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Charcot-Marie-Tooth disease type 1A: mutational mechanisms and candidate gene.

Charcot-Marie-Tooth disease type 1A, the most common inherited peripheral neuropathy, is associated with a submicroscopic DNA duplication of 1.5 Mb that can arise de novo, and which is flanked by a > 17 kb mosaic repeat. The PMP22 gene, encoding a peripheral myelin protein, maps within the duplication. In a subset of Charcot-Marie-Tooth patients, point mutations can occur within the gene. Thus, the alternative mechanisms of overexpression of PMP22 and structural alterations in the protein encoded can cause the disease phenotype.

Animals↗

Degeneration of anterior horn cell in neuronal type of Charcot-Marie-Tooth disease (hereditary motor and sensory neuropathy type II): a Golgi study.

A morphological study using the Golgi impregnation method was carried out on the anterior horn cells at cervical (C), thoracic (Th), and lumbar (L) levels of the spinal cord in a patient with neuronal type of Charcot-Marie-Tooth disease (hereditary motor and sensory neuropathy type II) and an age-matched control. The present study demonstrated an uneven cell body surface, loss of cells (particularly large cells), loss of dendrites, reduced dendritic extent and an irregular surface and shape of dendrites at the C and L levels. In contrast, hematoxylin and eosin and Klüver-Barrera staining showed only simple atrophy or no change. The Th level of the patient showed none of these changes. Our results suggest that the degeneration or loss of dendrites of anterior horn cells by the Golgi staining method, which is most severe at the L level, is closely related to clinical findings such as muscle atrophy and weakness in neuronal type of Charcot-Marie-Tooth disease.

Aged↗

Animal models of Charcot-Marie-Tooth disease type 1A.

The most frequent genetic subtype of Charcot-Marie-Tooth disease is CMT1A, linked to chromosome 17p11.2. In the majority of cases, CMT1A is a gene dosage disease associated with a 1.5 Mb large genomic duplication. Transgenic models with extra copies of the Pmp22 gene have provided formal proof that overexpression of only this candidate gene is sufficent to cause peripheral demyelination, onion bulb formation, secondary axonal loss, and progressive muscle atrophy, the pathological hallmarks of CMT1A. The transgenic CMT rat with about 1.6-fold PMP22 overexpression exhibits clinical abnormalities, such as reduced nerve conduction velocity and lower grip strength that mimick findings in CMT1A patients. Also transgenic mice, carrying yeast artifical chromosomes as Pmp22 transgenes, demonstrate the variability of disease expression as a function of increased gene dosage. Recently, the first rational experimental therapies of CMT1A were tested, using transgenic animal models. In one proof-of-principle study with the CMT rat, a synthetic antagonist of the nuclear progesterone receptor was shown to reduce PMP22 overexpression and to ameliorate the clinical severity. In another study, administration of ascorbic acid, an essential factor of in vitro myelination, prolonged the survival and restored myelination of a dysmyelinated mouse model. Application of gene expression analysis to nerve biopsies that are readily available from such CMT1A animal models might identify additional pharmacological targets.

Animals↗

Spinal deformities in patients with Charcot-Marie-tooth disease. A review of 12 patients.

Twelve patients with Charcot-Marie-Tooth disease and scoliosis, seven girls and five boys (average age at presentation, ten years), were investigated for an average of 49 months. All but one of the patients were ambulatory. The curve patterns were thoracic in two, thoracolumbar in four, and double thoracic and lumbar curves in six. There was an associated kyphosis in six. Three patients had brace treatment with curve control in two. Four patients underwent posterior spinal fusion with Harrington instrumentation, one with segmental sublaminar wires. Post-operative management consisted of a cast for one patient and a brace for the remaining three. Follow-up period in the surgical patients ranged from 19 to 45 months (average, 32 months). One patient had a superior mesenteric artery syndrome and two had a pseudarthrosis.

Adolescent↗

Prenatal diagnosis of Charcot-Marie-Tooth disease type 1A by interphase fluorescence in situ hybridization.

