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Epigenomic and phenotypic characterization of DEGCAGS syndrome

  • Karim Karimi,
  • Denisa Weis,
  • Ingvild Aukrust,
  • Tzung-Chien Hsieh,
  • Marie Horackova,
  • Julie Paulsen,
  • Roberto Mendoza Londono,
  • Lucie Dupuis,
  • Megan Dickson,
  • Hellen Lesman,
  • Tracy Lau,
  • David Murphy,
  • Khalid Hama Salih,
  • Bassam M. S. Al-Musawi,
  • Ruqayah G. Y. Al-Obaidi,
  • Malgorzata Rydzanicz,
  • Mateus Biela,
  • Mafalda Saraiva Santos,
  • Abdulrahman Aldeeri,
  • Hanna T. Gazda,
  • Lynn Pais,
  • Shirlee Shril,
  • Henrik Døllner,
  • Sandip Bartakke,
  • Franco Laccone,
  • Andrea Soltysova,
  • Thomas Kitzler,
  • Neveen A. Soliman,
  • Raissa Relator,
  • Michael A. Levy,
  • Jennifer Kerkhof,
  • Jessica Rzasa,
  • Henry Houlden,
  • Gabriela V. Pilshofer,
  • Tilman Jobst-Schwan,
  • Friedhelm Hildebrandt,
  • Sergio B. Sousa,
  • Reza Maroofian,
  • Timothy W. Yu,
  • Peter Krawitz,
  • Bekim Sadikovic,
  • Sofia Douzgou Houge

摘要

Developmental Delay with Gastrointestinal, Cardiovascular, Genitourinary, and Skeletal Abnormalities syndrome (DEGCAGS, MIM #619488) is caused by biallelic, loss-of-function (LoF) ZNF699 variants, and is characterized by variable neurodevelopmental disability, discordant organ anomalies among full siblings and infant mortality. ZNF699 encodes a KRAB zinc finger protein of unknown function. We aimed to investigate the genotype-phenotype spectrum of DEGCAGS and the possibility of a diagnostic DNA methylation episignature, to facilitate the diagnosis of a highly variable condition lacking pathognomonic clinical findings. We collected data on 30 affected individuals (12 new). GestaltMatcher analyzed fifty-three facial photographs from five individuals. In nine individuals, methylation profiling of blood-DNA was performed, and a classification model was constructed to differentiate DEGCAGS from controls. We expand the ZNF699-related molecular spectrum and show that biallelic, LoF, ZNF699 variants cause unique clinical findings with age-related presentation and a similar facial gestalt. We also identified a robust episignature for DEGCAGS syndrome. DEGCAGS syndrome is a clinically variable recessive syndrome even among siblings with a distinct methylation episignature which can be used as a screening, diagnostic and classification tool for ZNF699 variants. Analysis of differentially methylated regions suggested an effect on genes potentially implicated in the syndrome’s pathogenesis.