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Biomedical subjects

M Caulfield

Publications and source records attributed to M Caulfield.

At least 19 recordsLinked to original sources

Pseudoexon activation as a novel mechanism for disease resulting in atypical growth-hormone insensitivity.

Inherited growth-hormone insensitivity (GHI) is a heterogeneous disorder that is often caused by mutations in the coding exons or flanking intronic sequences of the growth-hormone receptor gene (GHR). Here we describe a novel point mutation, in four children with GHI, that leads to activation of an intronic pseudoexon resulting in inclusion of an additional 108 nt between exons 6 and 7 in the majority of GHR transcripts. This mutation lies within the pseudoexon (A(-1)-->G(-1) at the 5' pseudoexon splice site) and, under in vitro splicing conditions, results in inclusion of the mutant pseudoexon, whereas the wild-type pseudoexon is skipped. The presence of the pseudoexon results in inclusion of an additional 36-amino acid sequence in a region of the receptor known to be involved in homo-dimerization, which is essential for signal transduction.

Female↗

Possible association but no linkage of the HSD11B2 gene encoding the kidney isozyme of 11beta-hydroxysteroid dehydrogenase to hypertension in Black people.

OBJECTIVE: The HSD11B2 (HSD11K) gene encoding the kidney isozyme of 11beta-hydroxysteroid dehydrogenase is mutated in the syndrome of apparent mineralocorticoid excess, an autosomal recessive form of salt-sensitive hypertension. This gene is thus a logical candidate locus for risk of essential hypertension. DESIGN AND METHODS: Because hypertension in Black people tends to be of the low-renin, salt sensitive type, we genotyped independent sets of hypertensives of Afro-American (59 kindreds) and Afro-Caribbean (66 kindreds) origin using a highly polymorphic (heterozygosity index 0.84) CA repeat polymorphism in the first intron of HSD11B2. Linkage was assessed by the affected pedigree member method. RESULTS: No linkage of hypertension to this locus could be demonstrated, but statistically significant allelic associations were noted. CONCLUSIONS: HSD11B2 does not have a strong influence on the development of essential hypertension in Black people, but weaker effects on blood pressure cannot be ruled out.

11-beta-Hydroxysteroid Dehydrogenase Type 2↗

Rationale, design, methods and baseline demography of participants of the Anglo-Scandinavian Cardiac Outcomes Trial. ASCOT investigators.

OBJECTIVE: To test the primary hypothesis that a newer antihypertensive treatment regimen (calcium channel blocker +/- an angiotensin converting enzyme inhibitor) is more effective than an older regimen (beta-blocker +/- a diuretic) in the primary prevention of coronary heart disease (CHD). To test a second primary hypothesis that a statin compared with placebo will further protect against CHD endpoints in hypertensive subjects with a total cholesterol < or = 6.5 mmol/l. DESIGN: Prospective, randomized, open, blinded endpoint trial with a double-blinded 2 x 2 factorial component. SETTING: Patients were recruited mainly from general practices. PATIENTS: Men and women aged 40-79 were eligible if their blood pressure was > or = 160 mmHg systolic or > or = 100 mmHg diastolic (untreated) or > or = 140 mmHg systolic or > or = 90 mmHg diastolic (treated) at randomization. INTERVENTIONS: Patients received either amlodipine (5/ 10 mg) +/- perindopril (4/8 mg) or atenolol (50/ 100 mg) +/- bendroflumethiazide (1.25/2.5 mg) +K+ with further therapy as required to reach a blood pressure of < or = 140 mmHg systolic and 90 mmHg diastolic. Patients with a total cholesterol of < or = 6.5 mmol/l were further randomized to receive either atorvastatin 10 mg or placebo daily. MAIN OUTCOME MEASURE: Non-fatal myocardial infarction (MI) and fatal coronary heart disease (CHD). RESULTS: 19 342 men and women were initially randomized, of these 10297 were also randomized into the lipid-lowering limb. All patients had three or more additional cardiovascular risk factors. CONCLUSIONS: The study has 80% power (at the 5% level) to detect a relative difference of 20% in CHD endpoints between the calcium channel blocker-based regimen and the beta-blocker-based regimen. The lipid-lowering limb of the study has 90% power at the 1% level to detect a relative difference of 30% in CHD endpoints between groups.

Adrenergic beta-Antagonists↗

Colony sound facilitates sexual and agonistic activities in royal penguins.

