TY - JOUR
T1 - High affinity sugar ligands of C-type lectin receptor langerin
AU - Ota, Fumi
AU - Hirayama, Tetsuya
AU - Kizuka, Yasuhiko
AU - Yamaguchi, Yoshiki
AU - Fujinawa, Reiko
AU - Nagata, Masahiro
AU - Ismanto, Hendra S.
AU - Lepenies, Bernd
AU - Aretz, Jonas
AU - Rademacher, Christoph
AU - Seeberger, Peter H.
AU - Angata, Takashi
AU - Kitazume, Shinobu
AU - Yoshida, Keiichi
AU - Betsuyaku, Tomoko
AU - Kida, Kozui
AU - Yamasaki, Sho
AU - Taniguchi, Naoyuki
N1 - Funding Information:
This work was partially supported by the Program for Promotion of Fundamental Studies in Health Science of the National Institute of Biomedical Innovation (NIBIO), The Japan Society for the Promotion of Science (Grant-in-Aid for Challenging Exploratory Research to NT [grant number 15K14481], Grant-in-Aid for Scientific Research (B) to NT [grant number 15H04700], Grant-in-Aid for Scientific Research (C) to YK [grant number 17K07356]), and the program for the RIKEN-Max Planck joint research.
Funding Information:
This work was partially supported by the Program for Promotion of Fundamental Studies in Health Science of the National Institute of Biomedical Innovation (NIBIO), The Japan Society for the Promotion of Science (Grant-in-Aid for Challenging Exploratory Research to NT [grant number 15K14481 ], Grant-in-Aid for Scientific Research (B) to NT [grant number 15H04700 ], Grant-in-Aid for Scientific Research (C) to YK [grant number 17K07356 ]), and the program for the RIKEN-Max Planck joint research.
Publisher Copyright:
© 2018 Elsevier B.V.
PY - 2018/7
Y1 - 2018/7
N2 - Background: Langerin, a C-type lectin receptor (CLR) expressed in a subset of dendritic cells (DCs), binds to glycan ligands for pathogen capture and clearance. Previous studies revealed that langerin has an unusual binding affinity toward 6-sulfated galactose (Gal), a structure primarily found in keratan sulfate (KS). However, details and biological outcomes of this interaction have not been characterized. Based on a recent discovery that the disaccharide L4, a KS component that contains 6-sulfo-Gal, exhibits anti-inflammatory activity in mouse lung, we hypothesized that L4-related compounds are useful tools for characterizing the langerin-ligand interactions and their therapeutic application. Methods: We performed binding analysis between purified long and short forms of langerin and a series of KS disaccharide components. We also chemically synthesized oligomeric derivatives of L4 to develop a new high-affinity ligand of langerin. Results: We show that the binding critically requires the 6-sulfation of Gal and that the long form of langerin displays higher affinity than the short form. The synthesized trimeric (also designated as triangle or Tri) and polymeric (pendant) L4 derivatives displayed over 1000-fold higher affinity toward langerin than monomeric L4. The pendant L4, but not the L4 monomer, was found to effectively transduce langerin signaling in a model cell system. Conclusions: L4 is a specific ligand for langerin. Oligomerization of L4 unit increased the affinity toward langerin. General significance: These results suggest that oligomeric L4 derivatives will be useful for clarifying the langerin functions and for the development of new glycan-based anti-inflammatory drugs.
AB - Background: Langerin, a C-type lectin receptor (CLR) expressed in a subset of dendritic cells (DCs), binds to glycan ligands for pathogen capture and clearance. Previous studies revealed that langerin has an unusual binding affinity toward 6-sulfated galactose (Gal), a structure primarily found in keratan sulfate (KS). However, details and biological outcomes of this interaction have not been characterized. Based on a recent discovery that the disaccharide L4, a KS component that contains 6-sulfo-Gal, exhibits anti-inflammatory activity in mouse lung, we hypothesized that L4-related compounds are useful tools for characterizing the langerin-ligand interactions and their therapeutic application. Methods: We performed binding analysis between purified long and short forms of langerin and a series of KS disaccharide components. We also chemically synthesized oligomeric derivatives of L4 to develop a new high-affinity ligand of langerin. Results: We show that the binding critically requires the 6-sulfation of Gal and that the long form of langerin displays higher affinity than the short form. The synthesized trimeric (also designated as triangle or Tri) and polymeric (pendant) L4 derivatives displayed over 1000-fold higher affinity toward langerin than monomeric L4. The pendant L4, but not the L4 monomer, was found to effectively transduce langerin signaling in a model cell system. Conclusions: L4 is a specific ligand for langerin. Oligomerization of L4 unit increased the affinity toward langerin. General significance: These results suggest that oligomeric L4 derivatives will be useful for clarifying the langerin functions and for the development of new glycan-based anti-inflammatory drugs.
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U2 - 10.1016/j.bbagen.2018.04.004
DO - 10.1016/j.bbagen.2018.04.004
M3 - Article
AN - SCOPUS:85045338084
SN - 0304-4165
VL - 1862
SP - 1592
EP - 1601
JO - Biochimica et Biophysica Acta - General Subjects
JF - Biochimica et Biophysica Acta - General Subjects
IS - 7
ER -