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The N-terminal domain of a tick evasin is critical for chemokine binding and neutralization and confers specific binding activity to other evasins
Tick chemokine-binding proteins (evasins) are an emerging class of biologicals that target multiple chemokines and show anti-inflammatory activities in preclinical disease models. Using yeast surface display, we identified a CCL8-binding evasin, P672, from the tick Rhipicephalus pulchellus. We found...
Autores principales: | , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
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American Society for Biochemistry and Molecular Biology
2018
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5912465/ https://www.ncbi.nlm.nih.gov/pubmed/29487134 http://dx.doi.org/10.1074/jbc.RA117.000487 |
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author | Eaton, James R. O. Alenazi, Yara Singh, Kamayani Davies, Graham Geis-Asteggiante, Lucia Kessler, Benedikt Robinson, Carol V. Kawamura, Akane Bhattacharya, Shoumo |
author_facet | Eaton, James R. O. Alenazi, Yara Singh, Kamayani Davies, Graham Geis-Asteggiante, Lucia Kessler, Benedikt Robinson, Carol V. Kawamura, Akane Bhattacharya, Shoumo |
author_sort | Eaton, James R. O. |
collection | PubMed |
description | Tick chemokine-binding proteins (evasins) are an emerging class of biologicals that target multiple chemokines and show anti-inflammatory activities in preclinical disease models. Using yeast surface display, we identified a CCL8-binding evasin, P672, from the tick Rhipicephalus pulchellus. We found that P672 binds CCL8 and eight other CC-class chemokines with a K(d) < 10 nm and four other CC chemokines with a K(d) between 10 and 100 nm and neutralizes CCL3, CCL3L1, and CCL8 with an IC(50) < 10 nm. The CC chemokine–binding profile was distinct from that of evasin 1 (EVA1), which does not bind CCL8. We also show that P672's binding activity can be markedly modulated by the location of a StrepII-His purification tag. Combining native MS and bottom-up proteomics, we further demonstrated that P672 is glycosylated and forms a 1:1 complex with CCL8, disrupting CCL8 homodimerization. Homology modeling of P672 using the crystal structure of the EVA1 and CCL3 complex as template suggested that 44 N-terminal residues of P672 form most of the contacts with CCL8. Replacing the 29 N-terminal residues of EVA1 with the 44 N-terminal residues of P672 enabled this hybrid evasin to bind and neutralize CCL8, indicating that the CCL8-binding properties of P672 reside, in part, in its N-terminal residues. This study shows that the function of certain tick evasins can be manipulated simply by adding a tag. We conclude that homology modeling helps identify regions with transportable chemokine-binding functions within evasins, which can be used to construct hybrid evasins with altered properties. |
format | Online Article Text |
id | pubmed-5912465 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2018 |
publisher | American Society for Biochemistry and Molecular Biology |
record_format | MEDLINE/PubMed |
spelling | pubmed-59124652018-04-24 The N-terminal domain of a tick evasin is critical for chemokine binding and neutralization and confers specific binding activity to other evasins Eaton, James R. O. Alenazi, Yara Singh, Kamayani Davies, Graham Geis-Asteggiante, Lucia Kessler, Benedikt Robinson, Carol V. Kawamura, Akane Bhattacharya, Shoumo J Biol Chem Immunology Tick chemokine-binding proteins (evasins) are an emerging class of biologicals that target multiple chemokines and show anti-inflammatory activities in preclinical disease models. Using yeast surface display, we identified a CCL8-binding evasin, P672, from the tick Rhipicephalus pulchellus. We found that P672 binds CCL8 and eight other CC-class chemokines with a K(d) < 10 nm and four other CC chemokines with a K(d) between 10 and 100 nm and neutralizes CCL3, CCL3L1, and CCL8 with an IC(50) < 10 nm. The CC chemokine–binding profile was distinct from that of evasin 1 (EVA1), which does not bind CCL8. We also show that P672's binding activity can be markedly modulated by the location of a StrepII-His purification tag. Combining native MS and bottom-up proteomics, we further demonstrated that P672 is glycosylated and forms a 1:1 complex with CCL8, disrupting CCL8 homodimerization. Homology modeling of P672 using the crystal structure of the EVA1 and CCL3 complex as template suggested that 44 N-terminal residues of P672 form most of the contacts with CCL8. Replacing the 29 N-terminal residues of EVA1 with the 44 N-terminal residues of P672 enabled this hybrid evasin to bind and neutralize CCL8, indicating that the CCL8-binding properties of P672 reside, in part, in its N-terminal residues. This study shows that the function of certain tick evasins can be manipulated simply by adding a tag. We conclude that homology modeling helps identify regions with transportable chemokine-binding functions within evasins, which can be used to construct hybrid evasins with altered properties. American Society for Biochemistry and Molecular Biology 2018-04-20 2018-02-27 /pmc/articles/PMC5912465/ /pubmed/29487134 http://dx.doi.org/10.1074/jbc.RA117.000487 Text en © 2018 by The American Society for Biochemistry and Molecular Biology, Inc. Author's Choice—Final version free via Creative Commons CC-BY license (http://creativecommons.org/licenses/by/4.0) . |
spellingShingle | Immunology Eaton, James R. O. Alenazi, Yara Singh, Kamayani Davies, Graham Geis-Asteggiante, Lucia Kessler, Benedikt Robinson, Carol V. Kawamura, Akane Bhattacharya, Shoumo The N-terminal domain of a tick evasin is critical for chemokine binding and neutralization and confers specific binding activity to other evasins |
title | The N-terminal domain of a tick evasin is critical for chemokine binding and neutralization and confers specific binding activity to other evasins |
title_full | The N-terminal domain of a tick evasin is critical for chemokine binding and neutralization and confers specific binding activity to other evasins |
title_fullStr | The N-terminal domain of a tick evasin is critical for chemokine binding and neutralization and confers specific binding activity to other evasins |
title_full_unstemmed | The N-terminal domain of a tick evasin is critical for chemokine binding and neutralization and confers specific binding activity to other evasins |
title_short | The N-terminal domain of a tick evasin is critical for chemokine binding and neutralization and confers specific binding activity to other evasins |
title_sort | n-terminal domain of a tick evasin is critical for chemokine binding and neutralization and confers specific binding activity to other evasins |
topic | Immunology |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5912465/ https://www.ncbi.nlm.nih.gov/pubmed/29487134 http://dx.doi.org/10.1074/jbc.RA117.000487 |
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