| Literature DB >> 20618940 |
Sevjidmaa Baasanjav1, Aleksander Jamsheer, Mateusz Kolanczyk, Denise Horn, Tomasz Latos, Katrin Hoffmann, Anna Latos-Bielenska, Stefan Mundlos.
Abstract
BACKGROUND: Osteopoikilosis is a rare autosomal dominant genetic disorder, characterised by the occurrence of the hyperostotic spots preferentially localized in the epiphyses and metaphyses of the long bones, and in the carpal and tarsal bones 1. Heterozygous LEMD3 gene mutations were shown to be the primary cause of the disease 2. Association of the primarily asymptomatic osteopokilosis with connective tissue nevi of the skin is categorized as Buschke-Ollendorff syndrome (BOS) 3. Additionally, osteopoikilosis can coincide with melorheostosis (MRO), a more severe bone disease characterised by the ectopic bone formation on the periosteal and endosteal surface of the long bones 456. However, not all MRO affected individuals carry germ-line LEMD3 mutations 7. Thus, the genetic cause of MRO remains unknown. Here we describe a familial case of osteopoikilosis in which a novel heterozygous LEMD3 mutation coincides with a novel mutation in EXT1, a gene involved in aetiology of multiple exostosis syndrome. The patients affected with both LEMD3 and EXT1 gene mutations displayed typical features of the osteopoikilosis. There were no additional skeletal manifestations detected however, various non-skeletal pathologies coincided in this group.Entities:
Mesh:
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Year: 2010 PMID: 20618940 PMCID: PMC2912259 DOI: 10.1186/1471-2350-11-110
Source DB: PubMed Journal: BMC Med Genet ISSN: 1471-2350 Impact factor: 2.103
Sequences of the primers used for LEMD3 and EXT1 gene amplification and sequencing.
| Exon name | F Primer sequence 5'- 3' | R Primer sequence 5' - 3' |
|---|---|---|
| LEMD3_e1-1 | CTCAGGTGAGCTCCTCCC | CGACTCGTCCGAGCTGAAG |
| LEMD3_e1-2 | GCGACCTCTCCTACTTACGG | GTCGTCGTCGTCCTCTTCC |
| LEMD3_e1-3 | AGGAGAGGGACCCGGAG | GGGGAGTCCACACTGAAGG |
| LEMD3_e1-4 | AGGAGGGTGTGATCAAGTGG | GCGCAAATAGTCTTTCAGGG |
| LEMD3_e2 | TTTAGCAAAGTACATGCTGGC | TTATACGACAGTTAGGGAATACTCAG |
| LEMD3_e3 | TTCAGATTATGTGGCTTCTGTG | TTCACAAATATAACACTGGACTTGG |
| LEMD3_e4 | TGTGGTTAATGTAATGGTAGTTGTTTG | GGAACAAGAGCGAAACTGTG |
| LEMD3_e5-6 | TTGGAGTAGTGGGAAAATGC | GCTGTGACTTATGTGGCAACC |
| LEMD3_e7-8 | GAAGGTTCATTCCGTTGTGG | AGTTGAGAAGGGTCACAGCTC |
| LEMD3_e9 | CATCTAAATCTTCTTTGAACAAACTCC | CAGAACGAGAGAGTTTTGCC |
| LEMD3_e10 | CTAACCAGGGGTCTGGCTC | TTTGCTTGGAATTTAATGAAAGAG |
| LEMD3_e11-12 | TCTACCTCCTGTTAGTCAACAAGC | TGGTAAAAGACATATGAGCACAAAAC |
| LEMD3_e13 | ATTGCATGGCTCTTGGTTTG | GCTGCCTCACTGCTAAATCC |
| EXT1_e1-1 | TCTTTACAGGCGGGAAGATG | TGTTCCACAAGTGGAGACTCTG |
| EXT_e1-2 | CCAGGTTCTACACCTCGGAC | CTCAGTTCCAGGCTCAAAGG |
| EXT1_e2 | CTGGTGGCTTTCCCGAG | AAGGGAAACCACACCTTCTC |
| EXT1_e3 | AAGCTTCCTTTCCTTCTGGC | CCATGACACAGGTAATTTTCTCC |
| EXT1_e4 | TGCTAGAAGCCAAATGCTATG | TGGACCAATCACACATCCC |
| EXT1_e5 | CTCTGACTGCCACCATCTTTC | AAGCAATCTTCAATGCAGGG |
| EXT1_e6 | ATTTGCTCCAGCATGAGGC | TGAATGAAAGGGAGTAGCAGG |
| EXT1_e7 | GCTGAGATTTCCAGCTCCTC | AACAGGGAGAAGATATCTAGGGC |
| EXT1_e8 | AGATTCCTTCGGTGTTGAGG | CAAGGCACGGCTAAAAGAAG |
| EXT1_e9 | CCGGATTTTGCATTATGAATTAG | ATCAGCAAAACTTAAGCGGG |
| EXT1_e10 | GGGATTCAAAGAATGGGTATG | CTGGGTGGAACAGCTAGAGG |
| EXT1_e11 | TGCTCATTTGCCTGACTCC | ACAATCTGGCTCTGCTGATG |
Sequences of the primers used for EXT1 cDNA amplification and sequencing.
