residue. The recognition of the Man 8 glycans by CRLL-N has not been found for other mannose recognizing lectins. Glycan array reflected these specificities of the two domains. Furthermore, it was revealed by equilibrium dialysis method that the each domain had two sugar-binding sites, similar with Banlec, banana mannose-binding Jacalin-related lectin.Entities:
Keywords: Cycas revoluta; Jacalin-related lectin; frontal affinity chromatography; glycan array; high-mannose glycan
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Year: 2016 PMID: 26867733 DOI: 10.1093/jb/mvw011
Source DB: PubMed Journal: J Biochem ISSN: 0021-924X Impact factor: 3.387