Solution NMR Determination of the CDHR3 Rhinovirus-C Binding Domain, EC1
<b> </b>Cadherin Related Family Member 3 (CDHR3) is the identified and required cellular receptor for all virus isolates in the rhinovirus-C species (RV-C). Cryo-EM determinations recently resolved the atomic structure of RV-C15a, and subsequently, a complex of this virus bound to CDHR3...
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doaj-8431a586fa374a849275d2de1f61e3272021-01-23T00:03:39ZengMDPI AGViruses1999-49152021-01-011315915910.3390/v13020159Solution NMR Determination of the CDHR3 Rhinovirus-C Binding Domain, EC1Woonghee Lee0Ronnie O. Frederick1Marco Tonelli2Ann C. Palmenberg3Department of Chemistry, University of Colorado Denver, Denver, CO 80204, USADepartment of Biochemistry, National Magnetic Resonance Facility at Madison, University of Wisconsin-Madison, Madison, WI 53706, USADepartment of Biochemistry, National Magnetic Resonance Facility at Madison, University of Wisconsin-Madison, Madison, WI 53706, USADepartment of Biochemistry, Institute for Molecular Virology, University of Wisconsin-Madison, Madison, WI 53706, USA<b> </b>Cadherin Related Family Member 3 (CDHR3) is the identified and required cellular receptor for all virus isolates in the rhinovirus-C species (RV-C). Cryo-EM determinations recently resolved the atomic structure of RV-C15a, and subsequently, a complex of this virus bound to CDHR3 extracellular domain 1 (EC1), the N-terminal portion of this receptor responsible for virus interactions. The EC1 binds to a hypervariable sequence footprint on the virus surface, near the 3-fold axis of icosahedral symmetry. The key contacts involve discontinuous residues from 3 viral proteins, VP1, VP2 and VP3. That single cryo-EM EC1 structure, however, could not resolve whether the virus-receptor interface was structurally adaptable to accommodate multiple virus sequences. We now report the solution NMR determination of CDHR3 EC1, showing that this protein, in fact, is mostly inflexible, particularly in the virus-binding face. The new, higher resolution dataset identifies 3 cis-Pro residues in important loop regions, where they can influence both rigidity and overall protein conformation. The data also provide clarification about the residues involved in essential calcium ion binding, and a potential CDHR3 surface groove feature that may be involved in native protein interactions with cellular partners.https://www.mdpi.com/1999-4915/13/2/159rhinovirus CreceptorCDHR3NMR structure |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Woonghee Lee Ronnie O. Frederick Marco Tonelli Ann C. Palmenberg |
spellingShingle |
Woonghee Lee Ronnie O. Frederick Marco Tonelli Ann C. Palmenberg Solution NMR Determination of the CDHR3 Rhinovirus-C Binding Domain, EC1 Viruses rhinovirus C receptor CDHR3 NMR structure |
author_facet |
Woonghee Lee Ronnie O. Frederick Marco Tonelli Ann C. Palmenberg |
author_sort |
Woonghee Lee |
title |
Solution NMR Determination of the CDHR3 Rhinovirus-C Binding Domain, EC1 |
title_short |
Solution NMR Determination of the CDHR3 Rhinovirus-C Binding Domain, EC1 |
title_full |
Solution NMR Determination of the CDHR3 Rhinovirus-C Binding Domain, EC1 |
title_fullStr |
Solution NMR Determination of the CDHR3 Rhinovirus-C Binding Domain, EC1 |
title_full_unstemmed |
Solution NMR Determination of the CDHR3 Rhinovirus-C Binding Domain, EC1 |
title_sort |
solution nmr determination of the cdhr3 rhinovirus-c binding domain, ec1 |
publisher |
MDPI AG |
series |
Viruses |
issn |
1999-4915 |
publishDate |
2021-01-01 |
description |
<b> </b>Cadherin Related Family Member 3 (CDHR3) is the identified and required cellular receptor for all virus isolates in the rhinovirus-C species (RV-C). Cryo-EM determinations recently resolved the atomic structure of RV-C15a, and subsequently, a complex of this virus bound to CDHR3 extracellular domain 1 (EC1), the N-terminal portion of this receptor responsible for virus interactions. The EC1 binds to a hypervariable sequence footprint on the virus surface, near the 3-fold axis of icosahedral symmetry. The key contacts involve discontinuous residues from 3 viral proteins, VP1, VP2 and VP3. That single cryo-EM EC1 structure, however, could not resolve whether the virus-receptor interface was structurally adaptable to accommodate multiple virus sequences. We now report the solution NMR determination of CDHR3 EC1, showing that this protein, in fact, is mostly inflexible, particularly in the virus-binding face. The new, higher resolution dataset identifies 3 cis-Pro residues in important loop regions, where they can influence both rigidity and overall protein conformation. The data also provide clarification about the residues involved in essential calcium ion binding, and a potential CDHR3 surface groove feature that may be involved in native protein interactions with cellular partners. |
topic |
rhinovirus C receptor CDHR3 NMR structure |
url |
https://www.mdpi.com/1999-4915/13/2/159 |
work_keys_str_mv |
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