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At least 19 recordsLinked to original sources

Dominant NARS1 mutations causing axonal Charcot-Marie-Tooth disease expand NARS1-associated diseases.

Pathogenic variants in six aminoacyl-tRNA synthetase (ARS) genes are implicated in neurological disorders, most notably inherited peripheral neuropathies. ARSs are enzymes that charge tRNA molecules with cognate amino acids. Pathogenic variants in asparaginyl-tRNA synthetase (NARS1) cause a neurological phenotype combining developmental delay, ataxia and demyelinating peripheral neuropathy. NARS1 has not yet been linked to axonal Charcot-Marie-Tooth disease. Exome sequencing of patients with inherited peripheral neuropathies revealed three previously unreported heterozygous NARS1 variants in three families. Clinical and electrophysiological details were assessed. We further characterized all three variants in a yeast complementation model and used a knock-in mouse model to study variant p.Ser461Phe. All three variants (p.Met236del, p.Cys342Tyr and p.Ser461Phe) co-segregate with the sensorimotor axonal neuropathy phenotype. Yeast complementation assays show that none of the three NARS1 variants support wild-type yeast growth when tested in isolation (i.e. in the absence of a wild-type copy of NARS1), consistent with a loss-of-function effect. Similarly, the homozygous knock-in mouse model (p.Ser461Phe/Ser472Phe in mouse) also demonstrated loss-of-function characteristics. We present three previously unreported NARS1 variants segregating with a sensorimotor neuropathy phenotype in three families. Functional studies in yeast and mouse support variant pathogenicity. Thus, NARS1 is the seventh ARS implicated in dominant axonal Charcot-Marie-Tooth disease, further stressing that all dimeric ARSs should be evaluated for Charcot-Marie-Tooth disease.

Charcot–Marie–Tooth disease↗

Motor innervation and fiber type pattern in amyotrophic lateral sclerosis and in Charcot-Marie-Tooth disease.

A quantitive study of the terminal innervation ratio (TIR) was conducted using 18 amyotrophic lateral sclerosis (ALS) and 12 Charcot-Marie-Tooth disease (CMT) muscle biopsies. Morphometric and histochemical analyses of muscle fibers were performed in 9 ALS and 6 CMT biopsies. The results revealed that TIR and type grouping were significantly greater in CMT than in ALS. The proportion of type 3 fibers was higher in ALS, though the proportion of intermediate and type 0 fibers was significantly higher in CMT. The atrophy factor was significantly greater in type 3 than in types 1 and 2 fibers, but it was not significantly different in type 0 and intermediate fibers as compared to types 1 and 2, It appears, therefore, that CMT has a better capacity for collateral reinnervation than ALS. Type 0 and intermediate fibers may represent altered endproducts of successful collateral reinnervation.

Adenosine Triphosphatases↗

Non-hypertrophic familial neuropathy associated with intention tremor. A variety of Charcot-Marie-Tooth disease?

A family with an association of sensorimotor neuropathy and intention tremor is reported. Clinical examination of 3 affected family members showed in varying degrees areflexia, muscle wasting, impairment of deep sensation with an ataxic gait, pes cavus and disabling intention tremor. Motor nerve conduction velocities were moderately slowed. A superficial peroneal nerve biopsy showed axonal degeneration without segmental demyelination or onion bulb formation. Our observation seems to indicate an association of intention tremor with the non-hypertrophic variety of Charcot-Marie-Tooth disease. It can therefore be suggested that the two classical types of Charcot-Marie-Tooth syndrome possess variants which are associated with intention tremor. This association is well-known for the hypertrophic type; our report gives an example of the non-hypertrophic type.

Adult↗

Charcot-Marie-Tooth disease associated with retinal pigment dystrophy and protanopia. Neurological, ophthalmological and genetic study of a family.

Neurological, ophthalmological and genetic investigations were performed on a family, a member of which presented with a rare association of tapeto-retinal degeneration, protanopia and Charcot-Marie-Tooth disease (CMT), and asked for genetic counseling. The neurological enquiry was completed by measurement of motor nerve conduction velocity in several completed by measurement of motor nerve conduction velocity in several members of the family. The propositus was submitted to a muscle biopsy. The ophthalmological examination included ophthalmoscopy, fluorescein angiography, electroretinogram and electrooculogram. The propositus, a woman aged 40, had typical CMT disease and her father also had a mild form of it. She had protanopia as had her father, her son and her nephew. In addition she had large macular pigmented changes, described as retinal dystrophy, "flavus flavimaculatus." Her mother had only senile pigmented modification of the fundus and her three daughters had mild macular pigmented changes, like "salt and pepper." Two genes are probably involved: one for protanopia with X linked recessive inheritance, the other responsible of CMT and tapeto-retinal degeneration, with an autosomal dominant inheritance, giving a 50% risk of recurrence.

Adolescent↗

[Mitochondrial changes of the skeletal muscle in the peroneal muscular atrophy (Charcot-Marie-Tooth disease). Histological and electron microscopic studies (author's transl)].

