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Biomedical subjects

R J Pollitt

Publications and source records attributed to R J Pollitt.

At least 19 recordsLinked to original sources

Mutation and biochemical analysis in carnitine palmitoyltransferase type II (CPT II) deficiency.

Carnitine palmitoyltransferase type II (CPT II) deficiency has three basic phenotypes, late-onset muscular (mild), infantile/juvenile hepatic (intermediate) and severe neonatal. We have measured fatty acid oxidation and CPT II activity and performed mutation studies in 24 symptomatic patients representing the full clinical spectrum of disease. Severe and intermediate phenotypes show a clear correlation with biochemical indices and genetic analysis revealed causative mutations in most patients. Studies of mild phenotypes suggest a more complex interaction, with higher residual fatty acid oxidation, a wider range of CPT II activity (10-60%) but little evidence of genotype-phenotype correlation. Residual CPT II mutant protein from myopathic patients shows thermal instability at 41 degrees C. The common 'polymorphisms' V3681 and M647V are strikingly overrepresented in the myopathic patients, the implication being that they may significantly influence the manifestation of clinical disease and could therefore potentially be considered as a susceptibility variants. Among myopathic individuals, males comprised 88% of patients, suggesting increased susceptibility to clinical disease. A small number of symptomatic patients appear to have significant residual CPT II activity (42-60%) The synergistic interaction of partial deficiencies of CPT II, muscle adenosine monophosphate deaminase and possibly other enzymes of muscle energy metabolism in the aetiology of episodic myopathy deserves wider consideration.

AMP Deaminase↗

2-methyl-3-hydroxybutyryl-CoA dehydrogenase deficiency in a 23-year-old man.

2-Methyl-3-hydroxybutyryl-CoA dehydrogenase (EC 1.1.1.178) deficiency is a recently described defect of isoleucine catabolism. The disorder is characterized by normal early development followed by a progressive loss of mental and motor skills. Deterioration may be rapid or may follow a slower decline with a possible stabilization of the disorder on a low-protein diet and appropriate medication. We report a 23-year-old man with 2-methyl-3-hydroxybutyryl-CoA dehydrogenase deficiency with a very mild clinical course. He had apparently normal early development and remained relatively well until the age of 6 years, when he contracted measles. Following this illness, his motor skills and school progress deteriorated. At 15 years he had significant dysarthria, and generalized rigidity with some dystonic and unusual posturing. He was then treated with a low-protein high-carbohydrate diet with a good response in terms of balance and gait. At 18 years he was given benzhexol (Artane), increased slowly from 2 mg to 6 mg daily, resulting in improvement in tremor and dystonia. At 23 years he can dress himself and works in sheltered employment but remains severely dysarthric.

3-Hydroxyacyl CoA Dehydrogenases↗

Features of carnitine palmitoyltransferase type I deficiency.

Carnitine palmitoyltransferase type I (CPT I) is unique among long-chain fatty acid oxidation enzymes in that there are two tissue-specific isoforms, 'hepatic' and 'muscle', which are encoded by two separate genes. The 'hepatic' isoform is expressed in liver, kidney and fibroblasts and at low levels in the heart, while the other isoform occurs in skeletal muscle and is the predominant form in heart. Reported patients with CPT I deficiency lack activity of the hepatic isoform and present before 30 months of age with hypoketotic hypoglycaemia, hepatomegaly with raised transaminases, seizures and coma. We discuss four new cases in three families showing, variously, renal tubular acidosis, transient hyperlipidaemia and, paradoxically, myopathy with elevated creatinine kinase or cardiac involvement in the neonatal period as additional features that deserve wider recognition.

Acidosis, Renal Tubular↗

Newborn mass screening versus selective investigation: benefits and costs.

Cost-benefit analysis of newborn screening has an unimpressive record and yet it is still regarded as an important decision tool. This workshop surveyed ongoing research into the costs and benefits of systematic whole-population screening, as opposed to selective investigation of symptomatic patients, for inherited metabolic disease. Much current interest is focused on newborn screening by tandem mass spectrometry, which can replace current methods for detecting phenylketonuria and cover a much wider range of diseases. Two observational studies are comparing cost-effectiveness of tandem mass spectrometry screening versus symptomatic diagnosis in either concurrent or historical control populations. A number of other studies are assessing screening performance against predetermined criteria but without any formal control group. Medium-chain acyl-CoA dehydrogenase deficiency is the most common of the additional diseases being detected and it seems that octanoylcarnitine in blood is a particularly sensitive indicator: some of the cases detected by screening have genotypes suggesting a relatively low risk of serious metabolic decompensation. Ongoing studies should provide further quantitative and qualitative data but will not in themselves define the optimum balance between screening sensitivity and specificity.

Cost-Benefit Analysis↗

Molecular characterization of methylmalonate semialdehyde dehydrogenase deficiency.

Three patients have been reported with (putative) methylmalonic semialdehyde dehydrogenase (MMSDH) deficiency. The urine metabolic pattern was strikingly different in all, including beta-alanine, 3-hydroxypropionic acid, both isomers of 3-amino- and 3-hydroxyisobutyric acids in one and 3-hydroxyisobutyric and lactic acids in a second, and mild methylmalonic aciduria in a third patient. In an effort to clarify these disparate metabolite patterns, we completed the cDNA structure, and characterized the genomic structure of human MMSDH gene in order to undertake molecular analysis. Only the first patient had alterations in the MMSDH coding region, revealing homozygosity for a 1336G > A transversion, which leads to substitution of arginine for highly conserved glycine at amino acid 446. No abnormalities of the MMSDH cDNA were detected in the other patients. These data provide the first molecular characterization of an inborn error of metabolism specific to the L-valine catabolic pathway.

