TY - JOUR
T1 - Two patients with MIRAGE syndrome lacking haematological features
T2 - Role of somatic second-site reversion SAMD9 mutations
AU - Shima, Hirohito
AU - Koehler, Katrin
AU - Nomura, Yumiko
AU - Sugimoto, Kazuhiko
AU - Satoh, Akira
AU - Ogata, Tsutomu
AU - Fukami, Maki
AU - Jühlen, Ramona
AU - Schuelke, Markus
AU - Mohnike, Klaus
AU - Huebner, Angela
AU - Narumi, Satoshi
N1 - Funding Information:
Funding this work was partly supported by a DFG grant hU 895/5-2 (Clinical research Unit 252), a DFG grant Ko 3588/2-1, takeda Science Foundation, Japan Intractable Diseases (Nanbyo) research Foundation, the Grant-in-Aid for Scientific research on Innovative Areas from MeXt (3905-A02) and a grant from the practical research project for rare/Intractable Diseases of the Japan Agency for Medical research and Development, AMeD.
Publisher Copyright:
© 2018 Article author(s) (or their employer(s) unless otherwise stated in the text of the article). All rights reserved.
PY - 2018/2/1
Y1 - 2018/2/1
N2 - Background Myelodysplasia, infection, restriction of growth, adrenal hypoplasia, genital phenotypes and enteropathy (MIRAGE) syndrome is a recently described congenital disorder caused by heterozygous SAMD9 mutations. The phenotypic spectrum of the syndrome remains to be elucidated. Methods and results We describe two unrelated patients who showed manifestations compatible with MIRAGE syndrome, with the exception of haematological features. Leucocyte genomic DNA samples were analysed with next-generation sequencing and Sanger sequencing, revealing the patients to have two de novoSAMD9 mutations on the same allele (patient 1 p.[Gln695∗; Ala722Glu] and patient 2 p.[Gln39∗; Asp769Gly]). In patient 1, p.Gln695∗ was absent in genomic DNA extracted from hair follicles, implying that the non-sense mutation was acquired somatically. In patient 2, with the 46,XX karyotype, skewed X chromosome inactivation pattern was found in leucocyte DNA, suggesting monoclonality of cells in the haematopoietic system. In vitro expression experiments confirmed the growth-restricting capacity of the two missense mutant SAMD9 proteins that is a characteristic of MIRAGE-associated SAMD9 mutations. Conclusions Acquisition of a somatic nonsense SAMD9 mutation in the cells of the haematopoietic system might revert the cellular growth repression caused by the germline SAMD9 mutations (ie, second-site reversion mutations). Unexpected lack of haematological features in the two patients would be explained by the reversion mutations.
AB - Background Myelodysplasia, infection, restriction of growth, adrenal hypoplasia, genital phenotypes and enteropathy (MIRAGE) syndrome is a recently described congenital disorder caused by heterozygous SAMD9 mutations. The phenotypic spectrum of the syndrome remains to be elucidated. Methods and results We describe two unrelated patients who showed manifestations compatible with MIRAGE syndrome, with the exception of haematological features. Leucocyte genomic DNA samples were analysed with next-generation sequencing and Sanger sequencing, revealing the patients to have two de novoSAMD9 mutations on the same allele (patient 1 p.[Gln695∗; Ala722Glu] and patient 2 p.[Gln39∗; Asp769Gly]). In patient 1, p.Gln695∗ was absent in genomic DNA extracted from hair follicles, implying that the non-sense mutation was acquired somatically. In patient 2, with the 46,XX karyotype, skewed X chromosome inactivation pattern was found in leucocyte DNA, suggesting monoclonality of cells in the haematopoietic system. In vitro expression experiments confirmed the growth-restricting capacity of the two missense mutant SAMD9 proteins that is a characteristic of MIRAGE-associated SAMD9 mutations. Conclusions Acquisition of a somatic nonsense SAMD9 mutation in the cells of the haematopoietic system might revert the cellular growth repression caused by the germline SAMD9 mutations (ie, second-site reversion mutations). Unexpected lack of haematological features in the two patients would be explained by the reversion mutations.
KW - adrenal disorders
KW - genetics
KW - haematology (incl Blood Transfusion)
KW - mirage syndrome
KW - reversion mutation
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U2 - 10.1136/jmedgenet-2017-105020
DO - 10.1136/jmedgenet-2017-105020
M3 - Article
C2 - 29175836
AN - SCOPUS:85043346589
SN - 0022-2593
VL - 55
SP - 81
EP - 85
JO - Journal of medical genetics
JF - Journal of medical genetics
IS - 2
ER -