This report deals with two sisters (38 and 44 years old) suffering from Charcot-Marie-Tooth disease. Muscle biopsies were taken from the deltoid and the rectus femoris. In one of the cases a sural nerve biopsy was also made. Light microscopy showed only slight myopathic changes. The histochemical reactions disclosed an increase in lipid deposition and in NADH-TR activity of type 1 fibres. Electron microscopy showed abnormal mitochondrial aggregates, which were surrounded inconstantly by glycogen deposits, especially in subsarcolemmal space. Many of the atypical mitochondria showed paracristalline inclusions within the cristae. The significance of these findings is discussed and compared with similar reports in the literature.

Adult↗

P2X7 Receptor in Rare Diseases: Shared Molecular Mechanisms and Therapeutic Implications.

Rare diseases (RDs) are individually uncommon but collectively affect a large global population, and the vast majority still lack effective disease-modifying therapies. With advances in genomics and data-sharing platforms, research has increasingly shifted from a single-disease perspective to the search for convergent molecular pathways that might be shared across clinically distinct entities. In this context, the purinergic P2X7 receptor (P2X7R) has emerged as a putative "shared molecular platform" due to its central role in inflammation amplification, cell death and immune regulation. P2X7R is an ATP-gated ion channel with unique structural and functional features: under high extracellular ATP, it not only forms a non-selective cation channel but can also dilate into a "large pore" permeable to macromolecules, thereby triggering Ca2+overload, NLRP3 inflammasome assembly, reactive oxygen species (ROS) production and apoptotic/necrotic-like cell death. This review briefly outlines the epidemiology of RDs and the structural-functional characteristics of P2X7R, then systematically summarizes current evidence linking P2X7R to multiple rare diseases, including Charcot-Marie-Tooth disease, Guillain-Barré syndrome, amyotrophic lateral sclerosis, Huntington's disease, multiple sclerosis, and selected inflammatory and metabolic RDs (CAPS, familial Mediterranean fever, Systemic sclerosis, Dravet syndrome and Gaucher disease). By comparing P2X7R expression and functional alterations, downstream signaling pathways and pharmacological data from animal models across these conditions, we propose that a P2X7R-dependent network centered on a "Ca2+-NLRP3-inflammation/cell death axis" may constitute a common pathogenic backbone for diverse RDs. At the same time, disease-specific spatiotemporal expression patterns of P2X7R in central vs peripheral nervous systems and in immune vs target organ cells confer marked context dependence and "double-edged sword" properties. Finally, we discuss opportunities and challenges for P2X7R-targeted strategies, including the impact of disease stage and sex differences on therapeutic efficacy, and key bottlenecks in translating preclinical findings into clinical benefit. A deeper understanding of both shared and disease-specific roles of P2X7R may provide a conceptual framework and therapeutic entry point for precision stratification and multi-target interventions in rare diseases.

P2X7 receptor↗

[Further remarks on histochemistry applied to myodiagnosis: findings of "type predominance" (author's transl)].

Data concerning muscular biopsies (histochemically examined) of three patients affected by Charcot-Marie-Tooth disease, neurogenic atrophy of spondilosic origin and benign congenital hypotonia, are described. The common finding was a histochemical appearence of "type predominance". This point and the possible "neurogenic" origin of benign congenital hypotonia, are discussed.

Adult↗

Mitochondrial abnormalities of late motor neuron degeneration following poliomyelitis and other neurogenic muscular atrophies.

A case of late motor neuron degeneration following poliomyelitis with abnormal mitochondria in muscle fibers is presented with two additional cases of systemic neurogenic muscular atrophy (Charcot-Marie-Tooth disease). Muscle biopsy revealed a neurogenic pattern of variable severity in all cases. Subsarcolemmal zones of hyperactivity and hyperpositive intermyofibrillar collections of granular material present in a variable proportion of type I fibers were demonstrated by oxidative enzymes. Ultrastructurally they corresponded to abnormal mitochondria, with paracrystalline inclusions in one case. The finding is discussed in the light of the previous literature on mitochondrial myopathies. Mitochondrial alterations are not specific and their significance in neurogenic conditions is debated.

Adolescent↗

Rapidly progressive steroid-resistant focal segmental glomerulosclerosis associated with an INF2 exon 6 variant.

Variants in the inverted formin-2 (INF2) gene are a known cause of hereditary focal segmental glomerulosclerosis (FSGS) and Charcot-Marie-Tooth disease. We report a case of rapidly progressive FSGS associated with a rare INF2 variant. A 12-year-old boy developed proteinuria and was diagnosed with FSGS at age 14 following a renal biopsy. Steroid therapy and subsequent immunosuppressive treatments, including plasma exchange, were ineffective. At age 15, a heterozygous missense variant in exon 6 of the INF2 gene (c.763G>A, p.Asp255Asn) was identified. Despite conservative management, the patient progressed to end-stage kidney disease at age 17. Although exon 6 variants are rarely reported, the present case showed a relatively aggressive renal course.

Humans↗

[Roussy-Levy's syndrome: clinical aspects (author's transl)].

