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


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+CTLA-4+ vesicles in DEF6-mutated cells. One of the patients has been treated with CTLA-4-Ig and achieved sustained remission. Collectively, we uncover DEF6 as player in immune homeostasis ensuring availability of the checkpoint protein CTLA-4 at T-cell surface, identifying a potential target for autoimmune and/or cancer therapy.

SUBMITTER: Serwas NK 

PROVIDER: S-EPMC6629652 | biostudies-literature | 2019 Jul

REPOSITORIES: biostudies-literature

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

Serwas Nina K NK   Hoeger Birgit B   Ardy Rico C RC   Stulz Sigrun V SV   Sui Zhenhua Z   Memaran Nima N   Meeths Marie M   Krolo Ana A   Yüce Petronczki Özlem Ö   Pfajfer Laurène L   Hou Tie Z TZ   Halliday Neil N   Santos-Valente Elisangela E   Kalinichenko Artem A   Kennedy Alan A   Mace Emily M EM   Mukherjee Malini M   Tesi Bianca B   Schrempf Anna A   Pickl Winfried F WF   Pickl Winfried F WF   Loizou Joanna I JI   Kain Renate R   Bidmon-Fliegenschnee Bettina B   Schickel Jean-Nicolas JN   Glauzy Salomé S   Huemer Jakob J   Garncarz Wojciech W   Salzer Elisabeth E   Pierides Iro I   Bilic Ivan I   Thiel Jens J   Priftakis Peter P   Banerjee Pinaki P PP   Förster-Waldl Elisabeth E   Medgyesi David D   Huber Wolf-Dietrich WD   Orange Jordan S JS   Meffre Eric E   Sansom David M DM   Bryceson Yenan T YT   Altman Amnon A   Boztug Kaan K  

Nature communications 20190715 1


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  ...[more]

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