Shedding of CD16 disassembles the NK cell immune synapse and boosts serial engagement of target cells

Author:

Srpan Katja1,Ambrose Ashley1ORCID,Karampatzakis Alexandros1ORCID,Saeed Mezida1,Cartwright Adam N.R.1,Guldevall Karolin2,De Matos Gabriela Dos Santos Cruz3ORCID,Önfelt Björn24,Davis Daniel M.1ORCID

Affiliation:

1. The Lydia Becker Institute of Immunology and Inflammation, Manchester Collaborative Centre for Inflammation Research, University of Manchester, Manchester, UK

2. Department of Applied Physics, Science for Life Laboratories, KTH Royal Institute of Technology, Solna, Sweden

3. GlaxoSmithKline, Stevenage, UK

4. Department of Microbiology, Tumor and Cell Biology, Karolinska Institutet, Stockholm, Sweden

Abstract

Natural Killer (NK) cells can engage multiple virally infected or tumor cells sequentially and deliver perforin for cytolytic killing of these targets. Using microscopy to visualize degranulation from individual NK cells, we found that repeated activation via the Fc receptor CD16 decreased the amount of perforin secreted. However, perforin secretion was restored upon subsequent activation via a different activating receptor, NKG2D. Repeated stimulation via NKG2D also decreased perforin secretion, but this was not rescued by stimulation via CD16. These different outcomes of sequential stimulation could be accounted for by shedding of CD16 being triggered by cellular activation. The use of pharmacological inhibitors and NK cells transfected to express a noncleavable form of CD16 revealed that CD16 shedding also increased NK cell motility and facilitated detachment of NK cells from target cells. Disassembly of the immune synapse caused by CD16 shedding aided NK cell survival and boosted serial engagement of target cells. Thus, counterintuitively, shedding of CD16 may positively impact immune responses.

Funder

Wellcome Trust

Medical Research Council

The Swedish Foundation for Strategic Research

Swedish Cancer Foundation

Manchester Collaborative Centre for Inflammation Research

GlaxoSmithKline

AstraZeneca

University of Manchester

European Molecular Biology Organization

Publisher

Rockefeller University Press

Subject

Cell Biology

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