Aldehyde Oxidoreductases↗

Population newborn screening for inherited metabolic disease: current UK perspectives.

Some of the generally accepted criteria for screening programmes are inappropriate for newborn metabolic screening as they ignore the family dimension and the importance of timely genetic information. Uncritical application of such criteria creates special difficulties for screening by tandem mass spectrometry, which can detect a range diseases with widely different natural histories and responsiveness to treatment. Further difficulties arise from increasing demands for direct proof of the effects of screening on long-term morbidity and mortality. The randomized controlled trial is held to be the gold standard, but for ethical and practical reasons it will be impossible to achieve for such relatively rare diseases. This approach also oversimplifies the complex matrix of costs and benefits of newborn metabolic screening. A more workable approach could involve Bayesian synthesis, combining quantitative performance data from carefully designed prospective pilot studies of screening with existing experience of the natural history, diagnosis, and management of the individual disorders concerned.

Humans↗

Tandem mass spectrometry screening: proving effectiveness.

Despite the considerable literature now emerging on screening by tandem mass spectrometry there are many points of uncertainty about test performance and much work to do in formalizing and validating follow-up protocols. The relative sensitivities of tandem mass spectrometry and previously-used diagnostic methods may differ for some diseases but not others, with the possibility of some metabolites being over-sensitive and diagnosing mild variants or non-disease. Cut-offs should be set using clinical rather than analytical criteria and at this early stage it is important that presumptive positive cases diagnosed through acylcarnitine profiling are compared as thoroughly as possible with symptomatic cases diagnosed using other techniques. Caution should be used in accepting mutation analysis as the ultimate diagnostic criterion. Consideration of incidence and careful examination of family history will all contribute to evidence of the equivalence or otherwise of screen-detected and symptomatic disease. Finally, there should be registration and long-term surveillance of all cases detected.

Amino Acid Metabolism, Inborn Errors↗

Principles and performance: assessing the evidence.

Despite the apparent rigour of the systematic review process there are a number of reasons why it may not accurately reflect the true state of current knowledge. For inborn errors of intermediary metabolism in general, the formal quality of literature on treatment is poor, partly because the rarity of the conditions makes systematic study difficult, partly because of the self-evident evidence paradox with treatments that are so obviously life-saving, and partly because of the widespread use of biochemical normalisation as a proxy outcome. In the field of newborn screening there is a paucity of formal trials so that assessment must be either by the 'causal pathway' approach or by reference to screening "criteria". The causal pathway approach may be misleading in that there are discontinuities, for example in projecting from known incidence (clinically diagnosed cases) to the incidence expected on screening. The criteria-based approach suffers from qualitative descriptors, such as "important" and "adequate", with no clear end-points, whilst in the context of neonatal screening some of the Wilson and Jungner criteria conflict with current evidence-based views. These problems are illustrated by reference to two reviews recently produced as part of the UK Health Technology Assessment Programme.

Female↗

Molecular analysis and prenatal diagnosis of human fumarase deficiency.

Fumarase deficiency is a rare autosomal recessive disorder of the citric acid cycle causing severe neurological impairment. The cDNA for both the rat and human enzymes has been cloned previously and shown to encode a coding region of 1.46 kb. To scan for mutations in fumarase-deficient patients we amplified the coding region of fumarase from fibroblast/lymphoblast cDNA employing the oligonucleotide primers designed from the published human and rat cDNA sequence. We then directly sequenced the polymerase chain reaction product. In seven unrelated patients, we detected four missense mutations (A265T, D383V, F269C, K187R), a nonsense mutation (W458X), a 3-bp AAA insertion that introduces an additional lysine residue at codon 435, and a spontaneous new mutation resulting in a 74-bp deletion (66del74). Seven at-risk pregnancies were monitored with one prenatal diagnosis of fumarase deficiency by molecular analysis and favorable outcome of the other pregnancies as predicted by enzyme assay of cultured fetal cells or molecular analysis.

Amino Acid Metabolism, Inborn Errors↗

Prospective surveillance study of medium chain acyl-CoA dehydrogenase deficiency in the UK.

BACKGROUND: Medium chain acyl-CoA dehydrogenase (MCAD) deficiency is a common disorder of fatty acid oxidation in north west Europe. It is very variable in its clinical consequences and is believed to be considerably underdiagnosed. OBJECTIVE: To investigate the diagnosis and outcome of MCAD deficiency in the UK. METHOD: A prospective surveillance study through the British Paediatric Surveillance Unit. RESULTS: Of 62 affected individuals identified, 57 were from England, giving an incidence of 4.5 cases/100,000 births. Forty six cases presented with an acute illness (10 of whom died), 13 cases were identified because of family history, and three for other reasons. Six of the survivors were neurologically impaired. CONCLUSIONS: Despite increased clinical awareness, the mortality and morbidity from MCAD deficiency remain high. The frequency and severity of the disease support the case for the introduction of universal neonatal screening in England and Scotland.

Acyl-CoA Dehydrogenase↗