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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↗

Elderly women with oral exostoses had higher bone mineral density.

We examined the relationship between two opposite phenomena in elderly bone, bone loss (osteoporosis) and excessive bone formation (oral exostosis). We recruited, randomly, 44 female subjects without any conditions known to affect bone metabolism. The subjects were examined for exostosis, and bone mineral density (BMD) was measured by dual-energy X-ray absorptiometry. The Z score of the BMD was calculated; this is the deviation from the weight-adjusted average BMD of each age. Subjects with palatal tori ( n = 15) had a higher femoral BMD than controls ( n = 14) (0.580 +/- 0.213 vs -0.271 +/- 0.182; P = 0.0054). The subjects with palatal tori ( n = 12) also had a higher BMD than controls ( n = 12) at the radius (0.417 +/- 0.235 vs -0.533 +/- 0.294; P = 0.0194). In addition, subjects with mandibular tori ( n = 13) had a higher femoral BMD than controls ( n = 14) (0.569 +/- 0.242 vs -0.271 +/- 0.182; P = 0.0097). These results suggest that some common mechanisms are involved in the elevation of skeletal BMD and the occurrence of oral exostoses.

Absorptiometry, Photon↗

Spontaneous hemothorax in a patient with hereditary multiple exostoses.

A case of spontaneous hemothorax in a 7-year-old child secondary to erosion of the diaphragm by an exostosis coming from the left sixth rib is reported. This rare case of hemothorax with hereditary multiple exostoses is made even rarer by the concomitant perforation of the diaphragm.

Child↗

[A rare complication of multiple exostoses: hemothorax].

BACKGROUND: Hemothorax is a rare complication of hereditary multiple exostosis. CASE REPORT: A 12 year-old boy suffered from abrupt thoracic pain, firstly attributed to pleural effusion. He had hereditary multiple exostosis known since the age of 9 years. The patients was given anti-inflammatory drugs and erythromycin but the pleural effusion became more abundant 6 days later requiring thoracentesis which showed hemothorax. All bacteriological and cytologic investigations were negative. X rays, ultra-sonography and CT scan showed several costal exostoses developing into the thoracic cavity. The hemothorax disappeared within 12 days and the patient was well 4 months later, without pleural sequelae. CONCLUSIONS: Hemothorax may be due to internal costal exostosis. It may be cured with thoracentesis; more aggressive therapy should be performed in exceptional cases with severe and/or recurrent bleeding.

Child↗

Bilateral scaphoid exostoses.

We report a case of bilateral symptomatic scaphoid exostoses associated with osteoarthritis of the wrist. These were treated by surgical excision with good short-term results.

Aged↗

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↗

Recurrent turret exostoses--case report.

Two turret exostoses in one hand were simultaneously excised--one with good results, one with recurrence of adhesions. Photographic documentation, starting with the original injury, shows that the periosteum was widely lacerated. Tenolysis with fat tissue graft interposition failed. A second tenolysis with interposition of Silastic membrane was successful.

Exostoses↗

Less radical drilling in surgery for exostoses of the external auditory canal.

OBJECTIVE: To estimate the anatomical and functional long-term result of surgery for ear canal exostosis. METHODS: Case rapport review with extraction of data concerning pre- and postoperative anatomical conditions, symptoms and audiology and a clinical and audiological re-evaluation. In the 20-year-period from 1 January 1976 to 1 January 1996, 26 patients were operated on primarily for ear canal exostosis. 19 patients with in total 24 ears were re-evaluated. Control-period 7.2 years. Pre-operatively were found occluding ear-canal exostosis in all patients as well as hearing loss, otitis externa and pain. RESULTS: At the re-evaluation all patient were completely free of their symptoms. 19 out of 24 ears still had some remnants of exostosis, but the ear canal was covered with completely normal skin and had normal migration properties. No signs of re-growth were found in this material. Postoperatively one patient had a sensorineural hearing loss of 85 dB at 6 kHz, one had a dehiscence of the temporomandibular joint and one patient had an anterior ear drum perforation. CONCLUSION: To avoid the complications a less radical drilling of exostoses is proposed, in particular along the superior wall and near the short process of the malleus handle and along the anterior tympanomeatal angle. Removal of the bone from the posterior, inferior and anterior walls with preservation of the canal skin, creates enough lumen providing permanent cure.

