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Published on: September 15, 2023
Role of DOCK8 in cytokine storm syndromes
Mingce Zhang1, Remy R Cron1, Niansheng Chu2
1University of Alabama at Birmingham, Birmingham, Ala.
Insights
Rare dedicator of cytokinesis 8 (DOCK8) mutations can cause cytokine storm syndromes (CSSs). DOCK8 deficiency impairs natural killer (NK) cell function, contributing to hyperinflammation and organ failure in CSS patients.
Area of Science:
- Immunology
- Genetics
Background:
- Cytokine storm syndromes (CSSs), including hemophagocytic lymphohistiocytosis (HLH), are severe hyperinflammatory conditions.
- Genetic defects in familial HLH genes are known causes, but most CSS etiologies remain unclear.
- Rare variants in the dedicator of cytokinesis 8 (DOCK8) gene were identified in CSS patients.
Purpose of the Study:
- To investigate the impact of CSS patient-derived DOCK8 mutations on NK cell cytolytic activity.
- To examine the effects of DOCK8 deficiency in murine models of CSS.
Main Methods:
- DOCK8 mutations were introduced into human NK-92 cells to assess cytolytic function, degranulation, and IFN-γ production.
- DOCK8 deficiency was studied in DOCK8 knockout mice challenged with lymphocytic choriomeningitis virus and IL-18.
- Exon trapping was used to analyze a DOCK8 mRNA splice variant.
Main Results:
- Patient-derived DOCK8 missense mutations partially impaired NK cell cytolytic function in vitro.
- A DOCK8 splice variant disrupted mRNA splicing.
- DOCK8-deficient mice exhibited CSS features upon viral infection and IL-18 challenge, with altered T-cell responses.
Conclusions:
- DOCK8 mutations can contribute to CSS-like hyperinflammatory states.
- Altered NK cell cytolytic function due to DOCK8 mutations may play a role in CSS pathogenesis.
- DOCK8 deficiency impacts immune cell function and susceptibility to hyperinflammation.
Background:
Cytokine storm syndromes (CSSs), including hemophagocytic lymphohistiocytosis (HLH), are increasingly recognized as hyperinflammatory states leading to multiorgan failure and death. Familial HLH in infancy results from homozygous genetic defects in perforin-mediated cytolysis by CD8 T lymphocytes and natural killer (NK) cells. Later-onset CSSs are often associated with heterozygous defects in familial HLH genes, but genetic etiologies for most are unknown. We identified rare dedicator of cytokinesis 8 (DOCK8) variants in patients with CSS.
Objective:
We sought to explore the role of CSS patient-derived DOCK8 mutations on cytolytic activity in NK cells and to further study effects of DOCK8 deficiency in murine models of CSSs.
Methods:
DOCK8 cDNAs from 2 unrelated patients with CSS with different missense mutations were introduced into human NK-92 cells by foamy virus transduction. NK-cell degranulation (CD107a), cytolytic activity against K562 target cells, and IFN-γ production were explored by flow cytometry. A third patient with CSS with DOCK8 mRNA splice acceptor site variant was explored by exon trapping. Dock8-/- mice were assessed for features of CSS (weight loss, splenomegaly, hepatic inflammation, cytopenias, and IFN-γ levels) on challenge with lymphocytic choriomeningitis virus and excess IL-18.
Results:
Both patient DOCK8 missense mutations decreased cytolytic function in NK cells in a partial dominant-negative fashion in vitro. The patient DOCK8 splice variant disrupted mRNA splicing in vitro. Lymphocytic choriomeningitis virus infection promoted CSS in Dock8-/- mice and interacted with excess IL-18, limiting T-cell numbers while promoting CD8 T-cell hyperactivation.
Conclusions:
Mutations in DOCK8 may contribute to CSS-like hyperinflammatory states by altering cytolytic function in a threshold model of disease.
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