Whole genome analysis of rare deleterious variants adds further evidence to BRSK2 and other risk genes in Autism Spectrum Disorder

Author:

Bacchelli Elena1ORCID,Viggiano Marta1,Ceroni Fabiola1,Visconti Paola2,Posar Annio2,Scaduto Maria2,Sandoni Laura1,Baravelli Irene1,Cameli Cinzia1,Rochat Magali2,Maresca Alessandra2,Vaisfeld Alessandro1,Gentilini Davide3,Calzari Luciano4,Carelli Valerio2,Zody Michael5,Maestrini Elena1

Affiliation:

1. University of Bologna

2. IRCCS Istituto delle Scienze Neurologiche di Bologna

3. University of Pavia

4. Istituto Auxologico Italiano IRCCS

5. New York Genome Center (NYGC)

Abstract

Abstract Autism spectrum disorder (ASD) is a complex neurodevelopmental condition with a strong genetic component in which rare variants contribute significantly to risk. We have performed whole genome and/or exome sequencing (WGS and WES) and SNP-array analysis to identify both rare sequence and copy number variants (SNVs and CNVs) in 435 individuals from 116 ASD families. We identified 37 rare potentially damaging de novo SNVs (pdSNVs) in cases (n = 144). Interestingly, two of them (one stop-gain and one missense variant) occurred in the same gene, BRSK2. Moreover, the identification of 9 severe de novo pdSNVs in genes not previously implicated in ASD (RASAL2, RAP1A, IRX5, SLC9A1, AGPAT3, MGAT3, RAB8B, MGAT5B, YME1L1), highlighted novel candidates. Potentially damaging CNVs (pdCNVs) provided support to the involvement of inherited variants in PHF3, NEGR1, TIAM1 and HOMER1 in neurodevelopmental disorders (NDD), although mostly acting as susceptibility factors with incomplete penetrance. Interpretation of identified pdSNVs/pdCNVs according to the ACMG guidelines led to a molecular diagnosis in 19/144 cases, but this figure represents a lower limit and is expected to increase thanks to further clarification of the role of likely pathogenic variants in new ASD/NDD candidates. In conclusion, our study strengthens the role of BRSK2 and other neurodevelopmental genes in ASD risk, highlights novel candidates and contributes to characterize the allelic diversity, mode of inheritance and phenotypic impact of de novo and inherited risk variants in ASD/NDD genes.

Publisher

Research Square Platform LLC

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