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Structure prediction of honey bee vitellogenin: a multi‐domain protein important for insect immunity

Vitellogenin (Vg) has been implicated as a central protein in the immunity of egg‐laying animals. Studies on a diverse set of species suggest that Vg supports health and longevity through binding to pathogens. Specific studies of honey bees (Apis mellifera) further indicate that the vitellogenin (vg...

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Autores principales: Leipart, Vilde, Montserrat‐Canals, Mateu, Cunha, Eva S., Luecke, Hartmut, Herrero‐Galán, Elías, Halskau, Øyvind, Amdam, Gro V.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8727950/
https://www.ncbi.nlm.nih.gov/pubmed/34665931
http://dx.doi.org/10.1002/2211-5463.13316
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author Leipart, Vilde
Montserrat‐Canals, Mateu
Cunha, Eva S.
Luecke, Hartmut
Herrero‐Galán, Elías
Halskau, Øyvind
Amdam, Gro V.
author_facet Leipart, Vilde
Montserrat‐Canals, Mateu
Cunha, Eva S.
Luecke, Hartmut
Herrero‐Galán, Elías
Halskau, Øyvind
Amdam, Gro V.
author_sort Leipart, Vilde
collection PubMed
description Vitellogenin (Vg) has been implicated as a central protein in the immunity of egg‐laying animals. Studies on a diverse set of species suggest that Vg supports health and longevity through binding to pathogens. Specific studies of honey bees (Apis mellifera) further indicate that the vitellogenin (vg) gene undergoes selection driven by local pathogen pressures. Determining the complete 3D structure of full‐length Vg (flVg) protein will provide insights regarding the structure–function relationships underlying allelic variation. Honey bee Vg has been described in terms of function, and two subdomains have been structurally described, while information about the other domains is lacking. Here, we present a structure prediction, restrained by experimental data, of flVg from honey bees. To achieve this, we performed homology modeling and used AlphaFold before using a negative‐stain electron microscopy map to restrict, orient, and validate our 3D model. Our approach identified a highly conserved Ca(2+)‐ion‐binding site in a von Willebrand factor domain that might be central to Vg function. Thereafter, we used rigid‐body fitting to predict the relative position of high‐resolution domains in a flVg model. This mapping represents the first experimentally validated full‐length protein model of a Vg protein and is thus relevant for understanding Vg in numerous species. Our results are also specifically relevant to honey bee health, which is a topic of global concern due to rapidly declining pollinator numbers.
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spelling pubmed-87279502022-01-11 Structure prediction of honey bee vitellogenin: a multi‐domain protein important for insect immunity Leipart, Vilde Montserrat‐Canals, Mateu Cunha, Eva S. Luecke, Hartmut Herrero‐Galán, Elías Halskau, Øyvind Amdam, Gro V. FEBS Open Bio Research Articles Vitellogenin (Vg) has been implicated as a central protein in the immunity of egg‐laying animals. Studies on a diverse set of species suggest that Vg supports health and longevity through binding to pathogens. Specific studies of honey bees (Apis mellifera) further indicate that the vitellogenin (vg) gene undergoes selection driven by local pathogen pressures. Determining the complete 3D structure of full‐length Vg (flVg) protein will provide insights regarding the structure–function relationships underlying allelic variation. Honey bee Vg has been described in terms of function, and two subdomains have been structurally described, while information about the other domains is lacking. Here, we present a structure prediction, restrained by experimental data, of flVg from honey bees. To achieve this, we performed homology modeling and used AlphaFold before using a negative‐stain electron microscopy map to restrict, orient, and validate our 3D model. Our approach identified a highly conserved Ca(2+)‐ion‐binding site in a von Willebrand factor domain that might be central to Vg function. Thereafter, we used rigid‐body fitting to predict the relative position of high‐resolution domains in a flVg model. This mapping represents the first experimentally validated full‐length protein model of a Vg protein and is thus relevant for understanding Vg in numerous species. Our results are also specifically relevant to honey bee health, which is a topic of global concern due to rapidly declining pollinator numbers. John Wiley and Sons Inc. 2021-10-31 /pmc/articles/PMC8727950/ /pubmed/34665931 http://dx.doi.org/10.1002/2211-5463.13316 Text en © 2021 The Authors. FEBS Open Bio published by John Wiley & Sons Ltd on behalf of Federation of European Biochemical Societies https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Leipart, Vilde
Montserrat‐Canals, Mateu
Cunha, Eva S.
Luecke, Hartmut
Herrero‐Galán, Elías
Halskau, Øyvind
Amdam, Gro V.
Structure prediction of honey bee vitellogenin: a multi‐domain protein important for insect immunity
title Structure prediction of honey bee vitellogenin: a multi‐domain protein important for insect immunity
title_full Structure prediction of honey bee vitellogenin: a multi‐domain protein important for insect immunity
title_fullStr Structure prediction of honey bee vitellogenin: a multi‐domain protein important for insect immunity
title_full_unstemmed Structure prediction of honey bee vitellogenin: a multi‐domain protein important for insect immunity
title_short Structure prediction of honey bee vitellogenin: a multi‐domain protein important for insect immunity
title_sort structure prediction of honey bee vitellogenin: a multi‐domain protein important for insect immunity
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8727950/
https://www.ncbi.nlm.nih.gov/pubmed/34665931
http://dx.doi.org/10.1002/2211-5463.13316
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