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Structural Characterisation of Ligand-Binding Determinants in Human Lung Surfactant Protein D: Influence of Asp325

The crystal structures of a biologically and therapeutically active recombinant homotrimeric fragment of human lung surfactant protein D with a series of bound ligands have been determined. While the structures reveal various different binding modes, all utilise a similarly positioned pair of mannos...

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Autores principales: Shrive, A.K., Martin, C., Burns, I., Paterson, J.M., Martin, J.D., Townsend, J.P., Waters, P., Clark, H.W., Kishore, U., Reid, K.B.M., Greenhough, T.J.
Formato: Texto
Lenguaje:English
Publicado: Elsevier 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2791854/
https://www.ncbi.nlm.nih.gov/pubmed/19799916
http://dx.doi.org/10.1016/j.jmb.2009.09.057
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author Shrive, A.K.
Martin, C.
Burns, I.
Paterson, J.M.
Martin, J.D.
Townsend, J.P.
Waters, P.
Clark, H.W.
Kishore, U.
Reid, K.B.M.
Greenhough, T.J.
author_facet Shrive, A.K.
Martin, C.
Burns, I.
Paterson, J.M.
Martin, J.D.
Townsend, J.P.
Waters, P.
Clark, H.W.
Kishore, U.
Reid, K.B.M.
Greenhough, T.J.
author_sort Shrive, A.K.
collection PubMed
description The crystal structures of a biologically and therapeutically active recombinant homotrimeric fragment of human lung surfactant protein D with a series of bound ligands have been determined. While the structures reveal various different binding modes, all utilise a similarly positioned pair of mannose-type O3′ and O4′ hydroxyls with no direct interaction between any non-terminal sugar and protein. The orientation, position, and interactions of the bound terminal sugar depend on the sugar itself, the presence and form of glycosidic linkage, and the environment in the crystal, which, via Asp325, places stereochemical and electronic constraints, different for the three different subunits in the homotrimer, on the ligand-binding site. As a direct consequence of this influence, the other binding-pocket flanking residue, Arg343, exhibits variable conformation and variable interactions with bound ligand and leaves open to question which orientation of terminal mannobiose, and of other terminal disaccharides, may be present in extended physiological ligands. The combined structural evidence shows that there is significant flexibility in recognition; that Asp325, in addition to Arg343, is an important determinant of ligand selectivity, recognition, and binding; and that differences in crystal contact interfaces exert, through Asp325, significant influence on preferred binding modes.
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spelling pubmed-27918542009-12-22 Structural Characterisation of Ligand-Binding Determinants in Human Lung Surfactant Protein D: Influence of Asp325 Shrive, A.K. Martin, C. Burns, I. Paterson, J.M. Martin, J.D. Townsend, J.P. Waters, P. Clark, H.W. Kishore, U. Reid, K.B.M. Greenhough, T.J. J Mol Biol Article The crystal structures of a biologically and therapeutically active recombinant homotrimeric fragment of human lung surfactant protein D with a series of bound ligands have been determined. While the structures reveal various different binding modes, all utilise a similarly positioned pair of mannose-type O3′ and O4′ hydroxyls with no direct interaction between any non-terminal sugar and protein. The orientation, position, and interactions of the bound terminal sugar depend on the sugar itself, the presence and form of glycosidic linkage, and the environment in the crystal, which, via Asp325, places stereochemical and electronic constraints, different for the three different subunits in the homotrimer, on the ligand-binding site. As a direct consequence of this influence, the other binding-pocket flanking residue, Arg343, exhibits variable conformation and variable interactions with bound ligand and leaves open to question which orientation of terminal mannobiose, and of other terminal disaccharides, may be present in extended physiological ligands. The combined structural evidence shows that there is significant flexibility in recognition; that Asp325, in addition to Arg343, is an important determinant of ligand selectivity, recognition, and binding; and that differences in crystal contact interfaces exert, through Asp325, significant influence on preferred binding modes. Elsevier 2009-12-11 /pmc/articles/PMC2791854/ /pubmed/19799916 http://dx.doi.org/10.1016/j.jmb.2009.09.057 Text en © 2009 Elsevier Ltd. https://creativecommons.org/licenses/by/3.0/ Open Access under CC BY 3.0 (https://creativecommons.org/licenses/by/3.0/) license
spellingShingle Article
Shrive, A.K.
Martin, C.
Burns, I.
Paterson, J.M.
Martin, J.D.
Townsend, J.P.
Waters, P.
Clark, H.W.
Kishore, U.
Reid, K.B.M.
Greenhough, T.J.
Structural Characterisation of Ligand-Binding Determinants in Human Lung Surfactant Protein D: Influence of Asp325
title Structural Characterisation of Ligand-Binding Determinants in Human Lung Surfactant Protein D: Influence of Asp325
title_full Structural Characterisation of Ligand-Binding Determinants in Human Lung Surfactant Protein D: Influence of Asp325
title_fullStr Structural Characterisation of Ligand-Binding Determinants in Human Lung Surfactant Protein D: Influence of Asp325
title_full_unstemmed Structural Characterisation of Ligand-Binding Determinants in Human Lung Surfactant Protein D: Influence of Asp325
title_short Structural Characterisation of Ligand-Binding Determinants in Human Lung Surfactant Protein D: Influence of Asp325
title_sort structural characterisation of ligand-binding determinants in human lung surfactant protein d: influence of asp325
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2791854/
https://www.ncbi.nlm.nih.gov/pubmed/19799916
http://dx.doi.org/10.1016/j.jmb.2009.09.057
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