A unique playback system was used to exaggerate continuously the number of calls heard in royal penguin, Eudyptes schlegeli, colonies to determine whether social facilitation increases a female's exposure to both sexual and agonistic activities, a process that could influence the timing of reproduction in colonies. We also determined whether the source of colony sound or the phase of the breeding cycle influenced the facilitation of sexual or agonistic activities. The system recorded and then played a new 12-min colony sound sample every 24 min throughout the first four phases of the breeding cycle. Because each broadcast was unique, this playback system avoids the possibility of habituation and can modify the acoustic environment in social groups for extended periods of time. The activities of penguins in control colonies (with no playback) were compared with those in colonies that heard samples derived from either their own or a different colony. Colony sound facilitated both sexual and agonistic activities from male and female royal penguins during all four phases of the cycle that we examined. Playbacks from the perceiver's own colony facilitated a greater response than sound originating from a different colony. Studies comparing egg-laying dates in colonies exposed continuously to the sounds of agonistic activities with those in control colonies, or colonies exposed continuously to the sounds of sexual activities are now needed to determine whether the facilitation of agonistic activities opposes the effects of social stimulation on the hormonal changes leading to ovulation in colony-dwelling birds. Copyright 2000 The Association for the Study of Animal Behaviour.

Journal Article↗

Absence of linkage of the epithelial sodium channel to hypertension in black Caribbeans.

Hypertensives of African origin have low-renin, sodium-sensitive blood pressure and respond poorly to treatment with angiotensin converting enzyme inhibitors. The epithelial sodium channel may be important in the pathogenesis of essential hypertension in this population. This is supported by the identification of mutations within this channel, which lead to excess sodium reabsorption and hypertension in Liddle's syndrome. In this study we tested whether there was linkage of the genes encoding the three subunits of the epithelial sodium channel to essential hypertension in 63 affected sibling pairs of West African origin from St. Vincent and the Grenadines. We found no support for linkage of the epithelial sodium channel to essential hypertension in this population. However, further studies will be needed in larger populations of African ancestry to exclude a contribution of the genes encoding the epithelial sodium channel to hypertension.

Aged↗

Evaluation of the angiotensinogen locus in human essential hypertension: a European study.

Different family and case-control studies support genetic linkage and association at the human angiotensinogen (AGT) locus with essential hypertension. To extend these previous observations, a European collaborative study of nine centers was set up to create a large resource of affected sibling pairs. The AGT locus was studied using a highly polymorphic dinucleotide repeat in the 3'-flanking region of the gene in 350 European families, comprising 630 affected sibling pairs. Statistical analyses using two different methods did not show any evidence for linkage either in the whole panel or in family subsets selected for severity or early onset of disease. Although several arguments from association studies suggest a role of the AGT gene in essential hypertension, this large family study did not replicate the initial linkage reported in smaller studies. Our results highlight the difficulty of identifying susceptibility genes by linkage analysis in complex diseases.

Adult↗

Genetics of hypertension. Therapeutic implications.

Essential hypertension affects approximately 20% of the adult population, and has a multifactorial origin arising from an interaction between susceptibility genes and environmental factors. The understanding of the molecular basis of essential hypertension may provide us with new and more specific pharmacological agents, and perhaps the ability to individualise treatment and maximise the reduction in risk of morbidity and mortality from cardiovascular disease. Hypertension due to single gene abnormalities is very rare; however, it follows a Mendelian model of inheritance and therefore can be identified successfully using family linkage studies. Since clear Mendelian models of inheritance cannot readily be assigned in essential hypertension as there may be variable penetrance of susceptibility genes, other studies with designs based on affected sibling pairs, family-based association studies and case-control studies have been performed. The renin-angiotensin system (RAS) plays an integral part in the control of blood pressure, and genetic polymorphisms within this system and their effect on the response to antihypertensive therapy are now being studied. Polymorphisms of the angiotensin converting enzyme (ACE) gene, although associated with left ventricular hypertrophy, do not appear to have a clear association with hypertension. Studies on the association of genotype with response to antihypertensive therapy are less consistent for genetic polymorphisms of the RAS. Although some of the results are positive, patient numbers have been small in the studies completed to date. Genetic polymorphisms of the adrenergic receptors have been associated with blood pressure variation in African-Americans, White Americans and African-Caribbeans. A beta 2-adrenoceptor polymorphisms exhibits agonist-mediated receptor downregulation which may lead to enhanced peripheral vasoconstriction. Therapeutic studies have not yet been completed on patients with this genotype. A further polymorphism of the alpha-adducin gene has been associated with essential hypertension. This may influence blood pressure response to sodium loading/depletion and response to long term treatment with a thiazide diuretic, but further studies are needed to clarify this. Antisense oligonucleotides targeted against genes of the RAS, e.g. angiotensinogen and the angiotensin type 1 receptor, are being modified to improve targeting and thereby reduce toxicity. However, gene therapy is unlikely to replace pharmacological therapy in the foreseeable future. The immediate goal should be to enhance our understanding of the genetic nature of essential hypertension based on the interaction of genetic makeup with the environment, with a view to individualising antihypertensive therapy.