Charcot-Marie-Tooth Disease (CMT) is the most common cause of peripheral neuropathy, with an incidence of 1:2500 persons affected. Previously, we reported the use of fluorescence in situ hybridization (FISH) to detect the common submicroscopic duplication of 17p12 found in more than 98 per cent of individuals with CMT1A. We found that FISH is a reliable means for the diagnosis of the duplication of 17p12 in peripheral blood and reported the validation of the FISH assay for amniotic fluid specimens. Herein, we report the validation of the FISH assay for use on chorionic villus samples (CVS) to prenatally diagnose CMT1A duplications and the testing of 17 prenatal specimens. Seven fetuses were found to carry the duplication and are predicted to be affected. FISH is a rapid assay in prenatal specimens, with a 9.3 day average turn-around time. Limited follow-up on pregnancies indicates that the duplication found in CMT1A is reliably diagnosed in the fetus, using FISH on either amniotic fluid specimens or CVS.

Charcot-Marie-Tooth Disease↗

Altered trafficking and adhesion function of MPZ mutations and phenotypes of Charcot-Marie-Tooth disease 1B.

We previously reported familial cases characterized by Charcot-Marie-Tooth disease (CMT) phenotype with abnormal myelin foldings and MPZ Ile62Phe mutation. To further clarify the molecular mechanisms in this family, we produced wild-type MPZ, Ile62Phe mutant and other mutations in the neighboring regions producing thin myelin sheaths (Ser63del, Ser63Cys and Ser63Phe) by site-specific mutagenesis and transfected these into rat pheochromocytoma cells (PC12). We investigated the expression and aggregation properties of the MPZ protein through immunoblotting, immunohistochemical staining and adhesion assay. MPZ protein with Ile62Phe mutation was immunohistochemically detectable mainly in the plasma membrane of the cells, and it induced a cell aggregation behavior different from the other mutations or the wild-type MPZ. These studies suggested that MPZ Ile62Phe mutation in CMT1B with abnormal myelin folding induced dysregulation of adhesion function of the MPZ protein in a manner unlike those seen in cells with other mutations. The present study provides evidence that the site and nature of amino acid substitutions in the MPZ protein are closely related to the abnormal myelination in CMT1B.

Adult↗

Surgery in advanced Charcot-Marie-Tooth disease.

Crippling equinocavovarus position of the foot in advanced Charcot-Marie-Tooth disease with its attendant metatarsalgia tender calluses and rigidity creates painful, limited, hobbling ambulation with lowered work and general activity tolerance. The object of the surgeries is to convert this foot into a plantigrade , more flexible, painless unit. Surgery consists of plantar fasciotomies off the tubercle of the os calcis and also transversely through the middle of the longitudinal arch. Dorsally angulated green-stick osteotomies are performed at the bases of all the metatarsals. A Jones operation with transfer of the long extensor great toe tendon through the neck and head of the first metatarsal and arthrodesis of the IP joint of the great toe complete the surgery. Often it is necessary to do Bunnell repair lengthening of the flexor hallucis longus tendon. Occasionally, the first metatarsophalangeal joint needs dorsal capsulotomy and lengthening of the short extensor tendon. Variations in and simplicity of techniques are demonstrated with a case report. Ten patients (eight men and two women: 18 feet), ranging in age from 18 to 46 years (average age, 29 years), with a 3- to 6-year follow-up are herein reported. Correction has been maintained in the oldest case.

Adolescent↗

Molecular analysis in Japanese patients with Charcot-Marie-Tooth disease: DGGE analysis for PMP22, MPZ, and Cx32/GJB1 mutations.

Charcot-Marie-Tooth disease (CMT) is a heterogeneous disorder and is traditionally classified into two major types, CMT type 1 (CMT1) and CMT type 2 (CMT2). Most CMT1 patients are associated with the duplication of 17p11.2-p12 (CMT1A duplication) and small numbers of patients have mutations of the peripheral myelin protein 22 (PMP22), myelin protein zero (MPZ), connexin 32 (Cx32/GJB1), and early growth response 2 (EGR2) genes. Some mutations of MPZ and Cx32 were also associated with the clinical CMT2 phenotype. We constructed denaturing gradient gel electrophoresis (DGGE) analysis as a screening method for PMP22, MPZ, and Cx32 mutations and studied 161 CMT patients without CMT1A duplication. We detected 27 mutations of three genes including 15 novel mutations; six of PMP22, three of MPZ, and six of Cx32. We finally identified 21 causative mutations in 22 unrelated patients and five polymorphic mutations. Eighteen of 22 patients carrying PMP22, MPZ, or Cx32 mutations presented with CMT1 and four of them with MPZ or Cx32 mutations presented with the CMT2 phenotype. DGGE analysis was sensitive for screening for those gene mutations, but causative gene mutation was not identified in many of the Japanese patients with CMT, especially with CMT1. Other candidate genes should be studied to elucidate the genetic basis of Japanese CMT patients.

