A new mouse model of ATR-X syndrome carrying a common patient mutation exhibits neurological and morphological defects

Author:

Tillotson Rebekah12,Yan Keqin3,Ruston Julie1,DeYoung Taylor4,Córdova Alex3,Turcotte-Cardin Valérie35,Yee Yohan46,Taylor Christine1,Visuvanathan Shagana1,Babbs Christian2,Ivakine Evgueni A17,Sled John G468,Nieman Brian J4689,Picketts David J35,Justice Monica J110

Affiliation:

1. Genetics and Genome Biology Program, The Hospital for Sick Children, The Peter Gilgan Centre for Research and Learning , Toronto, ON M5G 0A4 , Canada

2. MRC Molecular Haematology Unit, Weatherall Institute of Molecular Medicine, John Radcliffe Hospital/Headley Way , Oxford OX3 9DS , UK

3. Regenerative Medicine Program, Ottawa Hospital Research Institute , Ottawa, ON K1H 8L6 , Canada

4. Mouse Imaging Centre, The Hospital for Sick Children , Toronto, ON M5T 3H7 , Canada

5. Cellular & Molecular Medicine, University of Ottawa , Ottawa, ON K1H 8M5 , Canada

6. Department of Medical Biophysics, University of Toronto , Toronto, ON M5G 1L7 , Canada

7. Department of Physiology, University of Toronto , Toronto, ON M5S 1A8 , Canada

8. Translational Medicine Program, The Hospital for Sick Children, The Peter Gilgan Centre for Research and Learning , Toronto, ON M5G 0A4 , Canada

9. Ontario Institute for Cancer Research , Toronto, ON M5G 0A3 , Canada

10. Department of Molecular Genetics, University of Toronto , Toronto, ON M5S 1A1 , Canada

Abstract

Abstract ATRX is a chromatin remodelling ATPase that is involved in transcriptional regulation, DNA damage repair and heterochromatin maintenance. It has been widely studied for its role in ALT-positive cancers, but its role in neurological function remains elusive. Hypomorphic mutations in the X-linked ATRX gene cause a rare form of intellectual disability combined with alpha-thalassemia called ATR-X syndrome in hemizygous males. Clinical features also include facial dysmorphism, microcephaly, short stature, musculoskeletal defects and genital abnormalities. As complete deletion of ATRX in mice results in early embryonic lethality, the field has largely relied on conditional knockout models to assess the role of ATRX in multiple tissues. Given that null alleles are not found in patients, a more patient-relevant model was needed. Here, we have produced and characterized the first patient mutation knock-in model of ATR-X syndrome, carrying the most common causative mutation, R246C. This is one of a cluster of missense mutations located in the chromatin-binding domain and disrupts its function. The knock-in mice recapitulate several aspects of the patient disorder, including craniofacial defects, microcephaly, reduced body size and impaired neurological function. They provide a powerful model for understanding the molecular mechanisms underlying ATR-X syndrome and testing potential therapeutic strategies.

Funder

Sir Henry Wellcome Postdoctoral Fellowship

Canadian Institutes of Health Research

Publisher

Oxford University Press (OUP)

Subject

Genetics (clinical),Genetics,Molecular Biology,General Medicine

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