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Cloning of the putative tumour suppressor gene for hereditary multiple exostoses (EXT1).

Hereditary multiple exostoses is an autosomal dominant disorder that is characterized by short stature and multiple, benign bone tumours. In a majority of families, the genetic defect (EXT1) is linked to the Langer-Giedion syndrome chromosomal region in 8q24.1. From this region we have cloned and characterized a cDNA which spans chromosomal breakpoints previously identified in two multiple exostoses patients. Furthermore, the gene harbours frameshift mutations in affected members of two EXT1 families. The cDNA has a coding region of 2,238 bp with no apparent homology to other known gene sequences and thus its function remains elusive. However, recent studies in sporadic and exostosis-derived chondrosarcomas suggest that the 8q24.1-encoded EXT1 gene may have tumour suppressor function.

Amino Acid Sequence↗

The short-lived exostosis induced surgically versus the lasting genetic hereditary multiple exostoses.

Hereditary osteochondromas are often caused by mutation in the EXT1 gene. The lesions are typified by formation of a "pseudo" growth plate like lesion growing at 60 degrees to the normal growth direction of the bone. Such lesions can be mimicked surgically by reverting the position--the polarity of the zone of LaCroix. The current study attempts to compare the pathology between EXT1 gene expression in humans and surgically created osteochondroma pathology in a rat model. Tissues of human bunion, human embryonal tissue, and human adult cartilage as well as normal rat epiphyses served as controls. Rats were operated on and a 60 degree span of the ring of LaCroix was inverted as described by Delgado (Delgado, E., Rodriguez, J. I., Serada, A., Tellez, M., and Pariagoa, R.. Clin. Orthop. 201, 251-258 (1985)). The surgically created osteochondromas were assessed by histology, histochemistry, and immunohistochemistry. The findings show that the surgically created lesions contain only a small amount of FGF receptor 3 (FGFR3) expressed on mesenchymal stem cells located in the perichondrium, as compared to the cell population carrying FGFR3 in the contralateral limb. Indian hedgehog and Bcl2 are downregulated, while BMP-2 is overexpressed in the operated limb, compared to the LaCroix ring of the contralaetral limb. The shortage, as well as the disturbed migration routes of the residual mesenchymal stem cells in surgically created osteochondromas leads eventually to resorption of the pathological elements. In search of additional markers characterizing such pathological structures composed of mesenchymal stem cells and cartilaginous and bony cells, EXT1 gene was found to be expressed in the surgically created osteochondromas, like in normal growth plates. Nitric oxide synthase was also expressed like in adult cartilage, though tumor necrosis factor alpha typifying Bunion formation was absent. In summary, surgically created osteochondromas lack the massive and continuous population of mesenchymal stem cells with Bcl2 expression. However, the small residual mesenchymal cell population gives rise to short-lived EXT1-expressing cells that disappear eventually due to spontaneous resorption.

Animals↗

Subacromial impingement syndrome in hereditary multiple exostoses.

An unusual cause of subacromial pain was observed in a 32-year-old woman with multiple exostoses. The pain was the direct result of the mechanical impingement syndrome from these exostoses. Hereditary multiple exostoses should be investigated systematically, because many other, more common pain-producing conditions are possible. Secondary malignant degeneration of one of the cartilaginous coverings of the exostoses is very rare.

Acromion↗

Mutation screening of the EXT genes in patients with hereditary multiple exostoses in Taiwan.

Hereditary multiple exostoses (HME) is an autosomal dominant disorder characterized by growth of benign bone tumors. This genetically heterozygous disease comprises three chromosomal loci: the EXT1 gene on chromosome 8q23-q24, EXT2 on 11p11-p13, and EXT3 on 19p. Both EXT1 and EXT2 have been cloned and defined as a new family of potential tumor suppressor genes in previous work. However, no studies have been conducted in the Taiwanese population. To determine if previous results can also be applied to the Taiwanese, we analyzed 5 Taiwanese probands with clinical features of HME: 1 of them is a sporadic case, and the others are familial cases. Linkage studies were performed in the familial cases before the mutation analysis to determine to which of the three EXT chromosomes these cases could be assigned. Our results showed that one proband is linked to the EXT1 locus and three are linked to the EXT2 locus; the sporadic case was subsequently found to involve EXT1. We then identified four new mutations that have not been found in other races: two in EXT1--frameshift (K218fsX247) and nonsense (Y468X) mutations and two in EXT2-missense (R223P) and nonsense (Y394X) mutations. Our results indicate that in familial cases, linkage analysis can prove useful for preimplantation genetic diagnosis.

