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Comparison of fluorescent single-strand conformation polymorphism analysis and denaturing high-performance liquid chromatography for detection of EXT1 and EXT2 mutations in hereditary multiple exostoses.

EXT1 and EXT2 are two genes responsible for the majority of cases of hereditary multiple exostoses (HME), a dominantly inherited bone disorder. In order to develop an efficient screening strategy for mutations in these genes, we performed two independent blind screens of EXT1 and EXT2 in 34 unrelated patients with HME, using denaturing high-performance liquid chromatography (DHPLC) and fluorescent single-strand conformation polymorphism analysis (F-SSCP). The mutation likely to cause HME was found in 29 (85%) of the 34 probands: in 22 of these (76%), the mutation was in EXT1; seven patients (24%) had EXT2 mutations. Nineteen of these disease mutations have not been previously reported. Of the 42 different amplicon variants identified in total in the cohort, 40 were detected by DHPLC and 39 by F-SSCP. This corresponds to mutation detection efficiencies of 95% and 93% respectively. We have also found that we can confidently distinguish between different sequence variants in the same fragment using F-SSCP but not DHPLC. In light of this, and the similarly high sensitivities of the two techniques, we propose to continue screening with F-SSCP.

Chromatography, High Pressure Liquid↗

Association of EXT1 and EXT2, hereditary multiple exostoses gene products, in Golgi apparatus.

We prepared the specific antibodies for EXT1 and EXT2, hereditary multiple exostoses (HME) gene products, and characterized their expression, subcellular localization, and protein association among EXT members. Biochemical analyses indicate that EXT1 and EXT2 can associate and form homo/hetero-oligomers in vivo with or without HME-linked mutations, EXT1 (R340C) and EXT2 (D227N), when exogenously expressed in COS-7 cells. An immunocytochemical analysis showed that both EXT1 and EXT2 localized in Golgi apparatus, irrespective of HME mutations. An immunohistochemical analysis on developing bones further showed that both EXT1 and EXT2 were concomitantly expressed in hypertrophic chondrocytes of forelimb bones from 1-day-old neonatal mouse, but down-regulated in maturing chondrocytes of developing cartilage from 21-day-old mouse. Taken together with the recent finding that EXTs encode for the glycosyltransferase required for the synthesis of heparan sulfate [Lind, T., Tufaro, F., McCormick, C., Lindahl, U., and Lindholt, K. (1998) J. Biol. Chem. 273, 26265-26268], our results implied a molecular basis that a HME-linked mutation found in EXT genes could interfere the physiological function(s) of EXT homo/hetero-oligomers as glycosyltransferases in the developing bones of HME patients.

Animals↗

Identification of mutation in a candidate gene for hereditary multiple exostoses type II.

OBJECTIVES: To identify possible mutations in our previously cloned candidate gene for hereditary multiple exostoses type II (EXT2) in affected members of EXT families so as to confirm that it is the disease-causing gene. METHODS: The mutation was detected first by single strand conformational polymorphism (SSCP) of all coding exons of the candidate gene and then by sequencing analysis. RESULTS: After analyzing 37 patients from 20 Chinese EXT families by SSCP and DNA sequencing analysis, one 2-bp insertion mutation was identified in this candidate gene in affected members of an EXT family. This mutation resulted in the frameshift and generated a truncated gene product consisting of 105 amino acids. CONCLUSIONS: The identification of the mutation in the candidate gene indicates that this novel gene is responsible for EXT2 (one of the disease-causing gene of EXT).

Amino Acid Sequence↗

Autism and multiple exostoses associated with an X;8 translocation occurring within the GRPR gene and 3' to the SDC2 gene.

