Novel pathogenic COL11A1/COL11A2 variants in Stickler syndrome detected by targeted NGS and exome sequencing

被引:42
作者
Acke, Frederic R. [1 ,2 ]
Malfait, Fransiska [2 ]
Vanakker, Olivier M. [2 ]
Steyaert, Wouter [2 ]
De Leeneer, Kim [2 ]
Mortier, Geert [3 ]
Dhooge, Ingeborg
De Paepe, Anne [1 ,2 ]
De Leenheer, Els M. R. [1 ]
Coucke, Paul J. [2 ]
机构
[1] Ghent Univ Hosp, Dept Otorhinolaryngol, B-9000 Ghent, Belgium
[2] Ghent Univ Hosp, Ctr Med Genet, B-9000 Ghent, Belgium
[3] Univ Antwerp, Univ Antwerp Hosp, Dept Med Genet, B-2650 Edegem, Belgium
关键词
COL11A1; COL11A2; Stickler syndrome; Next-generation sequencing; Targeted NGS; Exome sequencing; COL11A1; GENE; MARSHALL-SYNDROME; FUNCTION MUTATION; COLLAGEN-XI; STOP CODON; COL2A1; FAMILY; TYPE-2; SUBSTITUTION; ARGININE;
D O I
10.1016/j.ymgme.2014.09.001
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Introduction: Stickler syndrome is caused by mutations in genes encoding type II and type XI collagens. About 85% of the pathogenic variants is found in COL2A1 (Stickler type 1), whereas a minority of mutations has been reported in COL11A1 (Stickler type 2) and COL11A2 (Stickler type 3). Beside the typical skeletal and orofacial manifestations, ocular anomalies are predominantly present in type 1 and type 2, while hearing loss is more pronounced in type 2 and type 3. Methods: We performed COL11A1 mutation analysis for 40 type 2 Stickler patients and COL11A2 mutation analysis for five type 3 Stickler patients, previously all COL2A1 mutation-negative, using targeted next-generation sequencing (NGS) whereas whole-exome sequencing (WES) was performed in parallel for two patients. Three patients were analyzed for both genes due to unclear ocular findings. Results: In total 14 COL11A1 and two COL11A2 mutations could be identified, seven of which are novel. Splice site alterations are the most frequent mutation type, followed by glycine substitutions. In addition, six variants of unknown significance (VUS) have been found. Identical mutations and variants were identified with both NGS techniques. Conclusion: We expand the mutation spectrum of COL11A1 and COL11A2 in Stickler syndrome patients and show that targeted NGS is an efficient and cost-effective molecular tool in the genetic diagnosis of Stickler syndrome, whereas the more standardized WES might be an alternative approach. (C) 2014 Published by Elsevier Inc.
引用
收藏
页码:230 / 235
页数:6
相关论文
共 36 条
  • [1] Hearing impairment in Stickler syndrome: a systematic review
    Acke, Frederic R. E.
    Dhooge, Ingeborg J. M.
    Malfait, Fransiska
    De Leenheer, Els M. R.
    [J]. ORPHANET JOURNAL OF RARE DISEASES, 2012, 7
  • [2] STOP CODON IN THE PROCOLLAGEN-II GENE (COL2A1) IN A FAMILY WITH THE STICKLER SYNDROME (ARTHROOPHTHALMOPATHY)
    AHMAD, NN
    ALAKOKKO, L
    KNOWLTON, RG
    JIMENEZ, SA
    WEAVER, EJ
    MAGUIRE, JI
    TASMAN, W
    PROCKOP, DJ
    [J]. PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1991, 88 (15) : 6624 - 6627
  • [3] Mosaicism in Marshall Syndrome
    Ala-Kokko, Leena
    Shanske, Alan L.
    [J]. AMERICAN JOURNAL OF MEDICAL GENETICS PART A, 2009, 149A (06) : 1327 - 1330
  • [4] An integrated map of genetic variation from 1,092 human genomes
    Altshuler, David M.
