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Hypertrophic Charcot-Marie-Tooth disease. Light and electron microscope studies of the sural nerve.

Sural nerve biopsies from 15 patients with hypertrophic Charcot-Marie-Tooth disease have been studied by light and electron microscopy. There is a considerable variation in size of onion bulbs in patients from different kinships but the appearances were similar in patients from the same kinship. Comparison of sural nerve biopsies from patients within the same kinship suggests that with increasing age there is a progressive reduction in myelinated fibre density, an increased number of fibres undergoing demyelination and an increased frequency of onion bulb formations. Motor conduction velocities were reduced in all patients and were inversely proportional to the number of onion bulb lamellae, and to the proportion of demyelinated fibres found on sural nerve biopsy. Abnormalities of unmyelinated fibres were present in all the nerves studied. There was a relative increase in the density of denervated Schwann cell subunits and collagen pockets. The findings suggest that unmyelinated fibres undergo degeneration in the disease and lend some support to the hypothesis that the primary abnormality may be neuronal.

Adolescent↗

Duplication within chromosome 17p11.2 in 12 families of French ancestry with Charcot-Marie-Tooth disease type 1a. The French CMT Research Group.

Hereditary motor and sensory neuropathy type I (HMSN I), also designated Charcot-Marie-Tooth disease type 1 (CMT1), is a peripheral neuropathy frequently inherited as an autosomal dominant trait, characterised by progressive distal muscular atrophy and sensory loss with markedly decreased nerve conduction velocity. A duplication within chromosome 17p11.2, cosegregating with the disease, has recently been reported in several CMT1a families. In order to estimate the frequency of this anomaly and determine the location of a duplication in this region, 12 CMT1 families were analysed with polymorphic DNA markers located within 17p11.2-12. Duplications were found in all families including loci D17S61 (EW401), D17S122 (VAW409R3a and RM11-GT), and D17S125 (VAW412R3). The duplications were completely linked and associated with the disease (lod score of 20.77 at zero recombination). Screening for the RM11-GT microsatellite showed that most of the duplicated haplotypes were heterozygous, supporting the hypothesis that the duplication resulted from an unequal crossing over. There was no significant haplotype association within the duplicated region suggesting that the duplication resulted de novo as an independent event in each family. In one family, recombination within the duplicated region was observed, indicating that genetic instability in 17p11.2 might be related to a high recombination rate. Since most cases of CMT1a seem to result from this segmental trisomy, it can be used as a basis for DNA diagnosis of the disease.

Base Sequence↗

A new mutation in the connexin 32 gene was found in Charcot- Marie-Tooth disease in Chinese patients.

OBJECTIVE: To investigate the characteristics of gene mutations of connexin 32 exon 2 in Charcot-Marie-Tooth disease in Chinese patients. METHODS: Screening for connexin 32 gene mutation was conducted in 6 unrelated CMT1 patients without duplication and 10 unrelated CMT2 patients. Mobility shift of exon 2 was analyzed by SSCP and further confirmed by sequencing. The PCR products were cut by appropriate restricted enzyme in 50 normal controls. RESULTS: One missense mutation at nucleotides 62(G-->A) was found in a CMT1 patient. 50 normal controls were analyzed by the enzyme HaeIII and no abnormality was found. This proved that the mutation was the cause of disease. CONCLUSION: This mutation has not been reported previously. A proportion of CMTX patients may exist in the group of CMT1 patients in China.

Adolescent↗

[Charcot-Marie-Tooth disease and glomerular nephropathy].

Anatomoclinical profile and follow-up of a glomerular nephropathy in a prepubertal girl with Charcot-Marie-Tooth disease is reported; striking common pattern features with the few cases previously published of such an association strongly suggest that renal involvement is possible in sensorineural neuropathies and may be one major factor in the overall prognosis of the disease.

Charcot-Marie-Tooth Disease↗

Charcot-Marie-Tooth disease in Molise, a central-southern region of Italy: an epidemiological study.