A case of non familial Roussy-Lévy syndrome is presented: optic atrophy, gait ataxia, bilateral hypotrophy of thenar and hypothenar muscles, weak deep tendon reflexes of the upper limbs, weak knee jerks, absent ankle jerks, bilateral Babinski, anapallaesthesia from the bisiliac spine distally, bilateral pes cavus. The literature on Roussy-Lévy syndrome is discussed and whether this syndrome should be considered as a precise entity among heredo-degenerative diseases. The overlapping of differing clinical features may suggest an intermediate form between Friedreich's and Charcot-Marie-Tooth's diseases.

Adult↗

The differential diagnosis of scapuloperoneal amyotrophy.

This report deals with a scapuloperoneal syndrome which developed simultanously with pain and distal paresthesias. In addition there was a slight sensory disturbance of glove and stocking type distribution. Motor conduction velocity was within normal limits and all distal latencies of response were normal; only the sensory conduction velocity of the left median nerve was found to be decreased (42.1 m/s). Electromyographic investigations revealed only signs of myopathy. Histological findings (m. deltoideus, m. tibialis anterior) favoured a primary myopathic process. Biopsy of the n. suralis revealed no certain pathological changes. The affection appears to have an autosomal dominant mode of inheritance. The sensory disturbance and decreased reflexes indicate an involvement of the nervous system, but the question of relationship to the scapuloperoneal muscular atrophy cannot yet be answered.

Adolescent↗

Familial myoclonic epilepsy with ataxia and neuropathy with additional features of Friedreich's ataxia and peroneal muscular atrophy.

A family is described in which a mother and three of her five children showed myoclonic epilepsy. The mother and one son were also ataxic; one other son had additional features of Friedreich's ataxia, and a daughter had peroneal muscular atrophy as well as myoclonic epilepsy and ataxia. Although some of these disorders have been associated in previously reported families, the occurrence of all three disorders in members of one family seems to be unique. It is concluded that this family shows the manifestations of one, probably dominant, gene. The differences in age of onset and manifestations may be explained by the action of one or more subsidiary genes.

Adult↗

[Clinico-genalogic characteristics of hereditary diseases of the nervous system in the Kuibyshev region].

The report contains data of a clinico-genealogical analysis of 450 observations of hereditary diseases of the nervous system, and the prevalence rates of neurohereditary diseases in the Kuibyshev region. The authors stress the significance of the founder effect as a factor lying at the basis of a concentration of autosome-dominant forms in some of the areas of the region. The role of increased inbreeding in the enlargement of the amount of autosome-recessive forms is being confirmed. The results of the study denote that in the population of the studied region the group of nervous-muscular hereditary diseases is most frequent. The main neurohereditary diseases are being clinically defined with an indication of the type of hereditary transmission. The authors underline the significant clinical intra- and inter-familial polymorphism of such diseases as the Charcot-Marie-Tooth neuronal amyotrophy, scapulohumeral-facial myopathy of Landusi-Dejenrinne, primary pelvic-humeral progressive muscular dystrophy, autosoma-dominant myatrophic ataxia, myotonic dystrophy. The authors indicate the necessity of a screening of patients with hereditary diseases of the nervous system.

Ataxia↗

The Charcot-Marie-Tooth Neuropathy (CMTX3) Complex Structural Variation Causes Differential SOX3 Spatiotemporal Expression.

Charcot-Marie-Tooth (CMT) neuropathy is a clinically and genetically heterogeneous group of diseases characterized by the length-dependent axonal degeneration of peripheral nerves. We previously mapped a rare form of X-linked CMT, CMTX3, to a 5.7-Mb interval on chromosome Xq26.3-q27.1 and excluded the coding region of all known genes in the linkage interval for mutations. Whole genome sequencing subsequently identified a 78-kb region of chromosome 8q24.3 that had been duplicated and inserted into the CMTX3 locus between the genes HAPSTR2 and SOX3. The 78-kb insertion, which contains a partial transcript of ARHGAP39, fully segregated in families with CMTX3 and was absent in neurologically normal controls. To retain the CMTX3 insertion and investigate its consequences in appropriate neuronal tissue, we generated induced pluripotent stem cells (iPSCs) from CMTX3 fibroblasts. Using bulk RNA sequencing of patient-derived spinal motor neurons, ARHGAP39 was deemed nonpathogenic by excluding both the formation of novel fusion transcripts and dosage effects from the partial duplication. Subsequent NanoString expression analyses of candidate genes within the CMTX3 locus, across different stages of neuronal differentiation, identified spatiotemporal dysregulation of SOX3. NanoString showed reduced SOX3 expression in patient iPSCs. RNA sequencing detected SOX3 downregulation in CMTX3 neuroepithelial progenitor cells, which was further confirmed by quantitative proteomics. Given the early onset and relatively rapid progression of CMTX3, these data prioritise SOX3 as a leading candidate gene, consistent with its role as one of the earliest transcription factors expressed in the developing nervous system and a key regulator of neuronal fate.

Humans↗