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A Recurrent De Novo Variant in NACC1 Causes a Syndrome Characterized by Infantile Epilepsy, Cataracts, and Profound Developmental Delay.

Authors :
Schoch, Kelly
Schoch, Kelly
Meng, Linyan
Szelinger, Szabolcs
Bearden, David R
Stray-Pedersen, Asbjorg
Busk, Oyvind L
Stong, Nicholas
Liston, Eriskay
Cohn, Ronald D
Scaglia, Fernando
Rosenfeld, Jill A
Tarpinian, Jennifer
Skraban, Cara M
Deardorff, Matthew A
Friedman, Jeremy N
Akdemir, Zeynep Coban
Walley, Nicole
Mikati, Mohamad A
Kranz, Peter G
Jasien, Joan
McConkie-Rosell, Allyn
McDonald, Marie
Wechsler, Stephanie Burns
Freemark, Michael
Kansagra, Sujay
Freedman, Sharon
Bali, Deeksha
Millan, Francisca
Bale, Sherri
Nelson, Stanley F
Lee, Hane
Dorrani, Naghmeh
UCLA Clinical Genomics Center
Undiagnosed Diseases Network
Goldstein, David B
Xiao, Rui
Yang, Yaping
Posey, Jennifer E
Martinez-Agosto, Julian A
Lupski, James R
Wangler, Michael F
Shashi, Vandana
Schoch, Kelly
Schoch, Kelly
Meng, Linyan
Szelinger, Szabolcs
Bearden, David R
Stray-Pedersen, Asbjorg
Busk, Oyvind L
Stong, Nicholas
Liston, Eriskay
Cohn, Ronald D
Scaglia, Fernando
Rosenfeld, Jill A
Tarpinian, Jennifer
Skraban, Cara M
Deardorff, Matthew A
Friedman, Jeremy N
Akdemir, Zeynep Coban
Walley, Nicole
Mikati, Mohamad A
Kranz, Peter G
Jasien, Joan
McConkie-Rosell, Allyn
McDonald, Marie
Wechsler, Stephanie Burns
Freemark, Michael
Kansagra, Sujay
Freedman, Sharon
Bali, Deeksha
Millan, Francisca
Bale, Sherri
Nelson, Stanley F
Lee, Hane
Dorrani, Naghmeh
UCLA Clinical Genomics Center
Undiagnosed Diseases Network
Goldstein, David B
Xiao, Rui
Yang, Yaping
Posey, Jennifer E
Martinez-Agosto, Julian A
Lupski, James R
Wangler, Michael F
Shashi, Vandana
Source :
American journal of human genetics; vol 100, iss 2, 343-351; 0002-9297
Publication Year :
2017

Abstract

Whole-exome sequencing (WES) has increasingly enabled new pathogenic gene variant identification for undiagnosed neurodevelopmental disorders and provided insights into both gene function and disease biology. Here, we describe seven children with a neurodevelopmental disorder characterized by microcephaly, profound developmental delays and/or intellectual disability, cataracts, severe epilepsy including infantile spasms, irritability, failure to thrive, and stereotypic hand movements. Brain imaging in these individuals reveals delay in myelination and cerebral atrophy. We observe an identical recurrent de novo heterozygous c.892C>T (p.Arg298Trp) variant in the nucleus accumbens associated 1 (NACC1) gene in seven affected individuals. One of the seven individuals is mosaic for this variant. NACC1 encodes a transcriptional repressor implicated in gene expression and has not previously been associated with germline disorders. The probability of finding the same missense NACC1 variant by chance in 7 out of 17,228 individuals who underwent WES for diagnoses of neurodevelopmental phenotypes is extremely small and achieves genome-wide significance (p = 1.25 × 10-14). Selective constraint against missense variants in NACC1 makes this excess of an identical missense variant in all seven individuals more remarkable. Our findings are consistent with a germline recurrent mutational hotspot associated with an allele-specific neurodevelopmental phenotype in NACC1.

Details

Database :
OAIster
Journal :
American journal of human genetics; vol 100, iss 2, 343-351; 0002-9297
Notes :
application/pdf, American journal of human genetics vol 100, iss 2, 343-351 0002-9297
Publication Type :
Electronic Resource
Accession number :
edsoai.on1391606771
Document Type :
Electronic Resource