Adolescent↗

Winging of the scapula in a child with hereditary multiple exostoses.

A female, 10 years of age, with hereditary multiple exostoses presented with shoulder drop and asymmetry. The results of neurologic examination were normal and winging was not accentuated by active maneuvers of the shoulder. Scapular exostosis was demonstrated to be the structural cause of scapular winging. Only a few cases of children with scapular winging caused by scapular tumors have been reported. However, tumors of the scapula should be excluded in children with static winging of the scapula.

Child↗

The EXT2 multiple exostoses gene defines a family of putative tumour suppressor genes.

Hereditary multiple exostoses (EXT) is an autosomal dominant condition characterized by short stature and the development of bony protuberances at the ends of all the long bones. Three genetic locl have been identified by genetic linkage analysis at chromosomes 8q24.1, 11p11-13 and 19p. The EXT1 gene on chromosome 8 was recently identified and characterized. Here, we report the isolation and characterization of the EXT2 gene. This gene shows striking sequence similarity to the EXT1 gene, and we have identified a four base deletion segregating with the phenotype. Both EXT1 and EXT2 show significant homology with one additional expressed sequence tag, defining a new multigene family of proteins with potential tumour suppressor activity.

Amino Acid Sequence↗

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↗

Treatment of subungual exostoses by elective day case surgery.

Twenty-one patients (11 female, 10 male: mean age 21.3 years) with subungual exostoses were treated with elective surgery under local anaesthetic in a dermatology day case theatre over a period of 8 years. Fifteen (71%) tumours affected the great toe, four (19%) affected other toes and two (10%) affected fingers. All received local excision with great care to remove all tumour residue from the terminal phalanx. Wounds were allowed to heal by secondary intention. Attention was paid to preoperative antiseptic procedure and postoperative analgesia. During follow-up of between 6 and 36 months (mean 17 months), there were two relapses (10%) in the first 12 months, seen in two of the younger subjects aged 9 and 13 years. One required further surgery. One further case suffered long-term dystrophy due to perioperative damage to nail matrix. Conservative and thorough treatment of this pathology can be achieved using the appropriate tools in a dermatology day case theatre.

Adolescent↗

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↗

Successful removal of a giant recurrent chondrosarcoma of the thoracic wall in a patient with hereditary multiple exostoses.

Chondrosarcoma represents the most common malignant tumour of the chest wall, with a tendency for local recurrence after resection. Here we report the successful complete resection of a giant, local recurrent chondrosarcoma of the chest wall (max. diameter 25 cm), in a patient with hereditary multiple exostoses, who had had a wide resection 8 years before. Clinical features and surgical management are described.

Bone Neoplasms↗

[Surgical treatment of auditory canal exostoses].

BACKGROUND: Although complications of surgical removal of external auditory canal exostoses are rare, reported surgical complications include tympanic membrane perforation, postoperative hearing loss, canal stenosis, and facial nerve injuries. PATIENTS AND METHODS: We report on our experience in exostosis surgery, consisting of 59 procedures in 48 patients. Preoperative and postoperative complaints and findings, intraoperative complications, and audiologic results are described and discussed. There has been a minimum of one year of follow-up in every case. RESULTS: Postoperative canal stenosis was seen in 2 cases of preoperative severe persistent external otitis. Temporary threshold shift was recorded in 6 patients. Persistent sensorineural hearing loss occurred in 4 patients. Six of the 10 patients with temporary or persistent hearing loss had already shown preoperative sensorineural hearing loss. Intraoperatively tympanic membrane perforation occurred in 3 cases, accidental opening of the mastoid in 1 case. CONCLUSIONS: Exostosis surgery should be reserved for uninfected ear canals. Meatal skin preservation without circular meatal flap incision is recommended to avoid postoperative canal stenosis. Especially in cases of preexisting sensorineural hearing loss, attention should be focused on the intraoperative noise reduction by tympanic membrane protection and pauses of noise exposition.

Adult↗

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↗

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↗