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Biomedical subjects

H Kellar-Wood

Publications and source records attributed to H Kellar-Wood.

7 recordsLinked to original sources

Sequence of the human homologue of a mitochondrially encoded murine transplantation antigen in patients with multiple sclerosis.

There is some evidence that mitochondrial genes may contribute to susceptibility to multiple sclerosis (MS), and a mitochondrial DNA-encoded peptide, the N-terminal portion of NADH-dehydrogenase subunit 1, acts as a transplantation antigen in mice. We have analysed the DNA sequence of the corresponding region of human mitochondrial DNA in 87 patients with MS, 10 with Leber's hereditary optic neuropathy in association with an MS-like illness, and 31 control subjects. This sequence appears to be highly conserved. Only three base pair changes were identified, each being found once only in one control and two patients, and these are likely to be harmless polymorphisms. There is thus no evidence that polymorphism in this region contributes to genetic susceptibility in MS.

Animals

Leber's hereditary optic neuropathy mitochondrial DNA mutations in multiple sclerosis.

The observation of a multiple sclerosis (MS)-like illness in patients, particularly women, who carry the most common Leber's hereditary optic neuropathy mitochondrial DNA (mtDNA) mutation may indicate a contributory role for mitochondrial genes in genetic susceptibility to MS. We screened 307 unrelated MS patients, ascertained from population surveys, for the pathogenic Leber's hereditary optic neuropathy mutations at positions 11778 and 3460 of mtDNA, and also studied 20 patients with prominent and early optic nerve involvement. In addition, these 307 patients and 129 control subjects were investigated for the base change at position 13708, which has been suggested to play a role in the pathogenesis of Leber's hereditary optic neuropathy. Neither of the pathogenic mtDNA mutations occurred in the unselected MS patients. The 13708 base change was present in MS patients at a frequency similar to that in healthy control subjects. Three of the patients selected on the basis of severe optic nerve involvement had either the 11778 (one) or 3460 (two) mutations associated with Leber's hereditary optic neuropathy. All were women and none had affected relatives. We conclude that these mutations do not contribute to genetically determined susceptibility in typical MS patients, although a mitochondrial genetic component in the etiology of MS remains possible. A subgroup of MS patients, particularly females with severe bilateral visual failure due to optic neuropathy, may harbor a Leber's hereditary optic neuropathy mutation and we suggest that mtDNA analysis is appropriate in these patients.

Adult

Apo E genotypes in multiple sclerosis, Parkinson's disease, schwannomas and late-onset Alzheimer's disease.

Apolipoprotein E (apo E) exists in three allelic, functionally distinct isoforms (apo E2, E3 and E4). Recent work has suggested that apo-E-dependent uptake of lipoproteins may play important roles in the development and maintenance of the nervous system and in the responses to both peripheral and central nervous system injury. If apo-E-mediated transport of lipids were a rate-limiting step in these processes, one might expect that the functional differences between the alleles would be associated with varying predispositions to neurodegenerative and demyelinating diseases. Thus, we looked for an association between particular apo E genotypes and susceptibility to multiple sclerosis and Parkinson's disease. If apo-E-mediated cholesterol uptake were limiting in neuronal growth, one might also expect that apo E2 alleles would slow CNS tumour growth. Accordingly, apo E genotypes were investigated in individuals with sporadic vestibular schwannomas and neurofibromatosis type 2 (NF-2). No significant alteration in the apo E allele distributions was observed in any of these conditions, nor did the apo E genotypes correlate with disease severity. However, we confirmed the previous findings of an over-representation of the apo E4 allele in autopsy-diagnosed late-onset Alzheimer's disease patients. In addition, our data supported the recent observations that apo E2 may be associated with a protective effect for late-onset Alzheimer's disease. These contrasting risks associated with the apo E2 and E4 alleles strengthen the suggestions that this gene is directly involved in the pathogenesis of Alzheimer's disease.

Alzheimer Disease

HLA class II genotypes in Leber's hereditary optic neuropathy.

There is an association between Leber's hereditary optic neuropathy (LHON) and a multiple sclerosis-like illness, raising the possibility of autoimmune pathogenetic mechanisms in LHON. We therefore investigated the frequency of HLA-DR genotypes in members of 79 families with LHON, defined by the presence of a pathogenic mitochondrial DNA mutation. There was no association between LHON and any HLA-DR genotype. Furthermore, affected relative pairs did not share HLA genotypes more than discordant pairs. We conclude that the HLA-DR locus is not a major genetic determinant for the development of blindness in LHON.