An X;8 translocation was identified in a 27-year-old female patient manifesting multiple exostoses and autism accompanied by mental retardation and epilepsy. Through molecular analysis using yeast artificial chromosomes (YACs) and cosmid clones, the translocation breakpoint was isolated and confirmed to be reciprocal within a 5'-GGCA-3' sequence found on both X and 8 chromosomes without gain or loss of a single nucleotide. The translocation breakpoint on the X chromosome occurred in the first intron of the gastrin-releasing peptide receptor (GRPR) gene and that on chromosome 8 occurred approximately 30 kb distal to the 3' end of the Syndecan-2 gene (SDC2), also known as human heparan sulfate proteoglycan or fibroglycan. The GRPR gene was shown to escape X-inactivation. A dosage effect of the GRPR and a position effect of the SDC2 gene may, however, contribute the phenotype observed in this patient since the orientation of these genes with respect to the translocation was incompatible with the formation of a fusion gene. Investigation of mutations in these two genes in unrelated patients with either autism or multiple exostoses as well as linkage and association studies is needed to validate them as candidate genes.

Adult↗

[Three patients with hereditary multiple exostoses and malignant degeneration of an osteochondroma located in the pelvis].

In three male patients with hereditary multiple exostoses (HME), aged 50, 29 and 31 years, peripheral low-grade chondrosarcoma in the pelvic region led to swelling or pain. In the first patient, curative resection was not feasible because of the size and extension of the tumour. However, rapid tumour growth and unbearable pain necessitated a debulking procedure 16 months later. Histopathologic examination revealed a highly malignant dedifferentiated chondrosarcoma. The patient died two years after initial presentation as a result of local tumour growth. In the second patient, treatment consisted of wide resection of the tumour. Five years after the surgery the patient was free of disease. The third patient was initially treated by intralesional resection, followed by partial hemipelvectomy because of residual tumour. Thirteen months later, a local recurrence occurred that was treated by wide excision. Four years after the partial hemipelvectomy the patient was both pain-free and disease-free. Patients with HME are at increased risk for malignant degeneration of pelvic osteochondroma to chondrosarcoma. Periodic control of patients with pelvic osteochondromas is advised, preferably once every two years.

Adult↗

Severity of disease and risk of malignant change in hereditary multiple exostoses. A genotype-phenotype study.

We performed a prospective genotype-phenotype study using molecular screening and clinical assessment to compare the severity of disease and the risk of sarcoma in 172 individuals (78 families) with hereditary multiple exostoses. We calculated the severity of disease including stature, number of exostoses, number of surgical procedures that were necessary, deformity and functional parameters and used molecular techniques to identify the genetic mutations in affected individuals. Each arm of the genotype-phenotype study was blind to the outcome of the other. Mutations EXT1 and EXT2 were almost equally common, and were identified in 83% of individuals. Non-parametric statistical tests were used. There was a wide variation in the severity of disease. Children under ten years of age had fewer exostoses, consistent with the known age-related penetrance of this condition. The severity of the disease did not differ significantly with gender and was very variable within any given family. The sites of mutation affected the severity of disease with patients with EXT1 mutations having a significantly worse condition than those with EXT2 mutations in three of five parameters of severity (stature, deformity and functional parameters). A single sarcoma developed in an EXT2 mutation carrier, compared with seven in EXT1 mutation carriers. There was no evidence that sarcomas arose more commonly in families in whom the disease was more severe. The sarcoma risk in EXT1 carriers is similar to the risk of breast cancer in an older population subjected to breast-screening, suggesting that a role for regular screening in patients with hereditary multiple exostoses is justifiable.

Adolescent↗

Osteochondroma of C7 vertebra presenting as compressive myelopathy in a patient with nonhereditary (nonfamilial/sporadic) multiple exostoses.

INTRODUCTION: Osteochondromas are most commonly found in the appendicular skeleton. They occur less frequently in the spine and compression of the spinal cord is very rare. To the best of our knowledge, this is the first report of an osteochondroma arising from C7 vertebra presenting with compressive myelopathy in a patient with nonhereditary multiple exostoses. Our purpose is to report this rare presentation and its successful management, and to highlight the clinico-radiological features of this treatable condition. MATERIALS AND METHODS: A 20-year-old male with nonhereditary exostoses presented with gradual onset weakness in bilateral lower limbs, which had rapidly progressed to complete paraplegia over 1 month. The tumor was effectively treated by surgical excision along with spinal decompression. The diagnosis was confirmed by histopathological evidence complemented by clinico-radiological studies. RESULTS: There has been a complete functional recovery without any evidence of recurrence at last follow-up at 2 years. CONCLUSION: Compressive myelopathy due to an osteochondroma arising from C7 vertebra in a case with nonhereditary multiple exostoses is being reported for the first time. Both CT and MRI demonstrated the origin, size, extent and relationship of the tumor to the vertebral and neural elements. Complete recovery of functions after surgical decompression was achieved in this case. An osteochondroma of spine must always be considered in all patients with multiple exostoses who have spine pain or develop neural deficit.