Base Sequence↗

[Clinical, pathological and genetic studies in a Chinese Charcot-Marie-Tooth disease type 2 family].

OBJECTIVE: To report a Chinese Charcot-Marie-Tooth disease type 2 (CMT2) family. METHODS: All the members in the family were studied clinically,and 6 patients were studied electrophysiologically. Sural nerve biopsy was performed in the proband. PMP22 gene duplications were detected by highly polymorphic short tandem repeat. Point mutation analysis of PMP22, MPZ and NEFL gene was screened by PCR-SSCP combined with DNA direct sequencing. A genome-wide screening was carried out to the family. RESULT: Except 2 who had weakness and atrophy in both proximal and distal muscles of the lower limbs, all patients presented muscle wasting and a predominating weakness of distal parts of the lower limbs, and mild to moderate sensory impairments. In 6 patients who were subjected to elctrophysiological examinations, median-nerve conduction velocity (NCV) of the median nerve was normal. Electromyograms (EMGs) revealed signs of denervation with large motor unit potentials, fibrillation potentials and positive sharp waves. Sural nerve biopsy of the proband confirmed the presence of axonal neuropathy with an important loss of large myelinating fibers and a large number of clusters with mostly thinly myelinated axons. PMP22, MPZ and NEFL gene mutations were not found. The results of genome-wide screening revealed a linkage of CMT2 to a locus at chromosome 12q24. CONCLUSION: The results are consistent with the diagnosis of CMT2. This family represents a rare genetic type of CMT2 which can be designated as CMT2L.

Adolescent↗

Mutational analysis of the MPZ, PMP22 and Cx32 genes in patients of Spanish ancestry with Charcot-Marie-Tooth disease and hereditary neuropathy with liability to pressure palsies.

Charcot-Marie-Tooth disease (CMT) and hereditary neuropathy with liability to pressure palsies (HNPP) are two inherited peripheral neuropathies. The most prevalent mutations are a reciprocal 1.5-Mb duplication and 1.5-Mb deletion, respectively, at the CMT1A/HNPP locus on chromosome 17p11.2. Point mutations in the coding region of the myelin genes, peripheral myelin protein 22 (PMP22), myelin protein zero (MPZ) or connexin 32 (Cx32) have been reported in CMT patients, including CMT type 1 (CMT1), CMT type 2 (CMT2) and Déjérine-Sottas neuropathy (DS) patients, and only in the coding region of PMP22 in HNPP families lacking a deletion. We have investigated point and small mutations in the MPZ, PMP22 and Cx32 genes in a series of patients of Spanish ancestry: 47 CMT patients without duplications, and 5 HNPP patients without deletions. We found 15 different mutations in 16 CMT patients (34%). Nine different mutations in ten patients were detected in the Cx32 gene, this being the most frequently involved gene in this series, whereas five mutations involved the MPZ gene and only one the PMP22 gene. Six out of nine nucleotide substitutions in the Cx32 gene involved two codons encoding arginine at positions 164 and 183, suggesting that these two codons may constitute two Cx32 regions prone to mutate in the Spanish population. Analysis of HNPP patients revealed a 5' splicing mutation in intron 1 of the PMP22 gene in a family with autosomal dominance, which confirms allelic heterogeneity in HNPP. Ectopic mRNA analysis on leukocytes suggests that this mutation might behave as a null allele.

Charcot-Marie-Tooth Disease↗

Pressure palsy as the initial presentation in a case of late-onset Charcot-Marie-Tooth disease type 1A.

We report siblings of late-onset Charcot-Marie-Tooth disease type 1A (CMT1A) of whom the elder brother presented with drop foot. DNA analysis confirmed the 17p11.2-p12 duplication. Estimation of the age of onset is difficult in CMT1A because of the subtle and slow progress of the symptoms. These cases are unique in that the initial clinical manifestation was a pressure palsy in the brother and both siblings were quite delayed in their clinical presentations. The peripheral myelin protein-22 gene duplication is uniformly found in CMT1A patients. However, other factors influencing the disease manifestations are yet to be determined.

