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Biomedical subjects

A E Harding

Publications and source records attributed to A E Harding.

At least 181 records · Page 10Linked to original sources

Familial cerebral amyloid angiopathy with nonneuritic amyloid plaque formation.

Two families have been described previously with the features of an autosomal dominant familial cerebral amyloid angiopathy with nonneuritic plaque formation. The clinical features of the cases were dementia, spastic paralysis and ataxia. It has now been established that both families were descended from a common ancestor and the case histories of 26 affected individuals in 5 generations of this pedigree are reported. An autopsy study has been performed on a recent case. The findings are described and compared with the four previously published autopsy studies in this family, which is then discussed in the context of recent advances in the nosology of familial disorders in which cerebral amyloid angiopathy and other forms of cerebral amyloid deposition occur.

Amyloidosis↗

Pontobulbar palsy and neurosensory deafness (Brown-Vialetto-Van Laere syndrome) with possible autosomal dominant inheritance.

A female with the Brown-Vialetto-Van Laere syndrome is described. The patient's father, a paternal uncle, and possibly a paternal first cousin had neurosensory deafness and a paternal aunt had clinical symptoms indicative of the syndrome. This family raises the possibility that the disorder is genetically heterogeneous with autosomal recessive and autosomal dominant forms. Alternatively, it could be caused by a mutant gene on the X chromosome.

Adolescent↗

Diaphragmatic weakness in hereditary motor and sensory neuropathy.

Six patients severely affected by hereditary motor and sensory neuropathy (HMSN), four type I and two type II, had clinical evidence of diaphragmatic weakness. One presented with cardiorespiratory failure secondary to nocturnal hypoventilation, and three others were unable to lie flat because of dyspnoea. Diaphragmatic paralysis should be considered as a cause of respiratory or cardiac failure in cases of HMSN.

Adult↗

Central nervous system haemangioblastoma: a clinical and genetic study of 52 cases.

Fifty two cases of haemangioblastoma were reviewed for their clinical, genetic and prognostic features. Of 34 patients with apparently isolated cerebellar lesions, postoperative outcome was good in 79%. Six isolated spinal lesions presented more insidiously and morbidity was related to incomplete resection. Twelve (23%) of the patients definitely had von Hippel-Lindau disease (VHLD). The true proportion may be higher as this diagnosis was not definitely excluded in many of the remainder; only ten patients with seemingly isolated cerebellar tumours were appropriately investigated and two had evidence of VHLD. Four out of 26 cases (15%) with apparently completely resected, isolated, cerebellar lesions later developed recurrent tumours. Brainstem and supratentorial haemangioblastomas were rare and were always associated with VHLD. The cerebellar or spinal haemangioblastomas due to VHLD had no distinctive clinical features compared with isolated tumours and there was considerable overlap in age of onset between the two groups of cases. All patients with an apparently isolated CNS haemangioblastoma should be investigated for evidence of von Hippel-Lindau disease.

Adolescent↗

A new mitochondrial disease associated with mitochondrial DNA heteroplasmy.

A variable combination of developmental delay, retinitis pigmentosa, dementia, seizures, ataxia, proximal neurogenic muscle weakness, and sensory neuropathy occurred in four members of a family and was maternally transmitted. There was no histochemical evidence of mitochondrial myopathy. Blood and muscle from the patients contained two populations of mitochondrial DNA, one of which had a previously unreported restriction site for AvaI. Sequence analysis showed that this was due to a point mutation at nucleotide 8993, resulting in an amino acid change from a highly conserved leucine to arginine in subunit 6 of mitochondrial H(+)-ATPase. There was some correlation between clinical severity and the amount of mutant mitochondrial DNA in the patients; this was present in only small quantities in the blood of healthy elderly relatives in the same maternal line.

Adult↗

Linkage of hereditary motor and sensory neuropathy type I to the pericentromeric region of chromosome 17.