Chromosome Mapping↗

Rare presentation of hereditary multiple exostoses. A case report.

Hereditary multiple exostoses is a relatively uncommon disorder of endochondral bone characterized by the presence of multiple, cartilaginous-capped exostoses arising from the metaphyses. A rare presentation of hereditary multiple exostoses in the calcaneus of a 35-year-old man is reviewed and discussed. A brief review of the literature is provided, as well as a discussion of the patient's family history.

Adult↗

Mutation analysis of hereditary multiple exostoses in the Chinese.

Hereditary multiple exostoses (EXT; MIM 133700) is an autosomal dominant bone disorder. It is genetically heterogeneous with at least three chromosomal loci: EXT1 on 8q24.1, EXT2 on 11p11, and EXT3 on 19p. EXT1 and EXT2, the two genes responsible for EXT1 and EXT2, respectively, have been cloned. Recently, three other members of the EXT gene family, named the EXT-like genes (EXTL: EXTL1, EXTL2, and EXTL3), have been isolated. EXT1, EXT2, and the three EXTLs are homologous with one another. We have identified the intron-exon boundaries of EXTL1 and EXTL3 and analyzed EXT1, EXT2, EXTL1, and EXTL3, in 36 Chinese families with EXT, to identify underlying disease-related mutations in the Chinese population. Of the 36 families, five and 12 family groups have mutations in EXT1 and EXT2, respectively. No disease-related mutation has been found in either EXTL1 or EXTL2, although one polymorphism has been detected in EXTL1. Of the 15 different mutations (three families share a common mutation in EXT2), 12 are novel. Most of the mutations are either frameshift or nonsense mutations (12/15). These mutations lead directly or indirectly to premature stop codons, and the mutations generate truncated proteins. This finding is consistent with the hypothesis that the development of EXT is mainly attributable to loss of gene function. Missense mutations are rare in our families, but these mutations may reflect some functionally crucial regions of these proteins. EXT1 is the most frequent single cause of EXT in the Caucasian population in Europe and North America. It accounts for about 40% of cases of EXT. Our study of 36 EXT Chinese families has found that EXT1 seems much less common in the Chinese population, although the frequency of the EXT2 mutation is similar in the Caucasian and Chinese populations. Our findings suggest a possibly different genetic spectrum of this disease in different populations.

China↗

Bone scintigraphy in hereditary multiple exostoses.

Two adult patients with multiple hereditary exostoses, a skeletal disorder with recognized malignant potential, each demonstrated increased 99mTc diphosphonate uptake in an exostosis in which renewed growth had begun. None of the other multiple exostoses in either patient showed abnormal uptake. Histologic study of the lesions demonstrated chondrosarcoma in one case and benign osteochondroma in the second. Although bone scintigraphy nonspecifically identifies bone growth rather than malignant degeneration, it is more useful than radiographic bone survey in the periodic surveillance of adult patients with this disorder.

Adult↗

Acute cervical myelopathy from hereditary multiple exostoses: case report.

A case of hereditary multiple exostoses with acute cervical myelopathy, tetraplegia, and apnea is reported. Neurological complications as a result of osteochondromas in hereditary multiple exostoses are rare. The majority of osteochondromas in the cervical spine arise from the neural arch. Magnetic resonance imaging and computed tomography are invaluable in localizing the origin of the lesion and its relationship to the spinal cord. Decompressive laminectomy usually results in excellent functional recovery. Where significant dorsal spinal cord compression exists without neurological deficit, prophylactic decompression can be recommended.

