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Determinants of receptor tyrosine phosphatase homophilic adhesion: Structural comparison of PTPRK and PTPRM extracellular domains

Type IIB receptor protein tyrosine phosphatases are cell surface transmembrane proteins that engage in cell adhesion via their extracellular domains (ECDs) and cell signaling via their cytoplasmic phosphatase domains. The ECDs of type IIB receptor protein tyrosine phosphatases form stable, homophili...

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Autores principales: Hay, Iain M., Shamin, Maria, Caroe, Eve R., Mohammed, Ahmed S.A., Svergun, Dmitri I., Jeffries, Cy M., Graham, Stephen C., Sharpe, Hayley J., Deane, Janet E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9800333/
https://www.ncbi.nlm.nih.gov/pubmed/36436563
http://dx.doi.org/10.1016/j.jbc.2022.102750
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author Hay, Iain M.
Shamin, Maria
Caroe, Eve R.
Mohammed, Ahmed S.A.
Svergun, Dmitri I.
Jeffries, Cy M.
Graham, Stephen C.
Sharpe, Hayley J.
Deane, Janet E.
author_facet Hay, Iain M.
Shamin, Maria
Caroe, Eve R.
Mohammed, Ahmed S.A.
Svergun, Dmitri I.
Jeffries, Cy M.
Graham, Stephen C.
Sharpe, Hayley J.
Deane, Janet E.
author_sort Hay, Iain M.
collection PubMed
description Type IIB receptor protein tyrosine phosphatases are cell surface transmembrane proteins that engage in cell adhesion via their extracellular domains (ECDs) and cell signaling via their cytoplasmic phosphatase domains. The ECDs of type IIB receptor protein tyrosine phosphatases form stable, homophilic, and trans interactions between adjacent cell membranes. Previous work has demonstrated how one family member, PTPRM, forms head-to-tail homodimers. However, as the interface was composed of residues conserved across the family, the determinants of homophilic specificity remain unknown. Here, we have solved the X-ray crystal structure of the membrane-distal N-terminal domains of PTPRK that form a head-to-tail dimer consistent with intermembrane adhesion. Comparison with the PTPRM structure demonstrates interdomain conformational differences that may define homophilic specificity. Using small-angle X-ray scattering, we determined the solution structures of the full-length ECDs of PTPRM and PTPRK, identifying that both are rigid extended molecules that differ in their overall long-range conformation. Furthermore, we identified one residue, W351, within the interaction interface that differs between PTPRM and PTPRK and showed that mutation to glycine, the equivalent residue in PTPRM, abolishes PTPRK dimer formation in vitro. This comparison of two members of the receptor tyrosine phosphatase family suggests that homophilic specificity is driven by a combination of shape complementarity and specific but limited sequence differences.
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spelling pubmed-98003332023-01-03 Determinants of receptor tyrosine phosphatase homophilic adhesion: Structural comparison of PTPRK and PTPRM extracellular domains Hay, Iain M. Shamin, Maria Caroe, Eve R. Mohammed, Ahmed S.A. Svergun, Dmitri I. Jeffries, Cy M. Graham, Stephen C. Sharpe, Hayley J. Deane, Janet E. J Biol Chem Research Article Type IIB receptor protein tyrosine phosphatases are cell surface transmembrane proteins that engage in cell adhesion via their extracellular domains (ECDs) and cell signaling via their cytoplasmic phosphatase domains. The ECDs of type IIB receptor protein tyrosine phosphatases form stable, homophilic, and trans interactions between adjacent cell membranes. Previous work has demonstrated how one family member, PTPRM, forms head-to-tail homodimers. However, as the interface was composed of residues conserved across the family, the determinants of homophilic specificity remain unknown. Here, we have solved the X-ray crystal structure of the membrane-distal N-terminal domains of PTPRK that form a head-to-tail dimer consistent with intermembrane adhesion. Comparison with the PTPRM structure demonstrates interdomain conformational differences that may define homophilic specificity. Using small-angle X-ray scattering, we determined the solution structures of the full-length ECDs of PTPRM and PTPRK, identifying that both are rigid extended molecules that differ in their overall long-range conformation. Furthermore, we identified one residue, W351, within the interaction interface that differs between PTPRM and PTPRK and showed that mutation to glycine, the equivalent residue in PTPRM, abolishes PTPRK dimer formation in vitro. This comparison of two members of the receptor tyrosine phosphatase family suggests that homophilic specificity is driven by a combination of shape complementarity and specific but limited sequence differences. American Society for Biochemistry and Molecular Biology 2022-11-25 /pmc/articles/PMC9800333/ /pubmed/36436563 http://dx.doi.org/10.1016/j.jbc.2022.102750 Text en © 2022 The Authors https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Article
Hay, Iain M.
Shamin, Maria
Caroe, Eve R.
Mohammed, Ahmed S.A.
Svergun, Dmitri I.
Jeffries, Cy M.
Graham, Stephen C.
Sharpe, Hayley J.
Deane, Janet E.
Determinants of receptor tyrosine phosphatase homophilic adhesion: Structural comparison of PTPRK and PTPRM extracellular domains
title Determinants of receptor tyrosine phosphatase homophilic adhesion: Structural comparison of PTPRK and PTPRM extracellular domains
title_full Determinants of receptor tyrosine phosphatase homophilic adhesion: Structural comparison of PTPRK and PTPRM extracellular domains
title_fullStr Determinants of receptor tyrosine phosphatase homophilic adhesion: Structural comparison of PTPRK and PTPRM extracellular domains
title_full_unstemmed Determinants of receptor tyrosine phosphatase homophilic adhesion: Structural comparison of PTPRK and PTPRM extracellular domains
title_short Determinants of receptor tyrosine phosphatase homophilic adhesion: Structural comparison of PTPRK and PTPRM extracellular domains
title_sort determinants of receptor tyrosine phosphatase homophilic adhesion: structural comparison of ptprk and ptprm extracellular domains
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9800333/
https://www.ncbi.nlm.nih.gov/pubmed/36436563
http://dx.doi.org/10.1016/j.jbc.2022.102750
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