An epidemiological survey of Charcot-Marie-Tooth disease (CMT) was conducted in Molise, a central-southern region of Italy, from March 1998 to June 2000. Fifty-eight cases of CMT in 13 unrelated families were identified within the selected area. The prevalence of all subtypes of CMT was 17.5/100,000. All families underwent a bio-molecular analysis to disclose the duplication at gene locus 17p11.2 in order to ascertain the diagnosis of CMT type 1A. Our data revealed that 64% of all the observed patients had CMT1A, thus confirming the high prevalence of duplication of the 17p11.2 locus.

Adolescent↗

The duplication in Charcot-Marie-Tooth disease type 1a spans at least 1100 kb on chromosome 17p11.2.

Recently, it has been shown that Charcot-Marie-Tooth disease type 1a (CMT1a) is linked with a duplication of a DNA segment that is detected by probe VAW409R3, and that is located on chromosome 17p11.2. Here, we show that this duplication also contains VAW412R3a, but not A10-41 and EW503. Accounting for the duplication in recombination analysis, we found recombinants between CMT1a and EW301 and EW502, but not with A10-41, VAW409R3, and VAW412R3. Using pulsed-field gel electrophoresis analysis, we estimated the minimal size of the duplicated region in CMT1a patients to be 1100 kb.

Blotting, Southern↗

Initial semeiology in children with Charcot-Marie-Tooth disease 1A duplication.

The aim of this study was to describe the initial signs and symptoms in Charcot-Marie-Tooth disease type 1A (CMT-1A). Twelve secondary cases with CMT-1A were serially evaluated. Ages at initial clinical examination ranged between 1 month and 5 years (mean, 2 years) and final ages between 6 and 23 years (mean, 13 years). First signs of the disease were detected at initial or upon serial examinations in all 12 patients at ages ranging between 1 and 10 years (median, 4 years). The most frequent signs were lower limb areflexia in 12, difficulty in heel walking in 8, nerve enlargement in 6, atrophy of intrinsic foot muscles in 6, clawing of toes in 5, pes cavus or cavus varus in 4, shortening of Achilles tendon in 3, peroneal weakness in 1, and stocking hypoesthesia in 1. Only three patients were symptomatic at the initial evaluation. We conclude that initial CMT-1A signs usually appear in early childhood, although they may be quite subtle and require serial examinations for detection. Lower limb areflexia is the only constant early sign.

Adolescent↗

Gap junction protein beta 1 (GJB1) mutations and central nervous system symptoms in X-linked Charcot-Marie-Tooth disease.

OBJECTIVES: To clarify the clinical variability, including central nervous system (CNS) involvement, in X-linked Charcot-Marie-Tooth disease (CMTX) patients. MATERIAL AND METHODS: We clinically, pathologically and genetically studied six CMTX patients with distinct symptoms and four different GJB1 mutations. RESULTS: One patient with Val63Ile had deafness, low intelligence, saccadic eye movement, upper extremity distal dominant muscle weakness and normal sensation. Another patient with Glu186Lys had severe sensorineural deafness at the age of 6 years, but did not develop muscle weakness until the age of 20 years. Two patients with Arg22Gln had typical CMT1A-like clinical features, no CNS symptoms and obvious onion bulb formations. Two siblings with deletion of the entire GJB1 gene had mild to moderate lower extremity muscle weakness and sensory disturbance without CNS involvement. CONCLUSION: These findings suggest that some gain of function mutations of GJB1 may be related to CNS symptoms because the patients with GJB1 deletion only had peripheral neuropathy, although other unknown associated factors may contribute to their clinical phenotypes.

Adult↗

[Charcot-Marie-Tooth disease: electromyography is still useful in diagnosis and classification].

