• FluTrackers.com Inc. does not provide medical advice. Information on this web site is collected from various internet resources, and the FluTrackers board of directors makes no warranty to the safety, efficacy, correctness or completeness of the information posted on this site by any author or poster. The information collated here is for instructional and/or discussion purposes only and is NOT intended to diagnose or treat any disease, illness, or other medical condition. Every individual reader or poster should seek advice from their personal physician/healthcare practitioner before considering or using any interventions that are discussed on this website. By continuing to access this website you agree to consult your personal physican before using any interventions posted on this website, and you agree to hold harmless FluTrackers.com Inc., the board of directors, the members, and all authors and posters for any effects from use of any medication, supplement, vitamin or other substance, device, intervention, etc. mentioned in posts on this website, or other internet venues referenced in posts on this website.
  • We are not asking for any donations. Do not donate to any entity who says they are raising funds for us.

Force Spectroscopy Shows Dynamic Binding of Influenza Hemagglutinin and Neuraminidase to Sialic Acid

tetano

Editor, Senior Moderator
Biophys J. 2019 Feb 8. pii: S0006-3495(19)30112-2. doi: 10.1016/j.bpj.2019.01.041. [Epub ahead of print]
[h=1]Force Spectroscopy Shows Dynamic Binding of Influenza Hemagglutinin and Neuraminidase to Sialic Acid.[/h] Reiter-Scherer V[SUP]1[/SUP], Cuellar-Camacho JL[SUP]2[/SUP], Bhatia S[SUP]2[/SUP], Haag R[SUP]2[/SUP], Herrmann A[SUP]3[/SUP], Lauster D[SUP]4[/SUP], Rabe JP[SUP]5[/SUP].
[h=3]Author information[/h]

[h=3]Abstract[/h] The influenza A virus infects target cells through multivalent interactions of its major spike proteins, hemagglutinin (HA) and neuraminidase (NA), with the cellular receptor sialic acid (SA). HA is known to mediate the attachment of the virion to the cell, whereas NA enables the release of newly formed virions by cleaving SA from the cell. Because both proteins target the same receptor but have antagonistic functions, virus infection depends on a properly tuned balance of the kinetics of HA and NA activities for viral entry to and release from the host cell. Here, dynamic single-molecule force spectroscopy, based on scanning force microscopy, was employed to determine these bond-specific kinetics, characterized by the off rate k[SUB]off[/SUB], rupture length x[SUB]β[/SUB] and on rate k[SUB]on[/SUB], as well as the related free-energy barrier ΔG and the dissociation constant K[SUB]D[/SUB]. Measurements were conducted using surface-immobilized HA and NA of the influenza A virus strain A/California/04/2009 and a novel, to our knowledge, synthetic SA-displaying receptor for functionalization of the force probe. Single-molecule force spectroscopy at force loading rates between 100 and 50,000 pN/s revealed most probable rupture forces of the protein-SA bond in the range of 10-100 pN. Using an extension of the widely applied Bell-Evans formalism by Friddle, De Yoreo, and co-workers, it is shown that HA features a smaller x[SUB]β[/SUB], a larger k[SUB]off[/SUB] and a smaller ΔG than NA. Measurements of the binding probability at increasing contact time between the scanning force microscopy force probe and the surface allow an estimation of K[SUB]D[/SUB], which is found to be three times as large for HA than for NA. This suggests a stronger interaction for NA-SA than for HA-SA. The biological implications in regard to virus binding to the host cell and the release of new virions from the host cell are discussed.
Copyright ? 2019 Biophysical Society. Published by Elsevier Inc. All rights reserved.


PMID: 30799074 DOI: 10.1016/j.bpj.2019.01.041
 
Back
Top