Molecular and biochemical characterization of a novel intronic single point mutation in a Tunisian family with glycogen storage disease type III

被引:5
作者
Ben Rhouma, Faten [1 ,2 ,3 ]
Azzouz, Hatem [2 ,4 ]
Petit, Francois M. [5 ]
Ben Khelifa, Mariem [1 ,3 ]
Ben Chehida, Amel [2 ,4 ]
Nasrallah, Fehmi [6 ]
Parisot, Frederic [5 ]
Lasram, Khaled [1 ,3 ]
Kefi, Rym [1 ,3 ]
Bouyacoub, Yosra [1 ,3 ]
Romdhane, Lilia [1 ,7 ]
Baussan, Christiane [8 ]
Kaabachi, Naziha [2 ,6 ]
Ben Dridi, Marie-Francoise [2 ,4 ]
Tebib, Neji [2 ,4 ]
Abdelhak, Sonia [1 ,3 ,9 ]
机构
[1] Inst Pasteur Tunis, Lab Genom Biomed & Oncogenet LR11IPT05, Tunis 1002, Belvedere, Tunisia
[2] Fac Med Tunis, Unite Malad Neurol Enfant, Tunis 1007, Tunisia
[3] Univ Tunis El Manar, Tunis 1068, Tunisia
[4] Hop La Rabta Tunis, Dept Pediat, Unite Malad Metab Hereditaires, Tunis 1007, Tunisia
[5] Hop Antoine Beclere, AP HP, Lab Genet Mol, F-92141 Clamart, France
[6] Hop La Rabta Tunis, Biochim Lab, Tunis 1007, Tunisia
[7] Univ Carthage, Tunis 1054, Tunisia
[8] Hop Bicetre, Biochim Lab, F-94275 Le Kremlin Bicetre, France
[9] Pasteur Inst Tunis, Biomed Genom & Oncogenet Lab, Tunis 1002, Belvedere, Tunisia
关键词
Glycogenosis type III; Novel mutation; AGL gene; RT-PCR; Tunisian patients; Aberrant splicing; DEBRANCHING ENZYME GENE; SPLICE-SITE MUTATION; AGL GENE; EXON; SEQUENCE; PATIENT; MUSCLE; CARDIOMYOPATHY; VARIABILITY; DEFICIENCY;
D O I
10.1007/s11033-013-2500-z
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Genetic deficiency of the glycogen debranching enzyme causes glycogen storage disease type III, an autosomal recessive inherited disorder. The gene encoding this enzyme is designated as AGL gene. The disease is characterized by fasting hypoglycemia, hepatomegaly, growth retardation, progressive myopathy and cardiomyopathy. In the present study, we present clinical features and molecular characterization of two consanguineous Tunisian siblings suffering from Glycogen storage disease type III. The full coding exons of the AGL gene and their corresponding exon-intron boundaries were amplified for the patients and their parents. Gene sequencing identified a novel single point mutation at the conserved polypyrimidine tract of intron 21 in a homozygous state (IVS21-8A > G). This variant cosegregated with the disease and was absent in 102 control chromosomes. In silico analysis using online resources showed a decreased score of the acceptor splice site of intron 21. RT-PCR analysis of the AGL splicing pattern revealed a 7 bp sequence insertion between exon 21 and exon 22 due to the creation of a new 3' splice site. The predicted mutant enzyme was truncated by the loss of 637 carboxyl-terminal amino acids as a result of premature termination. This novel mutation is the first mutation identified in the region of Bizerte and the tenth AGL mutation identified in Tunisia. Screening for this mutation can improve the genetic counseling and prenatal diagnosis of GSD III.
引用
收藏
页码:4197 / 4202
页数:6
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