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Destabilized SMC5/6 complex leads to chromosome breakage syndrome with severe lung disease
Author(s) -
Saskia N. van der Crabben,
Marije P. Hennus,
Grant A. McGregor,
Deborah Ritter,
Sandesh C.S. Nagamani,
Owen Wells,
Magdaléna Harakaľová,
Iván K. Chinn,
Aaron Alt,
Lucie Vondrová,
Ron Hochstenbach,
Joris M. van Montfrans,
Suzanne TerheggenLagro,
Stef van Lieshout,
Markus J. van Roosmalen,
Ivo Renkens,
Karen Duran,
Isaäc J. Nijman,
Wigard P. Kloosterman,
Eric A. M. Hennekam,
Jordan S. Orange,
Peter M. van Hasselt,
David A. Wheeler,
Jan Paleček,
Alan R. Lehmann,
Antony W. Oliver,
Laurence H. Pearl,
Sharon E. Plon,
Johanne M. Murray,
Gijs van Haaften
Publication year - 2016
Publication title -
journal of clinical investigation
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 6.278
H-Index - 488
eISSN - 1558-8238
pISSN - 0021-9738
DOI - 10.1172/jci82890
Subject(s) - biology , genetics , missense mutation , genome instability , dna repair , chromosome , dna damage , mutation , gene , dna
The structural maintenance of chromosomes (SMC) family of proteins supports mitotic proliferation, meiosis, and DNA repair to control genomic stability. Impairments in chromosome maintenance are linked to rare chromosome breakage disorders. Here, we have identified a chromosome breakage syndrome associated with severe lung disease in early childhood. Four children from two unrelated kindreds died of severe pulmonary disease during infancy following viral pneumonia with evidence of combined T and B cell immunodeficiency. Whole exome sequencing revealed biallelic missense mutations in the NSMCE3 (also known as NDNL2) gene, which encodes a subunit of the SMC5/6 complex that is essential for DNA damage response and chromosome segregation. The NSMCE3 mutations disrupted interactions within the SMC5/6 complex, leading to destabilization of the complex. Patient cells showed chromosome rearrangements, micronuclei, sensitivity to replication stress and DNA damage, and defective homologous recombination. This work associates missense mutations in NSMCE3 with an autosomal recessive chromosome breakage syndrome that leads to defective T and B cell function and acute respiratory distress syndrome in early childhood.

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