4.6 Article

A homozygous KAT2B variant modulates the clinical phenotype of ADD3 deficiency in humans and flies

Journal

PLOS GENETICS
Volume 14, Issue 5, Pages -

Publisher

PUBLIC LIBRARY SCIENCE
DOI: 10.1371/journal.pgen.1007386

Keywords

-

Funding

  1. ATIP-Avenir program
  2. Fondation Bettencourt-Schueller (Liliane Bettencourt Chair of Developmental Biology)
  3. Agence Nationale de la Recherche (ANR) under the Investissements d'avenir program [ANR-10-IAHU-01]
  4. NEPHROFLY grant [ANR-14-ACHN-0013]
  5. Agence Nationale de la Recherche (GenPod project) [ANR-12-BSV1-0033.01]
  6. European Union [305608-EURenOmics]
  7. Investments for the Future program [ANR-10-IAHY-01]
  8. Fondation pour la recherche meAdicale (FRM Equipe) [2015-project DEQ20150331682]
  9. MD-PhD program of Imagine Institute [ANR-10-IAHU-01]
  10. DFG [CRC1140, CRC 992, HU 1016/8-1]
  11. BMBF [01GM1518C]
  12. European Research Council-ERC [616891]
  13. H2020-IMI2 consortium BEAt-DKD
  14. NIH [R01 HL54732, P01 AG033456]
  15. RB&MCG by a Glenn Award for Research in Biological Mechanisms of Aging

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Recent evidence suggests that the presence of more than one pathogenic mutation in a single patient is more common than previously anticipated. One of the challenges hereby is to dissect the contribution of each gene mutation, for which animal models such as Drosophila can provide a valuable aid. Here, we identified three families with mutations in ADD3, encoding for adducin-., with intellectual disability, microcephaly, cataracts and skeletal defects. In one of the families with additional cardiomyopathy and steroid-resistant nephrotic syndrome (SRNS), we found a homozygous variant in KAT2B, encoding the lysine acetyltransferase 2B, with impact on KAT2B protein levels in patient fibroblasts, suggesting that this second mutation might contribute to the increased disease spectrum. In order to define the contribution of ADD3 and KAT2B mutations for the patient phenotype, we performed functional experiments in the Drosophila model. We found that both mutations were unable to fully rescue the viability of the respective null mutants of the Drosophila homologs, hts and Gcn5, suggesting that they are indeed pathogenic in flies. While the KAT2B/Gcn5 mutation additionally showed a significantly reduced ability to rescue morphological and functional defects of cardiomyocytes and nephrocytes (podocyte-like cells), this was not the case for the ADD3 mutant rescue. Yet, the simultaneous knockdown of KAT2B and ADD3 synergistically impaired kidney and heart function in flies as well as the adhesion and migration capacity of cultured human podocytes, indicating that mutations in both genes may be required for the full clinical manifestation. Altogether, our studies describe the expansion of the phenotypic spectrum in ADD3 deficiency associated with a homozygous likely pathogenic KAT2B variant and thereby identify KAT2B as a susceptibility gene for kidney and heart disease in ADD3-associated disorders.

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