Chromosome 22q13.3 deletion syndrome with a de novo interstitial 22q13.3 cryptic deletion disrupting SHANK3

被引:44
作者
Delahaye, A. [1 ,2 ]
Toutain, A. [3 ]
Aboura, A. [2 ,4 ]
Dupont, C. [1 ,4 ]
Tabet, A. C. [2 ,4 ]
Benzacken, B. [1 ,2 ,4 ]
Elion, J. [4 ]
Verloes, A. [2 ,4 ]
Pipiras, E. [1 ,2 ]
Drunat, S. [4 ]
机构
[1] Univ Paris 13, APHP, Jean Verdier Univ Hosp, Histol Embryol Cytogenet Dept,UFR SMBH, Bondy, France
[2] INSERM, UMR 676, Paris, France
[3] Univ Hosp Tours, Dept Genet, Hop Bretonneau, Tours, France
[4] Robert Debre Univ Hosp, APHP, Dept Genet, Paris, France
关键词
Deletion; 22q13; SHANK3/PROSAP2; gene; MLPA; AUTISM SPECTRUM; MUTATIONS; SPEECH; GENE; 22Q;
D O I
10.1016/j.ejmg.2009.05.004
中图分类号
Q3 [遗传学];
学科分类号
071007 ; 090102 ;
摘要
Background: The 22q13.3 deletion syndrome (or Phelan-McDermid syndrome, MIM 606232) is characterized by developmental delay, absent or severely delayed speech, neonatal hypotonia, autistic behavior, normal to accelerated growth, and minor dysmorphic facial features. Among the three genes in the minimal critical region (from the centromere to the telomere: SHANK3, ACR and RABL2B), the defect in the SHANK3 gene is considered to be the cause of the neurobehavioral symptoms. Objective: We describe the molecular characterization of a de novo interstitial del(22)(q13.3q13.3) disrupting the SHANK3 gene in a child with a phenotype compatible with the 22q13.3 deletion syndrome. Methods: Clinical work-up included clinical histories, physical, neurological, and ophthalmological examinations, and imaging of the brain. Commercially available MLPA for subtelomeric analysis, FISH specific probes and quantitative real-time PCR were used to characterize the rearrangement. Results: Subtelomere analysis by MLPA showed a discrepancy between P036B and P070 kits (MCR Holland (R)): the P070 MLPA 22q probe (targeting the ARSA gene) showed a deletion but the P036B one (targeting the RABL2B gene) showed a normal result. FISH analysis using LSI TUPLE1/LSI ARSA (Vysis (R)) probes confirmed deletion of ARSA, whereas FISH with N25/N85A3 (Cytocell (R)) probes, targeting the SHANK3 locus was normal. Supplemented FISH analysis using BAC clones allowed us to specify the centromeric breakpoint region of the interstitial deletion between clones RP11-354112 and RP11-232E17, at less than 2 Mb from the telomere. Quantitative real-time PCR of exon 5, 22 and 24 and intron 9 of SHANK3 showed that the telomeric breakpoint occurred between intron 9 and exon 22. Conclusions: These data highlight the difficulty of performing an appropriate test aimed at looking for cryptic 22q13.3 deletion. Furthermore, the molecular characterization of this interstitial 22q13.3 deletion contributes to the clinical and genetic delineation of the 22q13.3 deletion syndrome. (C) 2009 Elsevier Masson SAS. All rights reserved.
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收藏
页码:328 / 332
页数:5
相关论文
共 20 条
[1]   An architectural framework that may lie at the core of the postsynaptic density [J].
Baron, MK ;
Boeckers, TM ;
Vaida, B ;
Faham, S ;
Gingery, M ;
Sawaya, MR ;
Salyer, D ;
Gundelfinger, ED ;
Bowie, JU .
SCIENCE, 2006, 311 (5760) :531-535
[2]   Identification of a recurrent breakpoint within the SHANK3 gene in the 22q13.3 deletion syndrome [J].
Bonaglia, M. C. ;
Giorda, R. ;
Mani, E. ;
Aceti, G. ;
Anderlid, B-M ;
Baroncini, A. ;
Pramparo, T. ;
Zuffardi, O. .
JOURNAL OF MEDICAL GENETICS, 2006, 43 (10) :822-828
[3]   Disruption of the ProSAP2 gene in a t(12;22)(q24.1;q13.3) is associated with the 22q13.3 deletion syndrome [J].
Bonaglia, MC ;
Giorda, R ;
Borgatti, R ;
Felisari, G ;
Gagliardi, C ;
Selicorni, A ;
Zuffardi, O .
AMERICAN JOURNAL OF HUMAN GENETICS, 2001, 69 (02) :261-268
[4]   22q13.3 deletion syndrome: A recognizable malformation syndrome associated with marked speech and language delay [J].
Cusmano-Ozog, Kristina ;
Manning, Melanie A. ;
Hoyme, H. Eugene .
AMERICAN JOURNAL OF MEDICAL GENETICS PART C-SEMINARS IN MEDICAL GENETICS, 2007, 145C (04) :393-398
[5]   Mutations in the gene encoding the synaptic scaffolding protein SHANK3 are associated with autism spectrum disorders [J].
Durand, Christelle M. ;
Betancur, Catalina ;
Boeckers, Tobias M. ;
Bockmann, Juergen ;
Chaste, Pauline ;
Fauchereau, Fabien ;
Nygren, Gudrun ;
Rastam, Maria ;
Gillberg, I. Carina ;
Anckarsater, Henrik ;
Sponheim, Eili ;
Goubran-Botros, Hany ;
Delorme, Richard ;
Chabane, Nadia ;
Mouren-Simeoni, Marie-Christine ;
de Mas, Philippe ;
Bieth, Eric ;
Roge, Bernadette ;
Heron, Delphine ;
Burglen, Lydie ;
Gillberg, Christopher ;
Leboyer, Marion ;
Bourgeron, Thomas .
NATURE GENETICS, 2007, 39 (01) :25-27
[6]  
Fujita Y, 2000, AM J MED GENET, V92, P195
[7]  
Gauthier J., 2008, AM J MED GENET B
[8]   22q13 deletion syndrome: An update and review for the primary pediatrician [J].
Havens, JM ;
Visootsak, J ;
Phelan, MC ;
Graham, JM .
CLINICAL PEDIATRICS, 2004, 43 (01) :43-53
[9]   Telomeric 22q13 deletions resulting from rings, simple deletions, and translocations: cytogenetic, molecular, and clinical analyses of 32 new observations [J].
Luciani, JJ ;
de Mas, P ;
Depetris, D ;
Mignon-Ravix, C ;
Bottani, A ;
Prieur, M ;
Jonveaux, P ;
Philippe, A ;
Bourrouillou, G ;
de Martinville, B ;
Delobel, B ;
Vallee, L ;
Croquette, MF ;
Mattei, MG .
JOURNAL OF MEDICAL GENETICS, 2003, 40 (09) :690-696
[10]  
MacLean JE, 2000, AM J MED GENET, V90, P382, DOI 10.1002/(SICI)1096-8628(20000228)90:5<382::AID-AJMG7>3.0.CO