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Mutations affecting the actin regulator WD repeat–containing protein 1 lead to aberrant lymphoid immunity - 06/11/18

Doi : 10.1016/j.jaci.2018.04.023 
Laurène Pfajfer, MSc a, b, c, d, e, , Nina K. Mair, BSc a, b, , Raúl Jiménez-Heredia, MSc a, b, Ferah Genel, MD f, Nesrin Gulez, MD f, Ömür Ardeniz, MD g, Birgit Hoeger, PhD a, b, Sevgi Köstel Bal, MD, PhD a, b, h, Christoph Madritsch, PhD i, Artem Kalinichenko, PhD a, b, Rico Chandra Ardy, MSc a, b, Bengü Gerçeker, MD j, Javier Rey-Barroso, PhD c, d, e, Hanna Ijspeert, PhD k, Stuart G. Tangye, PhD l, m, Ingrid Simonitsch-Klupp, MD n, Johannes B. Huppa, PhD i, Mirjam van der Burg, PhD k, Loïc Dupré, PhD a, b, c, d, e, , , Kaan Boztug, MD a, b, o, p, ,
a Ludwig Boltzmann Institute for Rare and Undiagnosed Diseases, Vienna, Austria 
b CeMM Research Center for Molecular Medicine of the Austrian Academy of Sciences, Vienna, Austria 
c INSERM, UMR1043, Centre de Physiopathologie de Toulouse Purpan, Toulouse, France 
d Université Toulouse III Paul-Sabatier, Toulouse, France 
e CNRS, UMR 5282, Toulouse, France 
f Department of Pediatrics, Dr Behcet Uz Children's Hospital, Izmir, Turkey 
g EÜTF Internal Medicine, Division of Allergy and Clinical Immunology, Bornova, Izmir, Turkey 
h Department of Pediatric Allergy and Immunology, Ankara University School of Medicine, Ankara, Turkey 
i Institute for Hygiene and Applied Immunology, Center for Pathophysiology, Infectiology and Immunology, Vienna, Austria 
n Department of Pathology, Medical University of Vienna, Vienna, Austria 
o Department of Pediatrics and Adolescent Medicine, Medical University of Vienna, Vienna, Austria 
p St Anna Kinderspital and Children's Cancer Research Institute, Department of Pediatrics, Medical University of Vienna, Vienna, Austria 
j Division of Dermatology, EÜTF Internal Medicine, Bornova, Izmir, Turkey 
k Department of Immunology, Erasmus MC, University Medical Center, Rotterdam, The Netherlands 
l Immunology Division, Garvan Institute of Medical Research, Darlinghurst, Australia 
m St Vincent's Clinical School, University of New South Wales, Darlinghurst, Australia 

Corresponding authors: Kaan Boztug, MD, Ludwig Boltzmann Institute for Rare and Undiagnosed Diseases, Lazarettgasse 14 AKH BT 25.3, A-1090 Vienna, Austria.Ludwig Boltzmann Institute for Rare and Undiagnosed DiseasesLazarettgasse 14 AKH BT 25.3ViennaA-1090AustriaLoïc Dupré, PhD, INSERM UMR1043, Centre de Physiopathologie de Toulouse Purpan, CHU Purpan, 1, place du Dr Baylac, 31300 Toulouse, France.INSERM UMR1043Centre de Physiopathologie de Toulouse PurpanCHU Purpan, 1, place du Dr BaylacToulouse31300France

Abstract

Background

The actin-interacting protein WD repeat–containing protein 1 (WDR1) promotes cofilin-dependent actin filament turnover. Biallelic WDR1 mutations have been identified recently in an immunodeficiency/autoinflammatory syndrome with aberrant morphology and function of myeloid cells.

Objective

Given the pleiotropic expression of WDR1, here we investigated to what extent it might control the lymphoid arm of the immune system in human subjects.

Methods

Histologic and detailed immunologic analyses were performed to elucidate the role of WDR1 in the development and function of B and T lymphocytes.

Results

Here we identified novel homozygous and compound heterozygous WDR1 missense mutations in 6 patients belonging to 3 kindreds who presented with respiratory tract infections, skin ulceration, and stomatitis. In addition to defective adhesion and motility of neutrophils and monocytes, WDR1 deficiency was associated with aberrant T-cell activation and B-cell development. T lymphocytes appeared to develop normally in the patients, except for the follicular helper T-cell subset. However, peripheral T cells from the patients accumulated atypical actin structures at the immunologic synapse and displayed reduced calcium flux and mildly impaired proliferation on T-cell receptor stimulation. WDR1 deficiency was associated with even more severe abnormalities of the B-cell compartment, including peripheral B-cell lymphopenia, paucity of B-cell progenitors in the bone marrow, lack of switched memory B cells, reduced clonal diversity, abnormal B-cell spreading, and increased apoptosis on B-cell receptor/Toll-like receptor stimulation.

Conclusion

Our study identifies a novel role for WDR1 in adaptive immunity, highlighting WDR1 as a central regulator of actin turnover during formation of the B-cell and T-cell immunologic synapses.

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Graphical abstract




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Key words : WD repeat–containing protein 1, actin cytoskeleton, immunodeficiency, lymphocytes, immunologic synapse

Abbreviations used : APC, BCR, B-LCL, CADD, CDR, FITC, fMLP, ICAM-1, IRM, PE, PID, SHM, SLB, TCR, Tfh, TIRF, TLR, WAS, WASP, WDR1


Plan


 Supported by the Vienna Science and Technology Fund (WWTF-LS16-060 to K.B. and L.D. and WWTF-LS14-31 to J.B.H.), the Austrian Science Fund (I2250-B28 to K.B.), the French National Agency for Research (ANR-13-BSV1-0031 to L.D.), a ZonMW Vidi grant (no. 91712323 to M.v.d.B.), and grants from the National Health and Medical Research Council of Australia (to Ö.A. and S.G.T.).
 Disclosure of potential conflict of interest: The authors declare that they have no relevant conflicts of interest.


© 2018  Ludwig Boltzmann Society - Ludwig Boltzmann Institute for Rare and Undiagnosed Diseases. Publié par Elsevier Masson SAS. Tous droits réservés.
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Vol 142 - N° 5

P. 1589 - novembre 2018 Retour au numéro
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