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Biomedical subjects

A G Cardno

Publications and source records attributed to A G Cardno.

At least 19 recordsLinked to original sources

The kings schizotypy questionnaire as a quantitative measure of schizophrenia liability.

We used a new self-report measure, the Kings Schizotypy Questionnaire (KSQ; Williams, M. The psychometric assessment of schizotypal personality. PhD thesis. Institute of Psychiatry, University of London, 1993), to investigate schizotypy as a quantitative measure of familial liability to schizophrenia. The KSQ was administered to 135 DSM-IV schizophrenia probands, 153 of their healthy first-degree relatives, and 267 control subjects. We found that the questionnaire clearly differentiated schizophrenic from non-schizophrenic individuals, but failed to differentiate the relatives from controls. Possible reasons for this include defensive responding among relatives, self-selection bias among relatives, differences in data collection methods, and the possibility that positive aspects of schizotypy may not be closely related to familial liability to schizophrenia.

Adult↗

Psychiatric genetics: back to the future.

For the last decade or more geneticists have been predicting that advances in molecular genetics are going to revolutionize our understanding of psychiatric disorders and human behavior. However, with a few exceptions, these expectations have yet to be fulfilled. As the century draws to a close and we contemplate the prospect of the complete sequence of the human genome it seems timely to consider the state of the field and to consider carefully how it might advance, the problems to be faced and the resources required. Molecular Psychiatry (2000) 5, 22-31.

Animals↗

Comparative sequencing and association studies of aromatic L-amino acid decarboxylase in schizophrenia and bipolar disorder.

Aromatic L-amino acid decarboxylase (AADC) is a relatively non specific enzyme involved in the biosynthesis of several classical neurotransmitters including dopamine and 5-hydroxytryptamine (5HT; serotonin). AADC does not catalyse the rate limiting step in either pathway, but is rate limiting in the synthesis of 2-phenylethylamine (2PE) which is a positive modulator of dopaminergic transmission and a candidate natural psychotogenic compound.1 We and others have proposed that polymorphism in AADC resulting in altered 2PE activity might contribute to the pathogenesis of psychosis. In order to test this hypothesis, we have used denaturing high performance liquid chromatography (DHPLC)3 to screen 3943 bases of the AADC gene and its promoter regions for variants that might affect protein structure or expression in 15 unrelated people with schizophrenia, and 15 unrelated people with bipolar disorder. Three polymorphisms were identified by DHPLC: a insertion/deletion polymorphism in the 5' UTR of the neuronal specific mRNA (g.-33-30delAGAG, bases 586-589 of GenBank M77828), a T>A variant in the non-neuronal exon 1 (g. -67T>A, GenBank M88070), and a G>A polymorphism within intron 8 (g. IVS8 +75G>A, GenBank M84598). Case-control analysis did not suggest that genetic polymorphism in the AADC gene is associated with liability for developing schizophrenia or bipolar disorder.

Aromatic-L-Amino-Acid Decarboxylases↗

The high affinity neurotensin receptor gene (NTSR1): comparative sequencing and association studies in schizophrenia.

Neurotensin and its high affinity receptor (NTSR1) localise within dopaminergic neurones in the mesocortical, mesolimbic and nigrostriatal systems and it is now clear that neurotensin can selectively modulate dopaminergic neurotransmission. This has led to the hypothesis that altered neurotensin function contributes to the pathogenesis of schizophrenia and other psychoses. This hypothesis has been supported circumstantially by a number of lines of evidence. (1) Central administration of neurotensin produces effects similar to those produced by the peripheral administration of atypical antipsychotics. (2) Observations of low levels of neurotensin in the CSF of schizophrenics. (3) Reduced numbers of neurotensin receptors in the brains of schizophrenics. Given the above link between neurotensin and dopamine, and the evidence implicating altered neurotensin function in psychosis, we have postulated that DNA sequence variation in neurotensin or its receptors might be associated with schizophrenia. In keeping with this hypothesis, an association has recently been reported between schizophrenia and the gene encoding the neurotensin high affinity receptor (NTSR1). However, caution is required because the associated marker, a tetranucleotide repeat, is located 3 kb away from the 3' end of the gene and there is no evidence that it is functional. Therefore, as a follow-up to our earlier work on neurotensin, we have now sought to test the hypothesis that DNA sequence variants that alter the structure or expression of the NTSR1 gene (VAPSEs) are associated with schizophrenia. However, while we found 14 novel sequence variants in 28 probands with psychosis, none resulted in an amino acid change, and neither direct nor indirect association studies suggested these are involved in susceptibility to schizophrenia.