Antihypertensive Agents↗

The genetic basis of hypertension: progress and opportunities.

Essential hypertension results from the interaction of genetic and environmental factors. To date progress has mainly concerned rare genetic forms of hypertension, but molecular advances and current large collaborative studies make it likely that common genetic factors in hypertension will soon be determined.

Angiotensinogen↗

Progress in determining the genes for hypertension, insulin resistance, and dyslipidemia.

For the first time, we have techniques available that may enable us to determine cause and effect in common cardiovascular diseases. The observations presented herein require cautious interpretation until replicated. There are currently several large programs under way that seek to establish substantial family resources for investigation of the genetic basis of hypertension. When interpreting the results of genome screens, it will be necessary to consider that we may link genetic loci for coexistent features such as dyslipidemia and insulin resistance to hypertension. Therefore, careful phenotypic data will be necessary to dissect out the causes of hypertension.

Animals↗

Essential hypertension in African Caribbeans associates with a variant of the beta2-adrenoceptor.

Populations of West African ancestry dwelling in Western communities exhibit greater prevalence of human essential hypertension and higher rates of end-organ damage. The sympathetic nervous system influences cardiac output, vascular tone, renal sodium reabsorption, and renin release and could be implicated in enhanced vascular responsiveness observed in African hypertensives. Such an effect could arise from genetic variants that alter agonist response of alpha-adrenoceptors, leading to enhanced vasoconstriction, or attenuate beta2-adrenoceptor-mediated vasodilatation. Indeed, there is evidence of a blunted vasodilator response to the beta-agonist isoprenaline in African Americans. A variant of the beta2-adrenoceptor gene that encodes glycine rather than arginine at position 16 (Arg16-->Gly) has been shown to confer exaggerated agonist-mediated receptor downregulation, which might attenuate vasodilator response. One hundred thirty-six unrelated hypertensives and 81 unrelated normotensives of African Caribbean origin were identified from primary care on the island of St Vincent. Genomic DNA from these subjects was analyzed for the presence of the Gly16 and Arg16 alleles by using an allele-specific polymerase chain reaction method. We report strong support for association of the prodownregulatory glycine 16 variant of the beta2-adrenoceptor gene with hypertension in African Caribbeans from St Vincent and the Grenadines (chi2=18.9, P=.000014, 1 df). This observation, coupled with reports of attenuated vasodilator responses to beta-agonists among people of West African ancestry, may provide a mechanism for enhanced vascular reactivity and identify a candidate gene for hypertension in this ethnic group.

Adult↗

Angiotensinogen in human essential hypertension.

The candidacy of angiotensinogen for a role in the genetic basis of hypertension is supported by the observation that plasma angiotensinogen levels track with raised blood pressure through families. In addition, transgenic mice with overexpression of a rat angiotensinogen gene develop hypertension, and knockout mice with a disrupted gene and absent angiotensinogen production develop low blood pressure. There are now two studies in populations of white European origin and one in African Caribbeans providing support for a role of the angiotensinogen gene locus in human essential hypertension.

Angiotensinogen↗

A DNA variant at the angiotensin-converting enzyme gene locus associates with coronary artery disease in the Caerphilly Heart Study.

BACKGROUND: We analyzed an insertion/deletion (I/D) polymorphism of the angiotensin I-converting enzyme (ACE) gene in 1226 subjects from the Caerphilly Prospective Heart Disease Study. Amplification of genomic DNA using the polymerase chain reaction yielded the genotypes II, ID, and DD. Distribution of the polymorphism was analyzed among the whole group and within subgroups (specified following multiple risk factor analysis) for coronary artery disease (CAD) and against multiple risk factors. METHODS AND RESULTS: Allele frequencies were I = 0.413 and D = 0.587. No association was observed between the polymorphism and CAD in the whole group. Among subjects defined at lower risk of CAD by total cholesterol/HDL cholesterol (TC/HDL) ratios, we found significant associations of the DD genotype with CAD (P < .0053, n = 586 for TC/HDL < 5.654 [median] and P < .009, n = 385 for TC/HDL < 5.0 [clinical threshold]). On further exclusion of subjects with blood pressures > or = 140/90 or on hypotensive medications, the DD genotype still associated with CAD (P < .07, n = 210, TC/HDL < 5.654 and P < .016, n = 135, TC/HDL < 5.0). Further stratification of risk incorporating other risk factors, except body mass index, did not alter or enhance this association. Although similar association was observed when risk was specified by using HDL and apo B levels instead of TC/HDL, this association was lost when body mass index was included in the low-risk stratification. CONCLUSIONS: The DD genotype is a linkage marker for an etiologic mutation at or near the ACE gene that may confer risk of CAD detectable in subjects previously unidentifiable with "classic" risk factors. However, this risk may be quantitatively small among the general male population.

Alleles↗