Aged↗

Small heat-shock protein 22 mutated in autosomal dominant Charcot-Marie-Tooth disease type 2L.

Charcot-Marie-Tooth (CMT) disease is the most common inherited motor and sensory neuropathy. We have previously described a large Chinese CMT family and assigned the locus underlying the disease (CMT2L; OMIM 608673) to chromosome 12q24. Here, we report a novel c.423G-->T (Lys141Asn) missense mutation of small heat-shock protein 22-kDa protein 8 (encoded by HSPB8), which is also responsible for distal hereditary motor neuropathy type (dHMN) II. No disease-causing mutations have been identified in another 114 CMT families.

Charcot-Marie-Tooth Disease↗

Treatment of the upper limb in Charcot-Marie-Tooth disease.

Even though Charcot-Marie-Tooth (CMT) disease is seen frequently, relatively little has been written about the successful treatment of upper limb involvement using tendon transfers. It appears that there are several types of CMT disease and there is extreme variability in the clinical symptoms. The results of treatment were assessed by looking at four specific areas of hand function: decreased conduction velocity of the nerves, lack of opposition, weak pinch, and clawing of the fingers. A plan has been developed for tendon transfers that has worked well in clinical practice.

Adolescent↗

A long-term study of triple arthrodesis for correction of pes cavovarus in Charcot-Marie-Tooth disease.

Twenty-two patients with severe pes cavovarus secondary to Charcot-Marie-Tooth disease who underwent triple arthrodesis were retrospectively reviewed with an average follow-up period of 12 years, 4 months. Although only 32% of the patients had good objective results, 88% had good or excellent function and 86% were satisfied with their result. Radiographic follow-up averaged 10 years, 4 months. Talonavicular pseudarthroses were present in 15% of the feet and were symptomatic in all but one foot. Twenty-four percent of the ankles and 62% of the feet demonstrated radiographic evidence of degenerative joint disease.

Adolescent↗

Charcot-Marie-Tooth disease and related peripheral neuropathies.

Soon after the description of Charcot-Marie-Tooth disease (CMT) in 1886, it became apparent that this syndrome is clinically and genetically heterogeneous. Neuropathological and electrophysiological studies have further dissected this syndrome into distinct categories that are now classified in a complex nosology of the inherited peripheral neuropathies. The recent advent of molecular genetics has dramatically increased our understanding of the underlying disease mechanisms. Genetic linkage studies have identified at least 17 genetic loci for different types of inherited neuropathies although most genes involved still remain to be found. The application of molecular genetics has already had an important impact on clinical practice and genetic counselling. Three genes responsible for hereditary motor and sensory neuropathy type I (HMSNI) or CMT1 have been identified: peripheral myelin protein 22 (PMP22) and myelin protein zero (MPZ) for the autosomal dominant form and connexin 32 (Cx32) for the X-linked dominant variant. The PMP22 gene is also involved in the majority of families with hereditary neuropathy with liability to pressure palsies (HNPP). The observation of a 1.5 Mb tandem duplication in chromosome 17p11.2, containing the PMP22 gene, in CMT1 and the reciprocal deletion in the same region in HNPP has provided a novel disease paradigm for autosomal dominant disorders, i.e. the gene dosage mechanism. The study of phenotype-genotype correlations in transgenic animal models for PMP22, MPZ and Cx32 mutations will help elucidate the underlying disease mechanisms and will provide a basis for gene therapy and/or other therapeutic approaches such as treatment with neurotrophic growth factors.

Charcot-Marie-Tooth Disease↗

Pregnancy after preimplantation genetic diagnosis for Charcot-Marie-Tooth disease type 1A.