Vance et al. have reported linkage of hereditary motor and sensory neuropathy type I (HMSN I) to the pericentromeric region of chromosome 17. We have studied eight families with HMSN I (also called the hypertrophic form of Charcot-Marie-Tooth disease) for linkage of the disease locus to polymorphic loci in the centromeric region of chromosome 17. Linkage has been confirmed for D17S58 (EW301) with a maximum lod score of 5.89 at theta = 0.08 and for D17S71 (pA10-41) with a maximum lod score of 3.22 at theta = 0.08. EW301 is on 17p, 5.5 centimorgans from the centromere. Two families, previously reported as being linked to the Duffy blood group locus on chromosome 1, were included in this study, and one now provides positive lod scores for chromosome 17 markers. There was no evidence of heterogeneity.

Charcot-Marie-Tooth Disease↗

Diagnosis of Gerstmann-Sträussler syndrome in familial dementia with prion protein gene analysis.

The polymerase chain reaction was used to screen DNA samples from 12 unrelated individuals with various familial dementias and ataxias for mutation in part of the prion protein (PrP) gene, an abnormality that occurs in individuals with the spongiform encephalopathies, Gerstmann-Sträussler syndrome (GSS) and Creutzfeldt-Jakob disease. 2 members of a family in whom GSS was not previously suspected had a 0.15 kb insertion of similar size to that found in another kindred with pathologically proven spongiform encephalopathy. GSS may be more common than is currently realised; PrP gene analysis is potentially useful for diagnosis and genetic counselling in familial dementias and ataxias.

Adult↗

Deletions of muscle mitochondrial DNA in mitochondrial myopathies: sequence analysis and possible mechanisms.

Forty per cent of patients with mitochondrial myopathies, a diverse group of multisystem diseases predominantly affecting skeletal muscle and the brain, have large deletions of a proportion of muscle mitochondrial DNA (mt DNA). These appeared to be identical in 13 of 28 cases, contained within the region 8286-13595 bp. Analysis of the deletion junction in two cases showed a 13 nucleotide sequence which occurred in the normal genome as a direct repeat flanking the region deleted in the mutant mt DNAs. Mt DNA deletions may arise from recombination or slippage between short sequence repeats during replication.

Amino Acid Sequence↗

Molecular genetics of amyloid neuropathy in Europe.

The Portuguese type of familial amyloid polyneuropathy (FAP type I), a disabling autosomal dominant disorder with onset in early adult life, is caused by a point mutation in the transthyretin (TTR; previously known as prealbumin) gene. DNA analysis in thirteen European families (one British, two French, one Italian, one Greek, and eight Cypriot) showed that members of all those from Cyprus and Greece, and one from France, carried the FAP type I mutation. Patients from seven of these ten kindreds were not known to have a genetic disease before this study, which demonstrated the mutation in 16 of 43 clinically unaffected relatives. 2 of these were aged over 50 years. TTR gene analysis has useful applications in genetic counselling, including prenatal diagnosis, in identifying the cause of seemingly sporadic cases of amyloid neuropathy, and in epidemiological studies of FAP.

Adult↗

Mitochondrial myopathies: clinical and biochemical features of 30 patients with major deletions of muscle mitochondrial DNA.

Analysis of mitochondrial DNA (mtDNA) in muscle and blood from 72 patients with mitochondrial myopathy showed that 30 had major deletions of a variable proportion of muscle mtDNA. All of these 30 patients presented with progressive external ophthalmoplegia and limb weakness, and 8 had the additional features of the Kearns-Sayre syndrome. Of the 42 patients without detectable muscle mtDNA deletions, 10 had progressive external ophthalmoplegia and limb weakness, 2 had the Kearns-Sayre syndrome, 11 had limb weakness without extraocular involvement, and 19 had multisystem disorders predominantly affecting the central nervous system. Only 2 patients with mtDNA deletions had clinically affected relatives, compared with 10 of those without deletions. In the 4 patients with polarographic defects exclusively involving complex I (NADH coenzyme Q reductase), the deleted protein-coding genes were confined to those for complex I subunits. Thirteen other patients with apparently identical deletions had variable clinical and biochemical features. Immunoblots of complex I polypeptides from patients with deletions were either indistinguishable from controls or showed only a mild generalized decrease in all identifiable subunits.