Brain Chemistry↗

Repeat sizes at CAG/CTG loci CTG18.1, ERDA1 and TGC13-7a in schizophrenia.

A number of studies using the repeat expansion detection (RED) technique have suggested an association between unknown large CAG/CTG repeats and schizophrenia. The polymorphic CAG/CTG repeat loci CTG18.1 and ERDA1 have been reported to account for a high proportion (approximately 90%) of the large repeats detected by RED and may therefore be responsible for the cited association. The recently described locus TGC13-7a contains a highly polymorphic CTA/TAG and CAG/CTG composite repeat, and is thus another authentic candidate. In the present investigation, each locus was analysed for association with schizophrenia in a sample of 206 patients and 219 group-matched controls. No evidence for association of CTG18.1, ERDA1 and/or TGC13-7a with schizophrenia was found. The combined data accounted for only 54% of the CAG/CTG arrays of > 40 repeats found in our previous RED analysis.

Adult↗

No evidence for association between a non-synonymous polymorphism in the gene encoding human metabotropic glutamate receptor 7 and schizophrenia.

The cDNA sequence of the gene encoding human metabotropic glutamate receptor type 7 (mGluR7) contains the single nucleotide polymorphism 1536A > T [GenBank sequence X94552 (Makoff et al., 1996)]. This sequence variation is predicted to result in an amino acid change (F433Y) in the gene product and thus has the potential to affect receptor function. Since disturbances in glutamate function have been implicated in the pathophysiology of schizophrenia, we have used a novel and robust polymerase chain reaction-restriction fragment length polymorphism (PCR-RFLP) assay to genotype this polymorphism in a case-control sample comprising 181 schizophrenic patients and 182 group-matched unaffected individuals. No evidence was found for association between this polymorphism and schizophrenia. We have also localised mGluR7 to chromosome 3p25-22 using radiation hybrid (RH) mapping.

Alleles↗

Twin studies of schizophrenia: from bow-and-arrow concordances to star wars Mx and functional genomics.

Twin studies have been vital for establishing an important genetic contribution to the etiology of schizophrenia. The five newest studies since 1995 from Europe and Japan have confirmed earlier findings. They yielded probandwise concordance rates of 41-65% in monozygotic (MZ) pairs and 0-28% in dizygotic (DZ) pairs, and heritability estimates of approximately 80-85%. Twin studies are also valuable for investigating the etiological relationships between schizophrenia and other disorders, and the genetic basis of clinical heterogeneity within schizophrenia. Studies of discordant MZ pairs provide further insights into non-inherited factors that contribute to the multifactorial etiology of this disorder. More recently, twin studies have begun to be used to directly investigate molecular genetic and epigenetic processes underlying schizophrenia.

Data Interpretation, Statistical↗

No evidence for allelic association between schizophrenia and a functional variant of the human dopamine beta-hydroxylase gene (DBH).

Dopamine beta-hydroxylase (DBH), the enzyme that converts dopamine to norepinepherine, has been proposed as being involved in the aetiology of schizophrenia. Previous work identified a functional polymorphism at nucleotide 910 of the DBH gene that results in a codon change in the mature protein Ala304Ser, with the mutant allele being associated with a lower enzymatic activity. In this study we performed an RFLP analysis in an association study consisting of 178 unrelated schizophrenic patients and 178 unrelated control subjects, matched for age, sex, and ethnicity. The frequency of the Ser304 DBH allele was 0.10 in the patient group and 0.08 in the control group, with no significant allelic or genotypic association observed. Therefore, we were unable to obtain evidence that this polymorphism contributes directly to susceptibility to schizophrenia.

Adult↗

CAG repeat length in the hKCa3 gene and symptom dimensions in schizophrenia.

BACKGROUND: Long CAG repeats in the hKCa3 potassium channel gene have been associated with schizophrenia. We sought evidence for associations between this polymorphism and aspects of the schizophrenia phenotype. METHODS: Associations were investigated between CAG repeat length and gender, age of illness onset, and psychotic symptom dimensions in 203 unrelated individuals with DSM-IIIR schizophrenia. RESULTS: No association was found between CAG repeat length and gender or age of onset. Long CAG repeats were associated with higher negative symptom dimension scores. CONCLUSIONS: This study provides preliminary evidence that genetic liability to negative symptoms in schizophrenia may be partly mediated through the hKCa3 gene.

