Congenital cataracts - Facial dysmorphism - Neuropathy

被引:22
作者
Kalaydjieva, Luba [1 ]
机构
[1] Univ Western Australia, Med Res Ctr, Western Australian Inst Med Res, Nedlands, WA 6009, Australia
关键词
D O I
10.1186/1750-1172-1-32
中图分类号
Q3 [遗传学];
学科分类号
071007 ; 090102 ;
摘要
Congenital Cataracts Facial Dysmorphism Neuropathy (CCFDN) syndrome is a complex developmental disorder of autosomal recessive inheritance. To date, CCFDN has been found to occur exclusively in patients of Roma (Gypsy) ethnicity; over 100 patients have been diagnosed. Developmental abnormalities include congenital cataracts and microcorneae, primary hypomyelination of the peripheral nervous system, impaired physical growth, delayed early motor and intellectual development, mild facial dysmorphism and hypogonadism. Para-infectious rhabdomyolysis is a serious complication reported in an increasing number of patients. During general anaesthesia, patients with CCFDN require careful monitoring as they have an elevated risk of complications. CCFDN is a genetically homogeneous condition in which all patients are homozygous for the same ancestral mutation in the CTDPI gene. Diagnosis is clinical and is supported by electrophysiological and brain imaging studies. The major differential diagnosis is Marinesco-Sjogren syndrome. The definitive diagnosis is molecular, based on homozygosity for the CTDPI mutation. CTDPI maps to 18qter and encodes a protein phosphatase whose only known substrate is the phosphorylated serine residues of the carboxy-terminal domain of the largest subunit of RNA polymerase II, indicating that CCFDN affects basic cellular processes of gene expression and developmental regulation. Families benefit from genetic counselling and predictive testing. Management includes surgical treatment of the cataracts, and rehabilitation and corrective orthopaedic surgery for the peripheral neuropathy. Thus, the most disabling manifestations, though not curable, are manageable, and allow an acceptable quality of life and everyday living. Current data indicate that patients survive well into adulthood.
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相关论文
共 18 条
[1]   Congenital cataracts facial dysmorphism neuropathy (CCFDN) syndrome: a novel developmental disorder in Gypsies maps to 18qter [J].
Angelicheva, D ;
Turnev, I ;
Dye, D ;
Chandler, D ;
Thomas, PK ;
Kalaydjieva, L .
EUROPEAN JOURNAL OF HUMAN GENETICS, 1999, 7 (05) :560-566
[2]   The gene disrupted in Marinesco-Sjogren syndrome encodes SIL1, an HSPA5 cochaperone [J].
Anttonen, AK ;
Mahjneh, I ;
Hämäläinen, RH ;
Lagier-Tourenne, C ;
Kopra, O ;
Waris, L ;
Anttonen, M ;
Joensuu, T ;
Kalimo, H ;
Paetau, A ;
Tranebjaerg, L ;
Chaigne, D ;
Koenig, M ;
Eeg-Olofsson, O ;
Udd, B ;
Somer, M ;
Somer, H ;
Lehesjoki, AE .
NATURE GENETICS, 2005, 37 (12) :1309-1311
[3]  
CHAMBERS RS, 1994, J BIOL CHEM, V269, P26243
[4]   INFLUENZA-A AND RHABDOMYOLYSIS [J].
FOULKES, W ;
REES, J ;
SEWRY, C .
JOURNAL OF INFECTION, 1990, 21 (03) :303-304
[5]   The P28T mutation in the GALK1 gene accounts for galactokinase deficiency in Roma (Gypsy) patients across Europe [J].
Hunter, M ;
Heyer, E ;
Austerlitz, F ;
Angelicheva, D ;
Nedkova, V ;
Briones, P ;
Gata, A ;
De Pablo, R ;
Lászlo, A ;
Bosshard, L ;
Gitzelmann, R ;
Tordai, A ;
Kalmar, L ;
Szalai, C ;
Balogh, I ;
Lupu, C ;
Corches, A ;
Popa, G ;
Perez-Lezaun, A ;
Kalaydjieva, LV .
PEDIATRIC RESEARCH, 2002, 51 (05) :602-606
[6]   A founder mutation in the GK1 gene is responsible for galactokinase deficiency in Roma (Gypsies) [J].
Kalaydjieva, L ;
Perez-Lezaun, A ;
Angelicheva, D ;
Onengut, S ;
Dye, D ;
Bosshard, NU ;
Jordanova, A ;
Savov, A ;
Yanakiev, P ;
Kremensky, I ;
Radeva, B ;
Hallmayer, J ;
Markov, A ;
Nedkova, V ;
Tournev, I ;
Aneva, L ;
Gitzelmann, R .
AMERICAN JOURNAL OF HUMAN GENETICS, 1999, 65 (05) :1299-1307
[7]  
Kalaydjieva Luba, 2005, Neuromuscul Disord, V15, P65, DOI 10.1016/j.nmd.2004.09.008
[8]   Homozygosity mapping of Marinesco-Sjogren syndrome to 5q31 [J].
Lagier-Tourenne, C ;
Tranebjærg, L ;
Chaigne, D ;
Gribaa, M ;
Dollfus, H ;
Silvestri, G ;
Bétard, C ;
Warter, JM ;
Koenig, M .
EUROPEAN JOURNAL OF HUMAN GENETICS, 2003, 11 (10) :770-778
[9]   An extensive network of coupling among gene expression machines [J].
Maniatis, T ;
Reed, R .
NATURE, 2002, 416 (6880) :499-506
[10]  
Marinesco G, 1931, ENCEPHALE, V26, P97