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Recurrent de novo missense variants in GNB2 can cause syndromic intellectual disability

智力残疾 生物信息学 遗传学 外显子组测序 错义突变 生物 外显子组 表型 医学遗传学 基因
作者
Natalie B. Tan,Alistair T. Pagnamenta,Matteo P. Ferla,Jonathan Gadian,Brian Hon‐Yin Chung,Marcus C.Y. Chan,Jasmine L.F. Fung,Edwin H. Cook,Stephen J. Guter,Felix Boschann,A. Heinen,Jens Schallner,Cyril Mignot,Boris Keren,Sandra Whalen,Catherine Sarret,Dana Mittag,Laurie Demmer,Rachel Stapleton,Ken Saida
出处
期刊:Journal of Medical Genetics [BMJ]
卷期号:59 (5): 511-516 被引量:8
标识
DOI:10.1136/jmedgenet-2020-107462
摘要

Purpose Binding proteins (G-proteins) mediate signalling pathways involved in diverse cellular functions and comprise Gα and Gβγ units. Human diseases have been reported for all five Gβ proteins. A de novo missense variant in GNB2 was recently reported in one individual with developmental delay/intellectual disability (DD/ID) and dysmorphism. We aim to confirm GNB2 as a neurodevelopmental disease gene, and elucidate the GNB2 -associated neurodevelopmental phenotype in a patient cohort. Methods We discovered a GNB2 variant in the index case via exome sequencing and sought individuals with GNB2 variants via international data-sharing initiatives. In silico modelling of the variants was assessed, along with multiple lines of evidence in keeping with American College of Medical Genetics and Genomics guidelines for interpretation of sequence variants. Results We identified 12 unrelated individuals with five de novo missense variants in GNB2 , four of which are recurrent: p.(Ala73Thr), p.(Gly77Arg), p.(Lys89Glu) and p.(Lys89Thr). All individuals have DD/ID with variable dysmorphism and extraneurologic features. The variants are located at the universally conserved shared interface with the Gα subunit, which modelling suggests weaken this interaction. Conclusion Missense variants in GNB2 cause a congenital neurodevelopmental disorder with variable syndromic features, broadening the spectrum of multisystem phenotypes associated with variants in genes encoding G-proteins.
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