Multivariate analysis of FcR-mediated NK cell functions identifies unique clustering among humans and rhesus macaques.

dc.contributor.author

Tuyishime, Marina

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Spreng, Rachel L

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Hueber, Brady

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Nohara, Junsuke

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Goodman, Derrick

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Chan, Cliburn

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Barfield, Richard

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Beck, Whitney E

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Jha, Shalini

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Asdell, Stephanie

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Wiehe, Kevin

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He, Max M

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Easterhoff, David

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Conley, Haleigh E

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Hoxie, Taylor

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Gurley, Thaddeus

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Jones, Caroline

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Adhikary, Nihar Deb

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Villinger, Francois

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Thomas, Rasmi

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Denny, Thomas N

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Moody, Michael Anthony

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Tomaras, Georgia D

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Pollara, Justin

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Reeves, R Keith

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Ferrari, Guido

dc.date.accessioned

2024-01-04T14:55:45Z

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2024-01-04T14:55:45Z

dc.date.issued

2023-01

dc.description.abstract

Rhesus macaques (RMs) are a common pre-clinical model used to test HIV vaccine efficacy and passive immunization strategies. Yet, it remains unclear to what extent the Fc-Fc receptor (FcR) interactions impacting antiviral activities of antibodies in RMs recapitulate those in humans. Here, we evaluated the FcR-related functionality of natural killer cells (NKs) from peripheral blood of uninfected humans and RMs to identify intra- and inter-species variation. NKs were screened for FcγRIIIa (human) and FcγRIII (RM) genotypes (FcγRIII(a)), receptor signaling, and antibody-dependent cellular cytotoxicity (ADCC), the latter mediated by a cocktail of monoclonal IgG1 antibodies with human or RM Fc. FcγRIII(a) genetic polymorphisms alone did not explain differences in NK effector functionality in either species cohort. Using the same parameters, hierarchical clustering separated each species into two clusters. Importantly, in principal components analyses, ADCC magnitude, NK contribution to ADCC, FcγRIII(a) cell-surface expression, and frequency of phosphorylated CD3ζ NK cells all contributed similarly to the first principal component within each species, demonstrating the importance of measuring multiple facets of NK cell function. Although ADCC potency was similar between species, we detected significant differences in frequencies of NK cells and pCD3ζ+ cells, level of cell-surface FcγRIII(a) expression, and NK-mediated ADCC (P<0.001), indicating that a combination of Fc-FcR parameters contribute to overall inter-species functional differences. These data strongly support the importance of multi-parameter analyses of Fc-FcR NK-mediated functions when evaluating efficacy of passive and active immunizations in pre- and clinical trials and identifying correlates of protection. The results also suggest that pre-screening animals for multiple FcR-mediated NK function would ensure even distribution of animals among treatment groups in future preclinical trials.

dc.identifier.issn

1664-3224

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1664-3224

dc.identifier.uri

https://hdl.handle.net/10161/29659

dc.language

eng

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Frontiers Media SA

dc.relation.ispartof

Frontiers in immunology

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10.3389/fimmu.2023.1260377

dc.rights.uri

https://creativecommons.org/licenses/by-nc/4.0

dc.subject

Killer Cells, Natural

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Animals

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Macaca mulatta

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Humans

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Receptors, Fc

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Antibodies, Monoclonal

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Multivariate Analysis

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Cluster Analysis

dc.title

Multivariate analysis of FcR-mediated NK cell functions identifies unique clustering among humans and rhesus macaques.

dc.type

Journal article

duke.contributor.orcid

Chan, Cliburn|0000-0001-5901-6806

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Moody, Michael Anthony|0000-0002-3890-5855

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Tomaras, Georgia D|0000-0001-8076-1931

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Reeves, R Keith|0000-0003-3157-2557

duke.contributor.orcid

Ferrari, Guido|0000-0001-7747-3349

pubs.begin-page

1260377

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Duke

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School of Medicine

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Basic Science Departments

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Clinical Science Departments

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Institutes and Centers

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Integrative Immunobiology

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Medicine

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Pediatrics

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Medicine, Duke Human Vaccine Institute

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Pediatrics, Infectious Diseases

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Duke Human Vaccine Institute

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Institutes and Provost's Academic Units

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University Institutes and Centers

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Duke Global Health Institute

pubs.publication-status

Published

pubs.volume

14

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