Adult↗

Heritability estimates for psychotic disorders: the Maudsley twin psychosis series.

BACKGROUND: Previous twin studies have supported a genetic contribution to the major categories of psychotic disorders, but few of these have employed operational diagnostic criteria, and no such study has been based on a sample that included the full range of functional psychotic disorders. METHODS: A total of 224 twin probands (106 monozygotic, 118 dizygotic) with a same-sex co-twin and a lifetime history of psychosis was ascertained from the service-based Maudsley Twin Register in London, England. Research Diagnostic Criteria psychotic diagnoses were made on a lifetime-ever basis. Main-lifetime diagnoses of DSM-III-R and International Statistical Classification of Diseases, 10th Revision schizophrenia were also made. Probandwise concordance rates and correlations in liability were calculated, and biometrical model fitting applied. RESULTS: A substantial genetic contribution to variance in liability was confirmed for the major diagnostic categories except Research Diagnostic Criteria depressive psychosis and unspecified functional psychosis, where familial transmission was confirmed, but the relative contribution of genetic and common environmental factors was unclear. Heritability estimates for Research Diagnostic Criteria schizophrenia, schizoaffective disorder, mania, DSM-III-R schizophrenia, and International Statistical Classification of Diseases, 10th Revision schizophrenia were all between 82% and 85%. None of the estimates differed significantly from any other. CONCLUSIONS: Heritability estimates for schizophrenia, schizoaffective disorder, and mania were substantial and similar. Population morbid risk estimates were inferred rather than directly measured, but the results were very similar to those from studies where morbid risks were directly estimated.

Adult↗

A two-stage genome scan for schizophrenia susceptibility genes in 196 affected sibling pairs.

We undertook a systematic search for linkage in 196 affected sibling pairs (ASPs) with DSMIV schizophrenia. In stage 1 we typed 97 ASPs with 229 microsatellite markers at an average inter-marker distance of 17.26 cM. Multipoint affected sib pair analysis identified seven regions with a maximum lod score (MLS) at or above the level associated with a nominal pointwise significance of 5%, on chromosomes 2q, 4p, 10q, 15q, 18p, 20q and Xcen. In stage 2 we genotyped a further 54 markers in 196 ASPs together with parents and unaffected siblings. This allowed the regions identified in stage 1 to be typed at an average spacing of 5.15 cM, while the region of interest on chromosome 2 was typed to 9.55 cM. Analysis was performed on the whole data set. Simulation studies suggested that we would expect one multipoint MLS of 1.5 per genome scan in the absence of linkage. An MLS of 3 would be expected only once in every 20 genome scans and thus corresponds to a genome-wide significance of 0.05. We obtained three multipoint MLSs >1.5 and, on this basis, the results on chromosomes 4p, 18q and Xcen can be considered suggestive. However, none approached a genome-wide significance of 0. 05. The power of this study was >0.95 to detect a susceptibility locus of lambda(s)= 3 with a genome-wide significance of 0.05, but only 0.70 to detect a locus of lambda(s)= 2. Our results suggest that common genes of major effect (lambda(s)> 3) are unlikely to exist for schizophrenia.

Chromosome Mapping↗

Dimensions of psychosis in affected sibling pairs.

Factor analytical studies of schizophrenia symptoms have consistently suggested three or more symptom dimensions, but it is not known whether any of these dimensions have a genetic basis. The purpose of this study was to investigate to what extent the dimensions show familial aggregation. Symptom ratings were made using the SAPS and SANS and the OPCRIT checklist on the members of 109 sibling pairs with DSM-IV schizophrenia or schizoaffective disorder. Factor analyses were performed on the ratings of both instruments, and correlations were made of within-pair factor scores. Analyses were also performed on the 89 pairs in which both members had a diagnosis of schizophrenia. Factor analysis of SAPS and SANS ratings resulted in positive, negative, and disorganization factors; analysis of OPCRIT ratings resulted in positive, negative, disorganization, and first-rank delusion factors. Only the disorganization dimension showed significant within-pair correlations, but these were of modest size and not significantly greater than the correlations for the other dimensions. None of the dimensions showed sufficient familial aggregation to suggest that they are close markers of genetic or common environmental factors that contribute liability to schizophrenia. They may be weakly associated with such factors and with factors that do not contribute liability to schizophrenia but do influence the form taken by the illness.