Adult↗

Novel mutations in the EXT1 gene in two consanguineous families affected with multiple hereditary exostoses (familial osteochondromatosis).

Multiple hereditary exostoses (HME) is an autosomal dominant developmental disorder exhibiting multiple osteocartilaginous bone tumors that generally arise near the ends of growing long bones. Here, we report two large consanguineous families from Pakistan, who display the typical features of HME. Affected individuals also show a previously unreported feature--bilateral overriding of single toes. Analysis using microsatellite markers for each of the known EXT loci, EXT1, EXT2, and EXT3 showed linkage to EXT1. In the first family, mutation analysis of the EXT1 gene revealed that affected individuals were heterozygous for an in-frame G-to-C transversion at the conserved splice donor site in intron 1. This mutation is predicted to disrupt splicing of the first intron and produce a frameshift that leads to a premature termination codon. In the second family, an insertion of an A in exon 8 is predicted to produce a frameshift at codon 555 followed by a premature termination, a further 10 codons downstream. In both families, an increased number of affected male subjects were observed. In affected females in family 2, phenotypic variability and incomplete penetrance were noted.

Base Sequence↗

Acute spinal cord compression in hereditary multiple exostoses: case report.

A case of hereditary multiple exostoses with spinal cord compression by a costal exostosis is reported in a 12-year-old boy. Paraplegia is an unusual complication of hereditary multiple exostoses. In the patient with spinal cord signs, the offending exostoses should be defined with appropriate roentgenograms and myelographic and CT scanning investigations.

Adolescent↗

Hereditary multiple exostoses and heparan sulfate polymerization.

Hereditary multiple exostoses (HME, OMIM 133700, 133701) results from mutations in EXT1 and EXT2, genes encoding the copolymerase responsible for heparan sulfate (HS) biosynthesis. Members of this multigene family share the ability to transfer N-acetylglucosamine to a variety of oligosaccharide acceptors. EXT1 and EXT2 encode the copolymerase, whereas the roles of the other EXT family members (EXTL1, L2, and L3) are less clearly defined. Here, we provide an overview of HME, the EXT family of proteins, and possible models for the relationship of altered HS biosynthesis to the ectopic bone growth characteristic of the disease.

Animals↗

A gene for hereditary multiple exostoses maps to chromosome 19p.

Hereditary multiple exostoses (EXT) is an autosomal dominant bony disorder characterized by the formation of cartilage-capped juxta-epiphyseal prominences on the long bones. Recently, a disease gene (EXT 1) has been mapped to chromosome 8q23-q24 by linkage analysis in informative families. Here, we report on the genetic mapping of a second locus (EXT 2) to the short arm of chromosome 19 by linkage to a microsatellite DNA marker at the D19S221 locus, which gives additional support to the view that EXT is a genetically heterogeneous condition.

Chromosome Mapping↗

[A mutation IVS2+1G>A in EXT2 gene causes hereditary multiple exostoses].

OBJECTIVE: To identify the gene causing hereditary multiple exostoses in a Chinese pedigree. METHODS: Linkage analysis was carried out in the family using microsatellite markers on chromosome 8, 11 and 19 respectively. To detect the mutation, the whole coding sequence and the intron-exon boundaries of the candidate gene were amplified and sequenced. The reverse transcriptase-polymerase chain reaction (RT-PCR) was performed to amplify the mutated mRNA. RESULTS: The disease-causing gene of the family was linked to the EXT2 locus on chromosome 11. A mutation IVS2+1G>A was detected in EXT2 and resulting in 221 bp deletion from 316 to 536 of coding sequence(CDS), which was co-segregated with the disease phenotype. This change led to deletion from codon 106 to codon 178 and subsequent 2 nucleotides, producing a frameshift and truncated protein of 125 aa. CONCLUSION: The mutation IVS2+1G>A is the disease-causing mutation in the Chinese pedigree with hereditary multiple exostoses.

Exostoses, Multiple Hereditary↗

Hereditary multiple exostoses: one center's experience and review of etiology.