    Durbin, Richard M.
    Abecasis, Goncalo R.
    Bentley, David R.
    Chakravarti, Aravinda
    Clark, Andrew G.
    Donnelly, Peter
    Eichler, Evan E.
    Flicek, Paul
    Gabriel, Stacey B.
    Gibbs, Richard A.
    Green, Eric D.
    Hurles, Matthew E.
    Knoppers, Bartha M.
    Korbel, Jan O.
    Lander, Eric S.
    Lee, Charles
    Lehrach, Hans
    Mardis, Elaine R.
    Marth, Gabor T.
    McVean, Gil A.
    Nickerson, Deborah A.
    Schmidt, Jeanette P.
    Sherry, Stephen T.
    Wang, Jun
    Wilson, Richard K.
    Gibbs, Richard A.
    Dinh, Huyen
    Kovar, Christie
    Lee, Sandra
    Lewis, Lora
    Muzny, Donna
    Reid, Jeff
    Wang, Min
    Wang, Jun
    Fang, Xiaodong
    Guo, Xiaosen
    Jian, Min
    Jiang, Hui
    Jin, Xin
    Li, Guoqing
    Li, Jingxiang
    Li, Yingrui
    Li, Zhuo
    Liu, Xiao
    Lu, Yao
    Ma, Xuedi
    Su, Zhe
    Tai, Shuaishuai
    Tang, Meifang
    [J]. NATURE, 2012, 491 (7422) : 56 - 65
  • [5] Splicing mutations of 54-bp exons in the COL11A1 gene cause Marshall syndrome, but other mutations cause overlapping Marshall/Stickler phenotypes
    Annunen, S
    Körkkö, J
    Czarny, M
    Warman, ML
    Brunner, HG
    Kääriäinen, H
    Mulliken, JB
    Tranebjaerg, L
    Brooks, DG
    Cox, GF
    Cruysberg, JR
    Curtis, MA
    Davenport, SLH
    Friedrich, CA
    Kaitila, I
    Krawczynski, MR
    Latos-Bielenska, A
    Mukai, S
    Olsen, BR
    Shinno, N
    Somer, M
    Vikkula, M
    Zlotogora, J
    Prockop, DJ
    Ala-Kokko, L
    [J]. AMERICAN JOURNAL OF HUMAN GENETICS, 1999, 65 (04) : 974 - 983
  • [6] Avcin T, 2008, J RHEUMATOL, V35, P920
  • [7] A Loss of Function Mutation in the COL9A2 Gene Cause Autosomal Recessive Stickler Syndrome
    Baker, Stuart
    Booth, Carol
    Fillman, Corrine
    Shapiro, Michael
    Blair, Michael P.
    Hyland, James C.
    Ala-Kokko, Leena
    [J]. AMERICAN JOURNAL OF MEDICAL GENETICS PART A, 2011, 155A (07) : 1668 - 1672
  • [8] Disclosing incidental findings in genetics contexts: A review of the empirical ethical research
    Christenhusz, Gabrielle M.
    Devriendt, Koenraad
    Dierickx, Kris
    [J]. EUROPEAN JOURNAL OF MEDICAL GENETICS, 2013, 56 (10) : 529 - 540
  • [9] Next-generation sequencing: ready for the clinics?
    Desai, A. N.
    Jere, A.
    [J]. CLINICAL GENETICS, 2012, 81 (06) : 503 - 510
  • [10] Autosomal Recessive Stickler Syndrome Due to a Loss of Function Mutation in the COL9A3 Gene
    Faletra, Flavio
    D'Adamo, Adamo P.
    Bruno, Irene
    Athanasakis, Emmanouil
    Biskup, Saskia
    Esposito, Laura
    Gasparini, Paolo
    [J]. AMERICAN JOURNAL OF MEDICAL GENETICS PART A, 2014, 164 (01) : 42 - 47