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    Prenatal vs postnatal diagnosis of 22q11.2 deletion syndrome: cardiac and noncardiac outcomes through 1 year of age
    (2023)
    Lindsay R. Freud
    ;
    Stephanie Galloway
    ;
    T. Blaine Crowley
    ;
    Julie Moldenhauer
    ;
    Ann Swillen
      1Scopus© Citations 9
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    Chromatin regulators in the TBX1 network confer risk for conotruncal heart defects in 22q11.2DS
    (2023)
    Yingjie Zhao
    ;
    Yujue Wang
    ;
    Lijie Shi
    ;
    Donna M. McDonald-McGinn
    ;
    T. Blaine Crowley
    <jats:title>Abstract</jats:title><jats:p>Congenital heart disease (CHD) affecting the conotruncal region of the heart, occurs in 40–50% of patients with 22q11.2 deletion syndrome (22q11.2DS). This syndrome is a rare disorder with relative genetic homogeneity that can facilitate identification of genetic modifiers. Haploinsufficiency of <jats:italic>TBX1</jats:italic>, encoding a T-box transcription factor, is one of the main genes responsible for the etiology of the syndrome. We suggest that genetic modifiers of conotruncal defects in patients with 22q11.2DS may be in the <jats:italic>TBX1</jats:italic> gene network. To identify genetic modifiers, we analyzed rare, predicted damaging variants in whole genome sequence of 456 cases with conotruncal defects and 537 controls, with 22q11.2DS. We then performed gene set approaches and identified chromatin regulatory genes as modifiers. Chromatin genes with recurrent damaging variants include <jats:italic>EP400</jats:italic>, <jats:italic>KAT6A</jats:italic>, <jats:italic>KMT2C</jats:italic>, <jats:italic>KMT2D</jats:italic>, <jats:italic>NSD1, CHD7</jats:italic> and <jats:italic>PHF21A</jats:italic>. In total, we identified 37 chromatin regulatory genes, that may increase risk for conotruncal heart defects in 8.5% of 22q11.2DS cases. Many of these genes were identified as risk factors for sporadic CHD in the general population. These genes are co-expressed in cardiac progenitor cells with <jats:italic>TBX1</jats:italic>, suggesting that they may be in the same genetic network. The genes <jats:italic>KAT6A</jats:italic>, <jats:italic>KMT2C</jats:italic>, <jats:italic>CHD7</jats:italic> and <jats:italic>EZH2</jats:italic>, have been previously shown to genetically interact with <jats:italic>TBX1</jats:italic> in mouse models. Our findings indicate that disturbance of chromatin regulatory genes impact the <jats:italic>TBX1</jats:italic> gene network serving as genetic modifiers of 22q11.2DS and sporadic CHD, suggesting that there are some shared mechanisms involving the <jats:italic>TBX1</jats:italic> gene network in the etiology of CHD.</jats:p>
    Scopus© Citations 4  3
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    Genetic contributors to risk of schizophrenia in the presence of a 22q11.2 deletion
    (2020)
    Isabelle Cleynen
    ;
    Worrawat Engchuan
    ;
    Matthew S. Hestand
    ;
    Tracy Heung
    ;
    Aaron M. Holleman
    Scopus© Citations 98  2
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    Using common genetic variation to examine phenotypic expression and risk prediction in 22q11.2 deletion syndrome
    (2020)
    Robert W. Davies
    ;
    Ania M. Fiksinski
    ;
    Elemi J. Breetvelt
    ;
    Nigel M. Williams
    ;
    Stephen R. Hooper
      8Scopus© Citations 101
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    Mapping Subcortical Brain Alterations in 22q11.2 Deletion Syndrome: Effects of Deletion Size and Convergence With Idiopathic Neuropsychiatric Illness
    (2020)
    Christopher R.K. Ching
    ;
    Boris A. Gutman
    ;
    Daqiang Sun
    ;
    Julio Villalon Reina
    ;
    Anjanibhargavi Ragothaman
    Scopus© Citations 44  8
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    Complete Sequence of the 22q11.2 Allele in 1,053 Subjects with 22q11.2 Deletion Syndrome Reveals Modifiers of Conotruncal Heart Defects
    (2020)
    Yingjie Zhao
    ;
    Alexander Diacou
    ;
    H. Richard Johnston
    ;
    Fadi I. Musfee
    ;
    Donna M. McDonald-McGinn
    Scopus© Citations 53  1