Genetic heterogeneity was known for a long time in Charcot-Marie-Tooth disease (CMT). The recent findings in molecular biology emphasized the distinction in different types of the disease. Nevertheless, electrophysiological examinations are of a great interest to detect asymptomatic patients, to classify the different forms and to make correlations with the clinical and histological features. Current classification is based on genetic and electrophysiologic data. CMT1, or hypertrophic form in which mutations or a duplication were found on chromosome 17 is the most frequent (CMT1A), CMT2 is the neuronal form, CMT3 is termed the Dejerine-Sottas disease, CMT4 recessive forms, CMT5 a form with associated pyramidal features, and CMTX. The electrophysiologic aspects of these different types are reported.

Charcot-Marie-Tooth Disease↗

Small axons relative to number of myelin lamellae in Charcot-Marie-Tooth disease 1A with peripheral myelin protein 22 gene duplication.

In myelinated fibers of the sural nerves in Charcot-Marie-Tooth disease 1A (CMT 1A), with peripheral myelin protein (PMP) 22 gene duplication, it has been controversial whether axonal attenuation occurs or the myelin sheath thickens. Therefore, the relationship between the transverse axonal area and the number of myelin lamellae was morphometrically studied in myelinated fibers of the sural nerves in CMT 1A with PMP22 gene duplication to re-evaluate such relationships as are revealed in hereditary motor sensory neuropathy, type 1 without genetic diagnosis. In electron microscopic studies both the axonal circumference and natural log (ln) axonal area were significantly (P < 0.01) smaller in the CMT 1A group (n = 8) than in the control group (n = 9). Myelin lamellae numbers, however, were similar in both groups. In a regression analysis relating ln axonal areas to the numbers of myelin lamellae, ln axonal area in the CMT 1A group was significantly (P < 0.05) smaller than in the control group in myelinated fibers with the numbers of myelin lamellae equal to or over 40. Therefore, it was concluded that the axonal area was smaller in large-diameter myelinated fibers in the CMT 1A group than in the control group. We speculated on the existence of axonal attenuation due to the impaired effect of Schwann cells on myelinated axons in CMT 1A with PMP22 gene duplication.

Adolescent↗

Pregnancy and delivery in Charcot-Marie-Tooth disease type 1.

We report the obstetric complications and the influence of pregnancy and delivery in 21 Charcot-Marie-Tooth disease type 1 (CMT 1) patients with 45 gestations. Sixteen patients had subjective disabilities from childhood or youth, and five with late onset had subclinical CMT when they became pregnant. The rate of obstetric complications in the study group was in accordance with that of the normal population, and there was no deleterious effect on fetal outcome. Of the 21 participants, 38% (8 of 21) reported an exacerbation of CMT in at least one pregnancy. These patients noted increasing weakness in 81% (17 of 21) of their gestations. A temporary worsening occurred in 35% (6 of 17) of these pregnancies, and neurologic disabilities persisted after 65% of the deliveries (11 of 17). Patients who had pregnancy-associated progression in the first gestation (7 of 21) experienced similar deterioration in subsequent pregnancies (10 of 11), ie, there is a high risk for recurrence of exacerbations. Four women (19%) stated that their last deliveries were responsible for either an exacerbation or the onset of the neuropathy. The remaining nine patients (43%) denied any effect of their gestations on the progression of the neuropathy. Among the patients who had subjective disabilities from childhood or youth, the risk of a noticeable exacerbation in at least one pregnancy was 50% (8 of 16) and affected 81% of their gestations (17 of 21), whereas there was no influence of pregnancy in the five patients with adult onset of CMT, although the first symptoms were noticed postpartum in two of them.(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent↗

A novel point mutation in the peripheral myelin protein 22 (PMP22) gene associated with Charcot-Marie-Tooth disease type 1A.