Adult↗

Interstitial deletion of 11(p11.2p12): a newly described contiguous gene deletion syndrome involving the gene for hereditary multiple exostoses (EXT2).

Individuals with deletions of the proximal portion of the short arm of chromosome 11 share many manifestations including mental retardation, biparietal foramina, minor facial anomalies, and multiple cartilaginous exostoses. The finding of multiple exostoses in these patients is remarkable as the disorder hereditary multiple exostoses, which is inherited in an autosomal dominant manner, has recently been mapped by linkage to three regions, including proximal 11p. We report the clinical and molecular findings in an additional patient with an 11(p11.2p12) deletion. Cytogenetic and molecular analysis demonstrated a de novo, paternally derived deletion for markers which have been shown to be tightly linked to the 11p locus (EXT2). These data support the location of EXT2 within this region and also provide information regarding the ordering of polymorphic markers on 11p. Deletion 11(p11.2p12) is a rare, yet specific, deletion syndrome involving the EXT2 locus, a gene for parietal foramina, and a mental retardation locus, and therefore can be classified as a contiguous gene deletion syndrome.

Child↗

Hip arthroscopy in hereditary multiple exostoses: A new perspective of treatment.

The cases of 2 children (9 and 11 years old) with hereditary multiple exostoses disease are presented. The lesions were located primarily in the acetabular fossa of the left hip and caused pain and limitation of range of motion. Hip arthroscopy was performed to remove the exostoses without damaging the articular surfaces and the Y cartilage. After the procedure, the pain disappeared and normal range of motion was recovered for both children. Conventional surgery would have required hip dislocation to access these lesions with an increased risk of femoral head necrosis. These cases constitute a new and interesting application of hip arthroscopy.

Acetabulum↗

Etiological point mutations in the hereditary multiple exostoses gene EXT1: a functional analysis of heparan sulfate polymerase activity.

Hereditary multiple exostoses (HME), a dominantly inherited genetic disorder characterized by multiple cartilaginous tumors, is caused by mutations in members of the EXT gene family, EXT1 or EXT2. The corresponding gene products, exostosin-1 (EXT1) and exostosin-2 (EXT2), are type II transmembrane glycoproteins which form a Golgi-localized heterooligomeric complex that catalyzes the polymerization of heparan sulfate (HS). Although the majority of the etiological mutations in EXT are splice-site, frameshift, or nonsense mutations that result in premature termination, 12 missense mutations have also been identified. Furthermore, two of the reported etiological missense mutations (G339D and R340C) have been previously shown to abrogate HS biosynthesis (McCormick et al. 1998). Here, a functional assay that detects HS expression on the cell surface of an EXT1-deficient cell line was used to test the remaining missense mutant exostosin proteins for their ability to rescue HS biosynthesis in vivo. Our results show that EXT1 mutants bearing six of these missense mutations (D164H, R280G/S, and R340S/H/L) are also defective in HS expression, but surprisingly, four (Q27K, N316S, A486V, and P496L) are phenotypically indistinguishable from wild-type EXT1. Three of these four "active" mutations affect amino acids that are not conserved among vertebrates and invertebrates, whereas all of the HS-biosynthesis null mutations affect only conserved amino acids. Further, substitution or deletion of each of these four residues does not abrogate HS biosynthesis. Taken together, these results indicate that several of the reported etiological mutant EXT forms retain the ability to synthesize and express HS on the cell surface. The corresponding missense mutations may therefore represent rare genetic polymorphisms in the EXT1 gene or may interfere with as yet undefined functions of EXT1 that are involved in HME pathogenesis.

Amino Acid Sequence↗

Vertebral compression syndrome in multiple exostoses (case report).