| PCR name | F Primer sequence 5'- 3' | R Primer sequence 5' - 3' |
|---|---|---|
| GCTGCTCGCCCGCCCTGGGTG | GTGGTGCAAGCCATTCCTAC | |
| CTCAGCTGGCTCTTGTCTCG | CTCGGTGTAGTCAGGCCAAG | |
| CTTGTGGAACAATGGTAGG | CCTATGACGGCAGCTTGGTTC | |
| GTATGATTATCGGGAAATG | CTGGGCACAGTACTGGGACTTGG | |
| CTGGTCTCTCAGTCCCAGC | GTCCCATCATTGTCTCCTTATAC | |
| GCCTCCAATCAAAGTGACCC | CTCTGCTGATGAGTGGATCTGC |
Figure 1Co-occurrence of . (A) Co-occurrence of LEMD3 (*) and EXT1 missense mutation (α) in the family affected with osteopoikilosis. A 9 bp deletion in EXT1 gene (β) affecting patient suffering from multiple exostoses. (B) Representative electrophoregrams of the detected mutations. Osteopoikilosis phenotype is shown in black, whereas multiple exostoses syndrome is represented with brown colour. Horizontal bars over symbols mark patients who underwent clinical examination and molecular testing.
Figure 2Sclerotic changes in the hands, feet, and pelvis of the osteopoikilosis affected patients positive for c.2203C > T (p.R735X) . (A) Hyperostotic spots are seen bilaterally in the distal parts of radius and carpal bones (arrows) as well as in the phalanges of hands and feet and in the pelvis (arrowheads). (B) Radiological appearance of the right hand of the proband (V:I - carrying intron 5 IVS5-2 A > G mutation) at the age of 5 years. Large exostoses in the proximal part of the humerus, as well as in the proximal and distal ends of the ulna and radius are demarcated with arrows.
Clinical symptoms identified in the patients presenting with osteopoikilosis.
| Patient IV:15 | Patient IV:17 | Patient III:13 | Patient III:10 | Patient IV:8 | |
|---|---|---|---|---|---|
| (female; 26 years) | (female; 24 years) | (male; 60 years) | (female; 54 years) | (male; 19 years) | |
| p.A578T | p.A578T | p.A578T | - | - | |
| Painful hands and feet | + | + | + | + | + |
| Dermatofibrosis | - | - | - | + | - |
| Additional skin changes | - | - | Vitiligo | - | - |
| Other symptoms/disorders | TOF, Ovarian cyst | Sinus cyst | DM2 | - | - |
| Laboratory tests (Ca, P, AP, ACP) | NE | NE | NE | Normal | NE |
TOF - tetralogy of Fallot; DM2 - diabetes mellitus type 2; NE - not examined; Ca - calcium; P - phosphate; AP - alkaline phosphatase; ACP - acid phosphatase
Figure 3Schematic representation of the LEMD3 and EXT1 protein structure with the protein motifs and domains assigned. (A) The LEMD3 R735X (*) mutation localizes in SMAD binding domain of LEMD3. EXT1 mutation A578T (α) localizes in the glycotransferase domain of EXT1. EXT1 mutation IVS5-2 A > G (p. DEL 429-431) (β) is located in the conserved region of the protein in-between two catalytically active domains. (B) Evolutionary conservation of the mutated amino acid residues in the EXT1. The block of absolute sequence conservation surrounding mutation sites is demarcated with the red bracket.