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Publisher Correction: Human DEF6 deficiency underlies an immunodeficiency syndrome with systemic autoimmunity and aberrant CTLA-4 homeostasis

Authors :
Elisangela Santos-Valente
Jordan S. Orange
Peter Priftakis
Anna Schrempf
Elisabeth Förster-Waldl
Salomé Glauzy
Jean Nicolas Schickel
Nina K. Serwas
David Medgyesi
Alan Kennedy
Renate Kain
Eric Meffre
Emily M. Mace
Özlem Yüce Petronczki
Nima Memaran
Ana Krolo
Ivan Bilic
Bettina Bidmon-Fliegenschnee
Jakob Huemer
Pinaki P. Banerjee
Iro Pierides
Sigrun V. Stulz
Tie Z. Hou
Zhenhua Sui
Elisabeth Salzer
Laurène Pfajfer
Marie Meeths
Neil Halliday
Wojciech Garncarz
Yenan T. Bryceson
Rico Chandra Ardy
Jens Thiel
Amnon Altman
Joanna I. Loizou
Malini Mukherjee
Birgit Hoeger
Artem Kalinichenko
Bianca Tesi
Kaan Boztug
Wolf Dietrich Huber
Winfried F. Pickl
David M. Sansom
Source :
Nature Communications, Vol 10, Iss 1, Pp 1-2 (2019), Nature Communications
Publication Year :
2019
Publisher :
Nature Publishing Group, 2019.

Abstract

Immune responses need to be controlled tightly to prevent autoimmune diseases, yet underlying molecular mechanisms remain partially understood. Here, we identify biallelic mutations in three patients from two unrelated families in differentially expressed in FDCP6 homolog (DEF6) as the molecular cause of an inborn error of immunity with systemic autoimmunity. Patient T cells exhibit impaired regulation of CTLA-4 surface trafficking associated with reduced functional CTLA-4 availability, which is replicated in DEF6-knockout Jurkat cells. Mechanistically, we identify the small GTPase RAB11 as an interactor of the guanine nucleotide exchange factor DEF6, and find disrupted binding of mutant DEF6 to RAB11 as well as reduced RAB11

Details

Language :
English
ISSN :
20411723
Volume :
10
Issue :
1
Database :
OpenAIRE
Journal :
Nature Communications
Accession number :
edsair.doi.dedup.....d8e7b61f6ca1c11036a0e08946e0c590