Charcot-Marie-Tooth (CMT) disease type 1A is an autosomal dominant peripheral neuropathy characterized by slow progressive distal muscle wasting and weakness, and decreased nerve conduction velocities. Most CMT1A cases (>98%) are caused by a duplication of a 1.5 Mb region on the short arm of chromosome 17 containing the PMP22 gene. A couple with a previous history of CMT followed by termination of pregnancy was referred to our centre for preimplantation genetic diagnosis (PGD). The husband carries the CMT1A duplication which can be detected by polymerase chain reaction (PCR) analysis using polymorphic (CA)n markers localized within the duplication. PCR amplification of genomic DNA of the parents-to-be with one of the two primers labelled with fluorescein, followed by automated laser fluorescence (ALF) gel electrophoresis of the amplified fragments allows the distinction between both genotypes. Embryos obtained after intracytoplasmic sperm injection (ICSI) were evaluated for the presence of the normal allele of the father. PCR with single Epstein-Barr virus-transformed lymphoblasts and blastomeres resulted in 91.4 and 93.5% amplification efficiency respectively, whereas none of the blank controls gave a positive signal. Allele drop-out (ADO) was observed in eight out of 32 lymphoblasts (25%) or in five out of 21 blastomeres (23.8%). However, within this set-up ADO will never lead to transfer of an affected embryo. A first ICSI-PGD cycle did not result in embryo transfer for the patient. A second cycle involved 10 mature oocytes of which eight were fertilized, resulting in five embryos for biopsy. Two unaffected embryos were available for transfer and resulted in a singleton pregnancy. The genotype of the fetus has been confirmed healthy by chorionic villus sampling.

Alleles↗

Preimplantation genetic diagnosis for Charcot-Marie-Tooth disease type 1A.

Charcot-Marie-Tooth (CMT) disease is the 'common' name for a range of hereditary peripheral neuropathies. CMT1 is the most common form and is transmitted in an autosomal dominant manner. CMT1A maps to chromosome 17p11.2 and is caused, in the majority of cases, by a 1.5 Mb DNA duplication, that includes the peripheral myelin protein 22 (PMP) gene. This paper reports on preimplantation genetic diagnosis (PGD) for CMT1A in five couples. The CMT1A duplication was detected by fluorescent PCR analysis using polymorphic (CA)n markers localized within the duplication. Single-cell PCR on blastomeres allowed genetic analysis of embryos obtained after ICSI. Only healthy unaffected embryos were transferred to the uterus. PCR experiments with single EBV-transformed lymphoblasts or with research blastomeres allowed the evaluation of amplification efficiencies, as well as contamination and allele drop-out (ADO) rates for each PCR protocol. Three simplex PCR protocols (using one primer pair) and two duplex PCR protocols (using two primer pairs) were developed for CMT1A. Additionally, a protocol using all three primer pairs in triplex was also established. Thirteen clinical ICSI-PGD cycles were performed for five couples (12 simplex PCR cycles and one duplex PCR cycle), resulting in seven embryo transfers. Three singleton pregnancies ensued in two couples and three healthy babies were delivered. This report describes different fluorescent PCR-based tests which allow efficient and accurate single-cell level detection of the CMT1A duplication. On the basis of the presence of the healthy allele of the affected parent-to-be (and/or absence of the affected one), healthy embryos can be selected for transfer. The assays are suitable for PGD for other couples who present with the same CMT1A duplication [depending on their informativity for the (CA)n markers available] as described here.

Alleles↗

Point mutation associated with X-linked dominant Charcot-Marie-Tooth disease impairs the P2 promoter activity of human connexin-32 gene.

Many lines of evidence suggest that connexin-32 gap junction is involved in the exchange of information and metabolites in the peripheral nervous system. It has been shown that connexin-32 protein and mRNA are expressed in Schwann cells that function as myelinating cells of the peripheral nervous system. The physiological importance of connexin-32 gap junctions in regulating the normal function of myelinating Schwann cell is indicated by recent findings that X-linked dominant Charcot-Marie-Tooth disease, a hereditary peripheral neuropathy, is associated with the mutations of connexin-32 gene. Recently, we encountered a Taiwanese family affected with X-linked dominant Charcot-Marie-Tooth neuropathy. Therefore, we investigated the possible mutation in the coding and noncoding regions of the connexin-32 gene of affected members of this family. Our results suggest that a G-to-A transition at the position -215 (in relation to the transcription initiation site) of the nerve-specific P2 promoter region is associated with the pathogenesis of X-linked dominant Charcot-Marie-Tooth disease. Further experiments using the promoter assay indicate that G-to-A mutation at the position -215 greatly impairs the transcriptional activity of connexin-32 P2 promoter. These findings propose that a reduced expression of connexin-32 mRNA and protein in the myelin sheath could be responsible for the development of X-linked dominant Charcot-Marie-Tooth neuropathy.

Animals↗