Galectin-related protein: An integral member of the network of chicken galectins 1. From strong sequence conservation of the gene confined to vertebrates to biochemical characteristics of the chicken protein and its crystal structure

Endogenous lectins are multifunctional effectors in cell physiology. Adding the sixth member of the galectin family in chicken, a model organism for systematic profiling of these adhesion/growth-regulatory proteins, is a step toward comprehensive network monitoring. Database mining and computational...

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Published inBiochimica et biophysica acta Vol. 1860; no. 10; pp. 2285 - 2297
Main Authors García Caballero, Gabriel, Flores-Ibarra, Andrea, Michalak, Malwina, Khasbiullina, Nailya, Bovin, Nicolai V., André, Sabine, Manning, Joachim C., Vértesy, Sabine, Ruiz, Federico M., Kaltner, Herbert, Kopitz, Jürgen, Romero, Antonio, Gabius, Hans-Joachim
Format Journal Article
LanguageEnglish
Published Netherlands Elsevier B.V 01.10.2016
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ISSN0304-4165
0006-3002
1872-8006
DOI10.1016/j.bbagen.2016.06.001

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Abstract Endogenous lectins are multifunctional effectors in cell physiology. Adding the sixth member of the galectin family in chicken, a model organism for systematic profiling of these adhesion/growth-regulatory proteins, is a step toward comprehensive network monitoring. Database mining and computational data processing are applied for gene detection, chromosomal location and sequence alignments. Cloning, recombinant production and fusion-protein technology gain access to the protein, mass spectrometry and gel electrophoresis/filtration provide analytical data. Haemagglutination, glycan microarray and cell assays assess binding capacity, and crystallography of a shortened variant (also analyzed by ultracentrifugation and small angle X-ray scattering) determines its structure. The gene for the galectin-related protein (GRP) is present exclusively in vertebrates with high-level sequence conservation and similar chromosomal positioning. The chicken protein is monomeric and has lost the canonical galectin property of binding lactose. The crystal structure of the variant without the 36-amino-acid extension at the start provides explanations for this lack of binding. Chicken GRP is special within this family of six proteins by being unable to bind lactose. The documented high degree of sequence conservation among vertebrate orthologues confers the status of a model for delineating an assumedly shared functionality to this GRP. Biochemical characterization of a product of a gene under strong positive selection is a prerequisite for functional characterization. It is also essential for network monitoring by adding a new member to this lectin family. [Display omitted] •Vertebrates have a highly conserved gene for galectin-related protein.•It is the sixth protein of this family in chicken, a model for network analysis.•It lacks canonical capacity to bind lactose.•Its crystal structure explains this loss of activity.
AbstractList Endogenous lectins are multifunctional effectors in cell physiology. Adding the sixth member of the galectin family in chicken, a model organism for systematic profiling of these adhesion/growth-regulatory proteins, is a step toward comprehensive network monitoring.Database mining and computational data processing are applied for gene detection, chromosomal location and sequence alignments. Cloning, recombinant production and fusion-protein technology gain access to the protein, mass spectrometry and gel electrophoresis/filtration provide analytical data. Haemagglutination, glycan microarray and cell assays assess binding capacity, and crystallography of a shortened variant (also analyzed by ultracentrifugation and small angle X-ray scattering) determines its structure.The gene for the galectin-related protein (GRP) is present exclusively in vertebrates with high-level sequence conservation and similar chromosomal positioning. The chicken protein is monomeric and has lost the canonical galectin property of binding lactose. The crystal structure of the variant without the 36-amino-acid extension at the start provides explanations for this lack of binding.Chicken GRP is special within this family of six proteins by being unable to bind lactose. The documented high degree of sequence conservation among vertebrate orthologues confers the status of a model for delineating an assumedly shared functionality to this GRP.Biochemical characterization of a product of a gene under strong positive selection is a prerequisite for functional characterization. It is also essential for network monitoring by adding a new member to this lectin family.
Endogenous lectins are multifunctional effectors in cell physiology. Adding the sixth member of the galectin family in chicken, a model organism for systematic profiling of these adhesion/growth-regulatory proteins, is a step toward comprehensive network monitoring. Database mining and computational data processing are applied for gene detection, chromosomal location and sequence alignments. Cloning, recombinant production and fusion-protein technology gain access to the protein, mass spectrometry and gel electrophoresis/filtration provide analytical data. Haemagglutination, glycan microarray and cell assays assess binding capacity, and crystallography of a shortened variant (also analyzed by ultracentrifugation and small angle X-ray scattering) determines its structure. The gene for the galectin-related protein (GRP) is present exclusively in vertebrates with high-level sequence conservation and similar chromosomal positioning. The chicken protein is monomeric and has lost the canonical galectin property of binding lactose. The crystal structure of the variant without the 36-amino-acid extension at the start provides explanations for this lack of binding. Chicken GRP is special within this family of six proteins by being unable to bind lactose. The documented high degree of sequence conservation among vertebrate orthologues confers the status of a model for delineating an assumedly shared functionality to this GRP. Biochemical characterization of a product of a gene under strong positive selection is a prerequisite for functional characterization. It is also essential for network monitoring by adding a new member to this lectin family. [Display omitted] •Vertebrates have a highly conserved gene for galectin-related protein.•It is the sixth protein of this family in chicken, a model for network analysis.•It lacks canonical capacity to bind lactose.•Its crystal structure explains this loss of activity.
Author André, Sabine
Kaltner, Herbert
García Caballero, Gabriel
Gabius, Hans-Joachim
Khasbiullina, Nailya
Vértesy, Sabine
Manning, Joachim C.
Romero, Antonio
Kopitz, Jürgen
Bovin, Nicolai V.
Michalak, Malwina
Flores-Ibarra, Andrea
Ruiz, Federico M.
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Issue 10
Keywords Lectin
Phylogenesis
Proliferation
Adhesion
Crystallography
Language English
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Snippet Endogenous lectins are multifunctional effectors in cell physiology. Adding the sixth member of the galectin family in chicken, a model organism for systematic...
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SubjectTerms Adhesion
Animals
binding capacity
cell physiology
chickens
Chickens - genetics
Conserved Sequence - genetics
crystal proteins
crystal structure
Crystallography
Crystallography, X-Ray
filtration
Galectin 1 - chemistry
Galectin 1 - genetics
Galectin 1 - metabolism
gel electrophoresis
genes
germplasm conservation
hemagglutination
Humans
lactose
Lectin
lectins
mass spectrometry
microarray technology
monitoring
Multigene Family - genetics
Phylogenesis
Phylogeny
Proliferation
Protein Conformation
sequence alignment
ultracentrifugation
Vertebrates - genetics
X-radiation
Title Galectin-related protein: An integral member of the network of chicken galectins 1. From strong sequence conservation of the gene confined to vertebrates to biochemical characteristics of the chicken protein and its crystal structure
URI https://dx.doi.org/10.1016/j.bbagen.2016.06.001
https://www.ncbi.nlm.nih.gov/pubmed/27268118
https://www.proquest.com/docview/1807279447
https://www.proquest.com/docview/1825430664
https://pubmed.ncbi.nlm.nih.gov/PMC7127388
Volume 1860
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