Dominant negative variants in IKZF2 cause ICHAD syndrome, a new disorder characterised by immunodysregulation, craniofacial anomalies, hearing impairment, athelia and developmental delay.

IKZF2 中的显性负性变异会导致 ICHAD 综合征,这是一种以免疫失调、颅面畸形、听力障碍、无肌张力和发育迟缓为特征的新疾病

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作者:Mohajeri Arezoo, Vaseghi-Shanjani Maryam, Rosenfeld Jill A, Yang Gui Xiang, Lu Henry, Sharma Mehul, Lin Susan, Salman Areesha, Waqas Meriam, Sababi Azamian Mahshid, Worley Kim C, Del Bel Kate L, Kozak Frederick K, Rahmanian Ronak, Biggs Catherine M, Hildebrand Kyla J, Lalani Seema R, Nicholas Sarah K, Scott Daryl A, Mostafavi Sara, van Karnebeek Clara, Henkelman Erika, Halparin Jessica, Yang Connie L, Armstrong Linlea, Turvey Stuart E, Lehman Anna
BACKGROUND: Helios (encoded by IKZF2), a member of the Ikaros family of transcription factors, is a zinc finger protein involved in embryogenesis and immune function. Although predominantly recognised for its role in the development and function of T lymphocytes, particularly the CD4(+) regulatory T cells (Tregs), the expression and function of Helios extends beyond the immune system. During embryogenesis, Helios is expressed in a wide range of tissues, making genetic variants that disrupt the function of Helios strong candidates for causing widespread immune-related and developmental abnormalities in humans. METHODS: We performed detailed phenotypic, genomic and functional investigations on two unrelated individuals with a phenotype of immune dysregulation combined with syndromic features including craniofacial differences, sensorineural hearing loss and congenital abnormalities. RESULTS: Genome sequencing revealed de novo heterozygous variants that alter the critical DNA-binding zinc fingers (ZFs) of Helios. Proband 1 had a tandem duplication of ZFs 2 and 3 in the DNA-binding domain of Helios (p.Gly136_Ser191dup) and Proband 2 had a missense variant impacting one of the key residues for specific base recognition and DNA interaction in ZF2 of Helios (p.Gly153Arg). Functional studies confirmed that both these variant proteins are expressed and that they interfere with the ability of the wild-type Helios protein to perform its canonical function-repressing IL2 transcription activity-in a dominant negative manner. CONCLUSION: This study is the first to describe dominant negative IKZF2 variants. These variants cause a novel genetic syndrome characterised by immunodysregulation, craniofacial anomalies, hearing impairment, athelia and developmental delay.

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