Two new class III G6PD variants [G6PD Tunis (c.920A>C: p.307Gln>Pro) and G6PD Nefza (c.968T>C: p.323 Leu>Pro)] and overview of the spectrum of mutations in Tunisia

被引:16
作者
Benmansour, Ikbel [1 ]
Moradkhani, Kamran [2 ,3 ]
Moumni, Imen [1 ]
Wajcman, Henri [3 ]
Hafsia, Raouf [4 ]
Ghanem, Abderraouf [5 ]
Abbes, Salem [1 ]
Prehu, Claude [2 ,3 ]
机构
[1] Inst Pasteur Tunis, Lab Hematol Mol & Cellulaire, Tunis 1002, Tunisia
[2] AP HP, Grp Henri Mondor Albert Chenevier, Serv Biochim Genet, Creteil, France
[3] INSERM, U955, F-94000 Creteil, France
[4] Hop Aziza Othmana Tunis, Serv Hematol, Tunis, Tunisia
[5] Hop Ben Arous, Serv Biol Clin, Ben Arous, Tunisia
关键词
G6PD deficiency; G6PD mutations; G6PG Tunis; G6PD Nefza; HUMAN GLUCOSE-6-PHOSPHATE-DEHYDROGENASE; MOLECULAR HETEROGENEITY; DEFICIENCY; SEQUENCE; ORIGIN; SINGLE;
D O I
10.1016/j.bcmd.2012.08.005
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
We screened 423 patients referred to our laboratory after hemolysis triggered by fava beans ingestion, neonatal jaundice or drug hemolysis. Others were asymptomatic but belonged to a family with a history of G6PD deficiency. The determination of enzymatic activity using spectrophotometric method, revealed 293 deficient (143 males and 150 females). The molecular analysis was performed by a combination of PCR-RFLP and DNA sequencing to characterize the mutations causing G6PD deficiency. 14 different genotypes have been identified : G6PD A(-) (376A>G;202G>A) (46.07%) and G6PD Med (33.10%) were the most common variants followed by G6PD Santamaria (5.80%), G6PD Kaiping (3.75%), the association [c.1311T and IVS11 93c] (3.75%), G6PD Chatham (2.04%), G6PD Aures (1.70%), G6PD A(-) Betica (0.68%), the association [376G;c.1311T;IVS11 93c] (0.68%), G6PD Malaga, G6PD Canton and G6PD Abeno respectively (0.34%). Two novel missense mutations were identified (c.920A>C: p.307Gln>Pro and c.968T>C: p.323 Leu> Pro). We designated these two class III variants as G6PD Tunis and G6PD Nefza. A mechanism which could account for the defective activity is discussed. (C) 2012 Elsevier Inc. All rights reserved.
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页码:110 / 114
页数:5
相关论文
共 29 条
[1]  
[Anonymous], 1967, B WHO, V36, P319
[2]   Human glucose-6-phosphate dehydrogenase:: the crystal structure reveals a structural NADP+ molecule and provides insights into enzyme deficiency [J].
Au, SWN ;
Gover, S ;
Lam, VMS ;
Adams, MJ .
STRUCTURE, 2000, 8 (03) :293-303
[3]   Molecular characterization of erythrocyte glucose-6-phosphate dehydrogenase deficiency in Tunisia [J].
Ben Daoud, B. ;
Mosbehi, I. ;
Prehu, C. ;
Chaouachi, D. ;
Hafsia, R. ;
Abbes, S. .
PATHOLOGIE BIOLOGIE, 2008, 56 (05) :260-267
[4]  
BEUTLER E, 1991, HUM GENET, V87, P462
[5]  
BEUTLER E, 1992, BLOOD, V80, P255
[6]  
BEUTLER E, 1989, BLOOD, V74, P2550
[7]  
BEUTLER E, 1991, J BIOL CHEM, V266, P4145
[8]   G6PD FERRARA-I HAS THE SAME 2 MUTATIONS AS G6PD A(-) BUT A DISTINCT BIOCHEMICAL PHENOTYPE [J].
CAPPELLINI, MD ;
SAMPIETRO, M ;
TONIOLO, D ;
CARANDINA, G ;
DIMONTEMUROS, FM ;
TAVAZZI, D ;
FIORELLI, G .
HUMAN GENETICS, 1994, 93 (02) :139-142
[9]   Molecular characterization of WD deficiency in Cyprus [J].
Drousiotou, A ;
Touma, EH ;
Andreou, N ;
Loiselet, J ;
Angastiniotis, M ;
Verrelli, BC ;
Tishkoff, SA .
BLOOD CELLS MOLECULES AND DISEASES, 2004, 33 (01) :25-30
[10]  
Guellouz N, 2010, Arch Inst Pasteur Tunis, V87, P69