Adult↗

Ataxia telangiectasia: a reappraisal of the ocular motor features and their value in the diagnosis of atypical cases.

The eye movements of four patients with ataxia telangiectasia (AT), three of whom had an unusual neurological presentation, were studied. All had striking abnormalities of saccadic generation with markedly hypometric saccades, increased saccadic latency, but normal saccadic velocity. Three patients used head thrusts to aid refixation. In addition, there was absence of smooth pursuit and optokinetic nystagmus, and hyperactive vestibular responses. Two of the four patients had, in addition, periodic alternating nystagmus. This combination of an ocular motor apraxia with superadded cerebellar ocular motor abnormalities, and possibly periodic alternating nystagmus, should strongly suggest the diagnosis of AT, even if the clinical syndrome is otherwise atypical.

Adult↗

Absence of linkage of hereditary motor and sensory neuropathy type I to chromosome 1 markers.

Although one large family with hereditary motor and sensory neuropathy (HMSN) type I that showed linkage to the Duffy blood group (FY) on chromosome 1 has previously been reported, we have failed to find evidence for such linkage after examining 14 markers from chromosome 1 in 12 pedigrees. We have excluded linkage between HMSN I and FY up to theta = 0.15 (lod = -3.01) and also between HMSN I and markers flanking FY; amylase (AMY), polymorphic urinary mucin (PUM), serum amyloid protein (APCS), and alpha-spectrin (SPTA). We have excluded HMSN I from 70 cM around this linkage group. Other markers examined were MS1, oncogene L-myc (MYCL), beta-subunit of nerve growth factor (NGFB), oncogene N-ras (NRAS), glucocerebrosidase (GBA), apolipoprotein AII (APOA2), antithrombin III (AT3), renin (REN), and MS32. These cover both the long and the short arms of chromosome 1 in addition to the centromeric region and yielded no evidence of linkage to HMSN I. Two-point lod scores between these markers are also presented. It is possible that there are two or more loci for HMSN I and it will be necessary to obtain significant lod scores from individual families to resolve this issue. This is increasingly possible now that hypervariable genetic markers such as PUM are available.

Chromosome Mapping↗

Mitochondrial myopathies.

The mitochondrial myopathies give rise to a diverse group of clinical syndromes, variably involving skeletal muscle and the central nervous system, with onset in childhood or adult life. In vitro studies of mitochondrial metabolism have identified a variety of functional defects of the respiratory chain, predominantly affecting complex I or complex III in adults, and complex IV in children. The increased incidence of maternal, as opposed to paternal, transmission in familial mitochondrial myopathy has led to the suggestion that these disorders may be caused by mutations of mitochondrial (mt) DNA. This hypothesis is derived from observations that mtDNA encodes subunits of the respiratory chain proteins and is exclusively maternally transmitted. Analysis of muscle mtDNA shows two populations, one normal and the other deleted by up to nearly half its length, in about 40% of cases of mitochondrial myopathy. Only a single normal length population of mtDNA is seen in blood from these patients, and in blood and muscle from control subjects. Patients with muscle mtDNA deletions reported to date have all presented with progressive external ophthalmoplegia, including some with the Kearns-Sayre syndrome. They rarely have affected relatives. Deletions are not detected in cases of proximal myopathy alone, or those with adult onset syndromes predominantly affecting the central nervous system. There is no clear correlation between the deleted coding regions and the biochemical defects; even patients with seemingly identical muscle mtDNA deletions may be clinically and biochemically heterogeneous.

DNA, Mitochondrial↗