Partial NSD1 deletions cause 5% of Sotos syndrome and are readily identifiable by multiplex ligation dependent probe amplification -: art. no. e56

被引:40
作者
Douglas, J
Tatton-Brown, K
Coleman, K
Guerrero, S
Berg, J
Cole, TRP
FitzPatrick, D
Gillerot, Y
Hughes, HE
Pilz, D
Raymond, FL
Temple, IK
Irrthum, A
Schouten, JP
Rahman, N
机构
[1] Inst Canc Res, Sect Canc Genet, Sutton SM2 5NG, Surrey, England
[2] Univ Dundee, Ninewells Hosp & Med Sch, Human Genet Unit, Dundee DD1 9SY, Scotland
[3] MRC Holland, Amsterdam, Netherlands
[4] Birmingham Womens Hosp, Clin Genet Unit, Birmingham, W Midlands, England
[5] MRC, Human Genet Unit, Edinburgh, Midlothian, Scotland
[6] Inst Pathol Genet, Loverval, Belgium
[7] Univ Wales Hosp, Inst Med Genet, Cardiff, Wales
[8] Addenbrookes Hosp, Dept Med Genet, Cambridge, England
[9] Southampton Univ Hosp, Dept Human Genet, Southampton, Hants, England
基金
英国医学研究理事会;
关键词
D O I
10.1136/jmg.2005.031930
中图分类号
Q3 [遗传学];
学科分类号
071007 ; 090102 ;
摘要
Background: Most cases of Sotos syndrome are caused by intragenic NSD1 mutations or 5q35 microdeletions. It is uncertain whether allelic or genetic heterogeneity underlies the residual cases and it has been proposed that other mechanisms, such as 11p15 defects, might be responsible for Sotos cases without NSD1 mutations or 5q35 microdeletions. Objective: To develop a multiplex ligation dependent probe amplification (MLPA) assay to screen NSD1 for exonic deletions/duplications. Methods: Analysis was undertaken of 18 classic Sotos syndrome cases in which NSD1 mutations and 5q35 microdeletions were excluded. Long range polymerase chain reaction (PCR) was used to characterise the mechanism of generation of the partial NSD1 deletions. Results: Eight unique partial NSD1 deletions were identified: exons 1-2 (n = 4), exons 3-5, exons 9-13, exons 19-21, and exon 22. Using long range PCR six of the deletions were confirmed and the precise breakpoints in five cases characterised. This showed that three had arisen through Alu-Alu recombination and two from non-homologous end joining. Conclusions: MLPA is a robust, inexpensive, simple technique that reliably detects both 5q35 microdeletions and partial NSD1 deletions that together account for similar to 15% of Sotos syndrome.
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相关论文
共 28 条
[1]   Translocation and gross deletion breakpolints in human inherited disease and cancer I: Nucleotide composition and recomblination-assocliated motifs [J].
Abeysinghe, SS ;
Chuzhanova, N ;
Krawczak, M ;
Ball, EV ;
Cooper, DN .
HUMAN MUTATION, 2003, 22 (03) :229-244
[2]   Alu repeats and human genomic diversity [J].
Batzer, MA ;
Deininger, PL .
NATURE REVIEWS GENETICS, 2002, 3 (05) :370-379
[3]   Paradoxical NSD1 mutations in Beckwith-Wiedemann syndrome and 11p15 anomalies in Sotos syndrome [J].
Baujat, G ;
Rio, M ;
Rossignol, S ;
Sanlaville, D ;
Lyonnet, S ;
Le Merrer, M ;
Munnich, A ;
Gicquel, C ;
Cormier-Daire, V ;
Colleaux, L .
AMERICAN JOURNAL OF HUMAN GENETICS, 2004, 74 (04) :715-720
[4]   SOTOS SYNDROME - A STUDY OF THE DIAGNOSTIC-CRITERIA AND NATURAL-HISTORY [J].
COLE, TRP ;
HUGHES, HE .
JOURNAL OF MEDICAL GENETICS, 1994, 31 (01) :20-32
[5]   Alu repeats and human disease [J].
Deininger, PL ;
Batzer, MA .
MOLECULAR GENETICS AND METABOLISM, 1999, 67 (03) :183-193
[6]   NSD1 mutations are the major cause of Sotos syndrome and occur in some cases of weaver syndrome but are rare in other overgrowth phenotypes [J].
Douglas, J ;
Hanks, S ;
Temple, IK ;
Davies, S ;
Murray, A ;
Upadhyaya, M ;
Tomkins, S ;
Hughes, HE ;
Cole, TRP ;
Rahman, N .
AMERICAN JOURNAL OF HUMAN GENETICS, 2003, 72 (01) :132-143
[7]  
Faravelli F, 2003, AM J HUM GENET, V73, P197
[8]  
Hogervorst FBL, 2003, CANCER RES, V63, P1449
[9]   Fifty microdeletions among 112 cases of Sotos syndrome: low copy repeats possibly mediate the common deletion [J].
Kurotaki, N ;
Harada, N ;
Shimokawa, O ;
Miyake, N ;
Kawame, H ;
Uetake, K ;
Makita, Y ;
Kondoh, T ;
Ogata, T ;
Hasegawa, T ;
Nagai, T ;
Ozaki, T ;
Touyama, M ;
Shenhav, R ;
Ohashi, H ;
Medne, L ;
Shiihara, T ;
Ohtsu, S ;
Kato, Z ;
Okamoto, N ;
Nishimoto, J ;
Lev, D ;
Miyoshi, Y ;
Ishikiriyama, S ;
Sonoda, T ;
Sakazume, S ;
Fukushima, Y ;
Kurosawa, K ;
Cheng, JF ;
Yoshiura, K ;
Ohta, T ;
Kishino, T ;
Niikawa, N ;
Matsumoto, N .
HUMAN MUTATION, 2003, 22 (05) :378-387
[10]   Haploinsufficiency of NSD1 causes Sotos syndrome [J].
Kurotaki, N ;
Imaizumi, K ;
Harada, N ;
Masuno, M ;
Kondoh, T ;
Nagai, T ;
Ohashi, H ;
Naritomi, K ;
Tsukahara, M ;
Makita, Y ;
Sugimoto, T ;
Sonoda, T ;
Hasegawa, T ;
Chinen, Y ;
Tomita, H ;
Kinoshita, A ;
Mizuguchi, T ;
Yoshiura, K ;
Ohta, T ;
Kishino, T ;
Fukushima, Y ;
Niikawa, N ;
Matsumoto, N .
NATURE GENETICS, 2002, 30 (04) :365-366