We studied the peripheral myelin protein gene PMP-22 in a large Sardinian family with Charcot-Marie-Tooth disease type 1A (CMT1A), in which the duplication commonly found in CMT1A was absent, but with evidence of linkage on chromosome 17. Sequencing of DNA and cDNA showed a missense point mutation G368-->T in exon 5 of PMP22, predicted to determine a valine for glycine substitution at codon 107, which could be plotted in the center of the PMP22 protein putative transmembrane domain III. Using sequence-specific oligonucleotide probes (SSOP), we found the point mutation in all affected CMT1A subjects but not in healthy family members or in 314 chromosomes of controls, thus indicating that the G368-->T point mutation is not a polymorphism. In the hypothetical model of PMP22, the amino acid at position 107 plots deeply into alpha-helical transmembrane domain III, a domain where point mutations have never previously been found. Although the same mutation was present in all CMT1A subjects examined, clinical findings showed a different stereotyped pattern in relation to the generation examined, for a progressive increase in severity and an earlier onset from the first to the third generation examined. Molecular analysis suggests that CMT1A disease in this family is due to the G368-->T point mutation, although other mechanisms may account for the clinical variability in the members of different generations.

Base Sequence↗

Anaesthesia for caesarean section in a patient with Charcot-Marie-Tooth disease.

We describe the management of a 25-year-old primigravida with severe respiratory insufficiency secondary to CHarcot-Marie-Tooth disease type I scheduled for Caesarean section. Incremental subarachnoid anaesthesia via a microcatheter was utilised. Mother and baby made an uneventful recovery and were discharged home on the tenth postoperative day.

Adult↗

Loss of phosphatase activity in myotubularin-related protein 2 is associated with Charcot-Marie-Tooth disease type 4B1.

Mutations in the gene encoding myotubularin-related protein 2 (MTMR2) are responsible for autosomal recessive Charcot-Marie-Tooth disease type 4B1 (CMT4B1), a severe hereditary motor and sensory neuropathy characterized by focally folded myelin sheaths and demyelination. MTMR2 belongs to the myotubularin family, which is characterized by the presence of a phosphatase domain. Myotubularin (MTM), the archetype member of this family, is mutated in X-linked myotubular myopathy. Although MTMR2 and MTM are closely related, they are likely to have different functions. Recent studies revealed that MTM dephosphorylates specifically phosphatidylinositol 3-phosphate. Here we analyze the biochemical properties of the mouse Mtmr2 protein, which shares 97% amino acid identity with human MTMR2. We show that phosphatidylinositol-3-phosphate is also a substrate for Mtmr2, but, unlike myotubularin, Mtmr2 dephosphorylates phosphatidylinositol 3,5-bisphosphate with high efficiency and peak activity at neutral pH. We demonstrate that the known disease-associated MTMR2 mutations lead to dramatically reduced phosphatase activity, suggesting that the MTMR2 phosphatase activity is crucial for the proper function of peripheral nerves in CMT4B1. Expression analysis of Mtmr2 suggests particularly high levels in neurons. Thus, the demyelinating neuropathy CMT4B1 might be triggered by the malfunction of neural membrane recycling, membrane trafficking, and/or endocytic or exocytotic processes, combined with altered axon-Schwann cell interactions. Furthermore, the different biochemical properties of MTM and MTMR2 offer a potential explanation for the different human diseases caused by mutations in their respective genes.

Amino Acid Sequence↗

Four novel mutations of the connexin 32 gene in four Japanese families with Charcot-Marie-Tooth disease type 1.

DNA-based mutation analysis on the connexin 32 gene was performed in 49 families with Charcot-Marie-Tooth disease (CMT) type 1 but without duplication involving the chromosomal region, 17p12-p11.2. Mutations were identified in five of the 49 families, and four of the five mutations were hitherto undescribed: Va137Met, Glu57His, Arg142Glu, Val177Ala. X-linked CMT sometimes lacks evidence for X-linked transmission and cannot be differentiated from CMT type 2, especially in females with mildly decreased nerve conduction velocity. Therefore, molecular analysis is useful for molecular pathology of their disease.

Adolescent↗