Abstract
The 22q13 deletion syndrome is associated with global developmental delay, absent or delayed speech, and generalised hypotonia. In this study, the size and nature of 22q13 deletions (n=9) were studied in detail by high-resolution chromosome specific array-based comparative genomic hybridisation (array CGH). The deletion sizes varied considerably between the different patients, that is, the largest deletion spanning 8.4 Mb with the breakpoint mapping to 22q13.2 and the smallest deletion spanning 3.3 Mb with the breakpoint mapping to 22q13.31. In one case, a unique subtelomeric 3.9 Mb deletion associated with a 2.0 Mb duplication of 22q13 was observed, adding to a growing number of similar cases identified for other chromosome ends. Remarkably, this patient had signs suggestive of retinitis pigmentosa, which has never been reported before in the 22q13 deletion syndrome. The identification of two pairs of recurrent proximal breakpoints on 22q13 suggests that these specific regions may be prone to recombination, due to yet unknown genome architectural features. In addition to the copy number changes on 22q13, a duplication of ∼330 kb on 22q11.1 was observed and shown to be a genetic large-scale copy number variation without clinical consequences. The current study failed to reveal relationships between the clinical features and the deletion sizes. Global developmental delay and absent or severely delayed speech were observed in all patients, whereas hypotonia was present in 89% of the cases (8/9). This study underscores the utility of array CGH for characterising the size and nature of subtelomeric deletions, such as monosomy 22q13, and underlines the considerable variability in deletion size in the 22q13 deletion syndrome regardless of the clinical phenotype.
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References
De Vries BB, Winter R, Schinzel A, Ravenswaaij-Arts C : Telomeres: a diagnosis at the end of the chromosomes. J Med Genet 2003; 40: 385–398.
Knight SJ, Flint J : Perfect endings: a review of subtelomeric probes and their use in clinical diagnosis. J Med Genet 2000; 37: 401–409.
Luciani JJ, de Mas P, Depetris D et al: Telomeric 22q13 deletions resulting from rings, simple deletions, and translocations: cytogenetic, molecular, and clinical analyses of 32 new observations. J Med Genet 2003; 40: 690–696.
Manning MA, Cassidy SB, Clericuzio C et al: Terminal 22q deletion syndrome: a newly recognized cause of speech and language disability in the autism spectrum. Pediatrics 2004; 114: 451–457.
Phelan MC, Rogers RC, Saul RA et al: 22q13 deletion syndrome. Am J Med Genet 2001; 101: 91–99.
Wilson HL, Wong AC, Shaw SR et al: Molecular characterisation of the 22q13 deletion syndrome supports the role of haploinsufficiency of SHANK3/PROSAP2 in the major neurological symptoms. J Med Genet 2003; 40: 575–584.
Veltman JA, Yntema HG, Lugtenberg D et al: High resolution profiling of X chromosomal aberrations by array comparative genomic hybridisation. J Med Genet 2004; 41: 425–432.
De Vries BB, Bitner-Glindzicz M, Knight SJ et al: A boy with a submicroscopic 22qter deletion, general overgrowth and features suggestive of FG syndrome. Clin Genet 2000; 58: 483–487.
Koolen DA, Nillesen WM, Versteeg MH et al: Screening for subtelomeric rearrangements in 210 patients with unexplained mental retardation using multiplex ligation dependent probe amplification (MLPA). J Med Genet 2004; 41: 892–899.
Goizet C, Excoffier E, Taine L et al: Case with autistic syndrome and chromosome 22q13.3 deletion detected by FISH. Am J Med Genet 2000; 96: 839–844.
Vissers LE, De Vries BB, Osoegawa K et al: Array-based comparative genomic hybridization for the genomewide detection of submicroscopic chromosomal abnormalities. Am J Hum Genet 2003; 73: 1261–1270.
Buckley PG, Mantripragada KK, Benetkiewicz M et al: A full-coverage, high-resolution human chromosome 22 genomic microarray for clinical and research applications. Hum Mol Genet 2002; 11: 3221–3229.
Anderlid BM, Schoumans J, Anneren G et al: FISH-mapping of a 100-kb terminal 22q13 deletion. Hum Genet 2002; 110: 439–443.
Bonaglia MC, Giorda R, Borgatti R et al: Disruption of the ProSAP2 gene in a t(12;22)(q24.1;q13.3) is associated with the 22q13.3 deletion syndrome. Am J Hum Genet 2001; 69: 261–268.
Cotter PD, Kaffe S, Li L, Gershin IF, Hirschhorn K : Loss of subtelomeric sequence associated with a terminal inversion duplication of the short arm of chromosome 4. Am J Med Genet 2001; 102: 76–80.
Floridia G, Piantanida M, Minelli A et al: The same molecular mechanism at the maternal meiosis I produces mono- and dicentric 8p duplications. Am J Hum Genet 1996; 58: 785–796.
Bonaglia MC, Giorda R, Poggi G et al: Inverted duplications are recurrent rearrangements always associated with a distal deletion: description of a new case involving 2q. Eur J Hum Genet 2000; 8: 597–603.
Ballif BC, Yu W, Shaw CA, Kashork CD, Shaffer LG : Monosomy 1p36 breakpoint junctions suggest pre-meiotic breakage-fusion-bridge cycles are involved in generating terminal deletions. Hum Mol Genet 2003; 12: 2153–2165.
Giglio S, Broman KW, Matsumoto N et al: Olfactory receptor-gene clusters, genomic-inversion polymorphisms, and common chromosome rearrangements. Am J Hum Genet 2001; 68: 874–883.
Shaw CJ, Lupski JR : Implications of human genome architecture for rearrangement-based disorders: the genomic basis of disease. Hum Mol Genet 2004; 13 (Spec No 1): R57–R64.
Stankiewicz P, Lupski JR : Molecular-evolutionary mechanisms for genomic disorders. Curr Opin Genet Dev 2002; 12: 312–319.
Sebat J, Lakshmi B, Troge J et al: Large-scale copy number polymorphism in the human genome. Science 2004; 305: 525–528.
Acknowledgements
We thank the patients and their parents for their cooperation. David A Koolen, Joris A Veltman and Bert BA de Vries were supported by a grant from The Netherlands Organisation for Health Research and Development.
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Koolen, D., Reardon, W., Rosser, E. et al. Molecular characterisation of patients with subtelomeric 22q abnormalities using chromosome specific array-based comparative genomic hybridisation. Eur J Hum Genet 13, 1019–1024 (2005). https://doi.org/10.1038/sj.ejhg.5201456
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DOI: https://doi.org/10.1038/sj.ejhg.5201456