Alleles

The British Isles survey of multiple sclerosis in twins.

During a 27-month recruitment period, we identified 146 individuals with multiple sclerosis (MS) who have a twin. A single clinician interviewed and examined 105 pairs of twins, and we confirmed zygosity using minisatellite probes. Including two suspected cases, 11 of 44 (25%) monozygotic twin pairs were concordant compared with two of 61 (3%) dizygotic twin pairs--two of 33 (6%) like-sexed and zero of 28 (0%) opposite-sexed. MRI was performed in 64 of 105 co-twins, and showed abnormalities consistent with demyelination in 13% of monozygotic and 9% of dizygotic co-twins who were clinically unaffected. These findings are similar to the results of most previous studies of MS in twins in which zygosity was not unequivocally established and where the majority of clinically unaffected co-twins were not studied by MRI; the difference in concordance rates in monozygotic and dizygotic twins indicates a significant genetic component in the etiology of MS.

Adolescent

Multiple sclerosis.

Differences in the risk of multiple sclerosis depending on racial background, and the high clinical concordance rates in monozygotic compared with dizygotic twins, have stimulated attempts to identify and locate genes that confer susceptibility to the disease. The risk of multiple sclerosis is increased from 1 in 800 in northern European Caucasians to 1 in 3 in the monozygotic co-twins of affected individuals, with intermediate rates for siblings, offspring and more distant relatives. Concordance rates in monozygotic and dizygotic co-twins of affected individuals rise to 35% and 15%, respectively when magnetic resonance imaging is used to supplement clinical evidence for disease status. The increased recurrence risk in relatives of patients with multiple sclerosis is consistent with a model in which more than one gene contributes to susceptibility. Population studies have demonstrated an association with the class 2 major histocompatibility complex (MHC) phenotypes DR15 and DQw6 and their corresponding genotypes DRB1.1501, DRB5.0101 and DQA1.0102, DQB2.0602. An extensive search, using population studies, for other polymorphic alleles involved in restriction of the immune response may have yielded an additional candidate gene in the VH2-5 immunoglobulin heavy-chain variable region. Identity by descent analysis of candidate genes encoded within the alpha-chain of the T-cell receptor and the gene for myelin basic protein has failed to demonstrate linkage; paradoxically, this is also true for the MHC class 2 region, despite the population association. However, studies involving a large number of sibling pairs have reported a bias in the distribution of T-cell receptor beta-chain variable region haplotype sharing, favouring linkage. This becomes more marked when stratification is made for the presence of DR2 in both affected siblings, suggesting an interaction between genetic polymorphisms encoded within the MHC and T-cell receptor genes, as expected from their known functional co-operation in antigen presentation. The same is true for the immunoglobulin heavy chain, providing provisional evidence for linkage to a gene encoded within the immunoglobulin heavy-chain variable region in families reported from the UK. Taken together, these findings demonstrate the importance of family studies in elucidating the genetic basis of multiple sclerosis, and confirm that several genes are involved, one or more of which regulates genetic restriction of the immune response. The contribution made by the susceptibility genes that have provisionally been identified, occurring in isolation or together, can account for only a proportion of the increased risk of multiple sclerosis implicated by family studies.(ABSTRACT TRUNCATED AT 250 WORDS)

Genes

Occurrence of a multiple sclerosis-like illness in women who have a Leber's hereditary optic neuropathy mitochondrial DNA mutation.

Eight women are described who presented with bilateral, usually sequential, optic neuropathy, six of whom later developed a neurological syndrome indistinguishable from multiple sclerosis (MS). Magnetic resonance imaging, performed in five of the patients with an MS-like illness and in the two others with optic neuropathy alone, showed widespread white matter lesions as seen in MS. All of these women had matrilineal relatives with Leber's hereditary optic neuropathy, although this was not always apparent at presentation, and the most common mitochondrial DNA mutation associated with this disorder was detected in each of the women and their affected relatives. On the basis of observations made in these patients, the clinical features of Leber's hereditary optic neuropathy in males, and evidence for mitochondrially encoded peptides involved in the immune response in rodents, we propose that optic nerve damage in this disease could be immunologically mediated and that mitochondrial genes may contribute to susceptibility to MS.

Adult