The authors present a case, the second in the world literature, of Spinal Compression Syndrome in Multiple Exostoses. The diagnosis, not revealed on standard radiographs of the vertebral column, was suspected on radiculography and confirmed only by oblique stratigraphic projection. These demonstrated bone formation on the right vertebral lamina of L4 encroaching considerably on the spinal canal. Surgical laminectomy was followed by complete remission of neurological symptoms.

Child↗

Mapping of the 8q23 translocation breakpoint of t(8;13) observed in a patient with multiple exostoses.

A detailed cytogenetic map was constructed around the chromosomal breakpoint of t(8;13) observed in a patient with multiple exostoses. The order of seven loci defined by cosmid clones mapped to 8q23 was determined by means of two-color fluorescence in situ hybridization (FISH) on elongated prophase chromosomes, and localizations of these markers relative to the breakpoint were examined. The results indicated that loci defined by cC18-553 and cC18-1512 flank the breakpoint. By pulsed-field gel electrophoresis of DNA digested with BssHII and Southern hybridization with cC18-1512, DNA from the patient showed a band which was not observed in DNA isolated from either parent. As the normal size of this BssHII fragment is 600 kb, the chromosomal breakpoint probably lies less than 600 kb away from cC18-1512.

Cell Line↗

Hereditary multiple exostoses of the ribs: an unusual cause of hemothorax and pericardial effusion.

A 6-year-old girl with hereditary multiple exostoses presented with spontaneous hemothorax and pericardial effusion. Chest computed tomographic scan showed left-sided costal exostoses protruding into the left side of the chest. She underwent successful thoracoscopic resection of 3 left rib exostoses and made a full recovery. This report illustrates this rare clinical scenario and reviews the previously published reports of this complication of costal exostoses.

Child↗

Cervical osteochondroma as a cause of spinal cord compression in a patient with hereditary multiple exostoses: Computed tomography and magnetic resonance imaging findings.

Spinal cord compression is a rare but extremely serious complication of hereditary multiple exostoses (HME). Imaging of the spine is important for surgical planning and follow up. We present CT and MR findings in a male patient with HME who developed spinal cord compression from a cervical osteochondroma. Complete recovery was achieved following surgery.

Cervical Vertebrae↗

Multicentric malignant transformation of multiple exostoses.

We treated a patient with large multiple chondrosarcomas derived from multiple cartilaginous exostoses. One sarcoma originated in the left pubic bone and the other sarcoma in the posterior aspect of the greater trochanter of the left femur. Thirty months after hindquarter amputation, the patient is alive without relapse. This is the first report of a patient with synchronous multiple malignant transformation of multiple cartilaginous exostoses.

Aged↗

Spastic disorder in patients with hereditary multiple exostoses, but without spinal cord compression: a new syndrome?

We describe a 37 year old man with a history of a gait disorder which had been worsening over a period of three years. Clinical examination showed the typical signs of a spastic tetraparesis with increased tone of all the extremities. Sensation, autonomic and cerebellar functions were not disturbed. Multiple exostoses had been present since early childhood, but none had been found in the spine or the cranium to cause the tetraspastic disorder. MRI scan was normal. Pedigree analysis of four generations showed that other family members were affected by both disorders. Chromosomal analysis was normal. We consider this to be a previously unknown hereditary syndrome transmitted as an autosomal dominant and manifesting a combination of spastic tetraparesis and multiple exostoses.

Adult↗

Cervical spinal cord compression in hereditary multiple exostoses. Report of a case and a review of the literature.

Spinal cord compression is an extremely serious complication of hereditary multiple exostoses (HME). A case of HME with compression of the cervical spinal cord is reported. Complete recovery following surgery was achieved. A review of the relevant literature revealed 51 previous cases of HME with cord/cauda equina compression. Most patients were under 30 years of age with more men affected than women. The family history was positive in 60%. The cervical and thoracic areas were predominantly affected, with the symptoms usually developing slowly. Recovery following surgery is to be expected in the majority of cases. In patients with HME and suffering from neurological symptoms, the possibility of spinal cord compression should be considered. Prompt diagnosis and surgical excision provide the best prognosis.

Adolescent↗