Classification of the hereditary motor and sensory neuropathies.
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Biomedical subjects
Publications and source records attributed to M M Reilly.
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We report a middle-aged woman with a novel transthyretin (TTR) variant, Leu12Pro. She had extensive amyloid deposition in the leptomeninges and liver as well as the involvement of the heart and peripheral nervous system which characterizes familial amyloid polyneuropathy caused by variant TTR. Clinical features attributed to her leptomeningeal amyloid included radiculopathy, central hypoventilation, recurrent subarachnoid haemorrhage, depression, seizures and periods of decreased consciousness. MRI showed a marked enhancement throughout her meninges and ependyma, and TTR amyloid deposition was confirmed by meningeal biopsy. The simultaneous presence of extensive visceral amyloid and clinically significant deposits affecting both the peripheral and central nervous system extends the spectrum of amyloid-related disease associated with TTR mutations. The unusual association of severe peripheral neuropathy with symptoms of leptomeningeal amyloid indicates that leptomeningeal amyloidosis should be considered part of the syndrome of TTR-related familial amyloid polyneuropathy.
There have been major advances in the understanding of the genetically determined neuropathies in recent years. The underlying genetic defects are now known for many of the demyelinating hereditary motor and sensory neuropathies, and linkage data are available for some of the axonal hereditary motor and sensory neuropathies. This has important implications for both diagnosis and genetic counselling in this group of conditions. The genetic defect in most cases of familial amyloid polyneuropathy is also now known. In the most common form of familial amyloid polyneuropathy (FAP), transthyretin-related FAP, liver transplantation has been established as the first definitive treatment for a hereditary neuropathy and should be considered especially in young adult patients. This review will concentrate on the advances in the molecular genetics of the hereditary motor and sensory neuropathies, the hereditary sensory and autonomic neuropathies and the familial amyloid polyneuropathies with particular emphasis on the difficulties in classifying the first group.
OBJECTIVE: To investigate the genotypic-phenotypic variations in a series of patients with familial amyloid polyneuropathy (FAP). BACKGROUND: Progress in molecular genetics has led to the identification of point mutations in the transthyretin (TTR) gene in FAP--a dominantly inherited neuropathy with a fatal outcome. These findings have modified the management of patients with small-fiber neuropathy and allow genetic counseling. METHODS: We performed a clinical and molecular genetic study with screening of the TTR gene mutations and associated haplotypes in 65 patients from 29 unrelated families of French ancestry. RESULTS: We detected nine heterozygous point mutations segregating with FAP. Fourteen families (48%) carried the common methionine (Met) 30 substitution. Seven kindreds (24%) had previously unreported TTR variants, namely asparagine 35, serine (Ser) 91, phenylalanine (Phe) 77, and Ser 116. At least two different haplotypes were associated with each of the following: Met 30, Phe 77, and valine 107, suggesting that multiple founders occurred for each variant. Only 35% of the index patients had affected relatives. Other patients had a sporadic presentation. All progressed to a severe sensorimotor and autonomic neuropathy with frequent cardiac involvement (80%). On average, a late age at onset (54.3 +/- 13.3 years) and a disease duration shorter than 10 years were observed for virtually all variants. CONCLUSION: The heterogeneity of the TTR variants, the late age at onset, and the short duration of the disease found in our patients contrast with the presentation of FAP in Portugal. These findings must be taken into account in the management of both patients and asymptomatic carriers.
Peripheral nerve amyloidosis is the cardinal feature of familial amyloid polyneuropathy (FAP) but can also be seen in primary light chain (AL) amyloidosis and dialysis (beta 2-microglobulin) related amyloidosis. The generalized neuropathy seen in all forms of peripheral nerve amyloidosis is similar, characterized by a severe progressive mixed neuropathy with autonomic dysfunction. Pathologically, amyloid is found in the peripheral nervous system as amorphous, eosinophilic, extracellular deposits. FAP is most commonly associated with variant plasma transthyretin (TTR), although it has also been described in association with mutant apolipoprotein A-1 and gelsolin. There are now at least 36 point mutations in the TTR gene associated with FAP and these continue to be described. Recent studies on the possible role individual point mutations in the TTR gene may play in amyloidosis have helped give us an insight into the mechanisms behind peripheral nerve amyloidosis. This article reviews the clinical and pathological features of the peripheral nerve amyloidosis and discusses theories of amyloidogenesis based on studies of FAP.
Familial amyloid polyneuropathy (FAP) is an autosomal dominant disorder originally and most frequently described in Portugal. The usual constituent amyloid fibril protein is transthyretin (TTR) and the most frequent mutation in the TTR gene associated with FAP (including all Portuguese cases) is that at position 30 (met 30). Three different TTR haplotypes have been described in association with the met 30 mutation in European patients. We studied the haplotypes of 27 families (24 French, 2 British and 1 Greek) with FAP met 30 by analysing three polymorphisms in introns of the TTR gene. We also studied 6 families (2 British, 3 French and 1 Spanish) with FAP tyr 77. There were two main haplotypes in French patients with FAP met 30, one most commonly seen in the French families of Portuguese descent which was the same haplotype as previously described in Portuguese patients (haplotype I) and another haplotype (III) detected in most informative French families not of Portuguese origin. The age of onset of symptoms was consistently later in French than in Portuguese patients and in patients with haplotype III as the disease-associated haplotype rather than haplotype I. British and French patients with the tyr 77 mutation had different haplotypes. The most likely explanation of these findings is multiple founders of both mutations.
We investigated 99 patients from 64 European families (51 French, 11 British, one Italian and one Spanish) with suspected familial amyloid polyneuropathy (FAP) for transthyretin (TTR) gene mutations. Thirty-nine families were found to have point mutations causing the following amino acid substitutions: Met30 (28 families), Tyr77 (five), Arg 50 (one), Ala49 (one), Gln89 (one), Ala60 (one) and one each with previously undescribed mutations at Asn35 and Gys54. The clinical picture in the patients with new and known mutations were typical of FAP, without any specific features for a particular mutation. Onset of symptoms was late (over 50 years) in many French and British patients with the Met30 and Tyr77 mutations, and only 30% of all index cases had affected relatives. We propose an approach to molecular diagnosis in European patients with FAP, apart from members of families with known mutations, based on the frequency of TTR mutations observed in this and and other studies of FAP in Europe. It is logical to screen for the Met30 and Tyr77 mutations and Ala60 in the UK, using restriction enzyme analysis. If these are absent, the TTR gene should be sequenced directly to detect less common or unknown mutations.
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A cluster of cases of familial amyloid polyneuropathy has been described in Donegal, north west Ireland. Two patients from this region have been shown to have the ala 60 mutation in the transthyretin gene. Three kindreds with this mutation have also been described in the United States. Genealogical and haplotype studies indicate that all known patients with this mutation are related and are descended from a founder in north west Ireland. There is evidence for reduced penetrance of this disorder. A population based study showed that 1.1% of the population in this area in north west Ireland carry the mutation. This has implications in terms of diagnosis, genetic counselling, and treatment in the future.
Familial amyloid polyneuropathy (FAP) is most commonly associated with variant plasma transthyretin, although it has also been described in association with mutant apolipoprotein A-1 and gelsolin. There are now approximately 26 point mutations in the transthyretin gene associated with FAP. Because of the overlapping clinical phenotypes described with these mutations, it is now more appropriate to classify the various forms of FAP according to the underlying genetic defect rather than on clinical grounds. Many questions concerning the amyloidogenic nature of transthyretin and the variability of organ involvement depending on the underlying mutation remain unanswered. The recent use of liver transplantation for treatment appears to be promising.
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