Hereditary multiple exostosis is a genetic disorder characterized by multiple osteochondromas that can cause pain, deformity, and potential malignant degeneration. Linkage analysis has identified a family of EXT genes which, if mutated, can lose heterozygosity and potentially cause osteochondromas. A database was established of 43 patients with hereditary multiple exostoses treated at a tertiary pediatric healthcare system. Twenty patients had a known family history of the disorder. All patients were diagnosed between birth and 13 years. Symptoms or deformity were observed in the forearms of 29 patients, the knees of 37 patients, and the ankles of 28 patients. Valgus knee deformity related to hereditary multiple exostoses, previously reported to be attributable to proximal tibial changes alone, resulted from proximal tibial or distal femoral valgus deformities in this series. Twenty-seven patients required between one and five surgeries to address their lesions. No patient had malignant degeneration of an osteochondroma; however, three patients had first-degree relatives with transformation of an osteochondroma to chondrosarcoma. This database now may be a resource for additional analysis. By correlating specific genetic mutations with clinical manifestations, it may be possible to stratify patients into subtypes of hereditary multiple exostoses and identify genetic markers associated with malignant degeneration.

Adolescent↗

[Hereditary multiple exostoses after 40 years of development: a case report].

INTRODUCTION: Hereditary multiple exostoses is an autosomal dominant skeletal disorder with genetic heterogeneity and an estimated prevalence of 1/50,000 in western countries. Malignant degeneration is a rare (about 2%) but classical complication in patients with hereditary multiple exostoses. At least 3 loci identified as EXT 1, EXT 2 and EXT 3 are involved in this skeletal disease. EXEGESIS: The case of a 45-year old man is described with 15 years follow-up after resection of a well-differentiated chondrosarcoma (grade I), which arose from a right posterior pelvic exostosis. The observed radiological lesions remained relatively stable until now. The genetic mutation which is responsible for the disease was determined at the locus EXT 1. CONCLUSION: The present case report illustrates the natural history of hereditary multiple exostoses, especially since the patient underwent a malignant degeneration which could be resected without recurrence. The results of the genetic analysis contributed to the understanding of the pathophysiology of the disease.

Bone Neoplasms↗

Bone and Tl-201 scintigraphy in a case of hereditary multiple exostoses.

A 17-year-old girl with hereditary multiple exostoses, who was thought to have malignant transformation of an exostotic lesion, was examined by bone and Tl-201 chloride scintigraphy. Scintigraphy showed markedly intense uptake by the lesion, whereas Tl-201 imaging did not. Bone scintigraphy revealed intense to moderate uptake in other exostotic lesions, but none was apparent on the Tl-201 study. The lesion was resected and the histopathologic diagnosis was osteochondroma. Negative findings of Tl-201 scintigraphy may not exclude the possibility of chondrosarcoma, and the utility of this method may be limited. However, Tl-201 scintigraphy appears to have a useful role in differentiating malignant transformation from benign osteochondroma in hereditary multiple exostoses.

Adolescent↗

Hereditary multiple exostoses. Report of a family.

In a family with hereditary multiple exostoses (diaphyseal aclasis), six generations are known to have been affected. Thirty-three of 85 family members have had the disorder. This condition affects the long bones, pelvis, scapulae, and ribs, and the exostoses continue to enlarge until epiphyseal fusion occurs. Associated deformities, including short stature and malformations of the wrist and ankle, were found in 72%. Fifty percent of affected individuals were moderately or severely handicapped; women and men were affected with equal severity. Exostoses were usually noted by two years and always by five years of age. Hereditary multiple exostoses is inherited as an autosomal dominant condition and is inherited as an autosomal dominant condition and in this familial study the gene showed 93% penetrance. Only one individual appeared clinically normal but nevertheless transmitted the gene to offspring. Red cell antigens, enzymes, and serum enzymes were studied, but none were positive for linkage to the gene for this disease. The frequency of sarcomatous change varies between 3% and 25% in reports in the literature, but no cases occurred in six generations of this family.

Adolescent↗