Adult↗

Sibling pairs with schizophrenia or schizoaffective disorder: associations of subtypes, symptoms and demographic variables.

BACKGROUND: Affected sibling pairs provide a valuable means of investigating the familial basis of clinical heterogeneity in schizophrenia. METHODS: Associations of schizophrenia subtypes, psychotic symptoms (defined by SAPS/SANS and OPCRIT), affective episodes and demographic variables were studied in 109 sibling pairs with DSM-IV schizophrenia or schizoaffective disorder. RESULTS: None of the subtypes or affective episodes were significantly associated within pairs. A broad definition of positive formal thought disorder, grandiose delusions and delusions of influence (all from OPCRIT) were modestly associated. There was no excess of same-sex pairs. There were modest associations for age of illness onset, pre-morbid adjustment and illness severity. Caution is required in interpreting the results because many statistical tests were carried out. CONCLUSIONS: None of the variables appears to be closely associated with specific genetic or shared environmental factors that contribute liability to schizophrenia. They are at best only weakly associated with such factors, and/or are associated with factors unrelated to the aetiology of schizophrenia.

Adult↗

Linked polymorphisms upstream of exons 1 and 2 of the human cholecystokinin gene are not associated with schizophrenia or bipolar disorder.

The evidence for a significant genetic contribution to the functional psychoses (schizophrenia and bipolar disorder) is now well established. However, in both cases, the non-mendelian mode of inheritance has made the identification of susceptibility loci particularly challenging. The neuropeptide cholecystokinin (CCK) is present both in the gut and the CNS. Studies of CCK-like immunoreactivity and CCK mRNA levels in human brains have revealed high concentrations in numerous loci and shown colocalisation of CCK with, for example, dopamine and tyrosine hydroxylase. Furthermore, antagonists of CCK-B receptors, which are found most frequently in the brain, inhibit the activity of brain dopamine neurons. Such findings suggest that, with respect to neuropsychiatric disorders, CCK is a suitable candidate for analysis using methods to detect gene variations which have the potential to affect protein structure or expression. In the present study, mutation analyses were carried out on the human CCK gene. Linked polymorphisms were found in the promoter region and in intron 1 close to the 3' mRNA splice acceptor site. However, the allele frequencies of these polymorphisms in samples of individuals affected with either schizophrenia (n=117) or bipolar disorder (n=124) did not differ from those of control subjects (n=234), suggesting that these variations do not confer a predisposition to either of the functional psychoses.

Alleles↗

Further support for an association between a polymorphic CAG repeat in the hKCa3 gene and schizophrenia.

A recent study has suggested that a polymorphism in the hKCa3 potassium channel may be associated with raised susceptibility to schizophrenia. Despite its modest statistical significance, the study is intriguing for two reasons. First, hKCa3 contains a polymorphic CAG repeat in its coding sequence, with large repeats more common in schizophrenics compared with controls. This is interesting in view of several repeat expansion detection (RED) studies that have reported an excess of large CAG repeats in psychotic probands. Second, the hKCa3 gene is a functional candidate gene because studies of antipsychotic and psychotogenic compounds suggest that glutamatergic systems modulated by SKCa channels may be important in schizophrenia pathogenesis. In the light of the above, we have tested the hypothesis of an association between schizophrenia and the hKCa3 CAG repeat polymorphism using a case control study design. Under the same model of analysis as the earlier study, schizophrenic probands had a higher frequency of alleles with greater than 19 repeats than controls (chi 2 = 2.820, P = 0.047, 1-tail). Our data therefore provide modest support for the hypothesis that polymorphism in the hKCa3 gene may contribute to susceptibility to schizophrenia.

Alleles↗

Association between functional psychosis and expanded CAG/CTG repeats is not explained by health stratification.

A number of studies have reported an association between large CAG/CTG repeats and both schizophrenia and bipolar disorder. Recently, we reported an inverse correlation between CAG/CTG repeat size and age in a health-selected population, raising the possibility that selection of control groups for physical health was a confounding factor in our previous association studies. We investigated this by health-selection of patients with schizophrenia and bipolar disorder. The maximum CAG/CTG repeat size remained significantly larger in probands with functional psychosis compared with control individuals, and in probands with a diagnosis of schizophrenia compared with control individuals. The number of probands in the healthy bipolar group was small, and although on average this group also had longer CAG/CTG repeats than control individuals, this failed to reach statistical significance. Our findings do not support the notion that the original results with psychosis as a whole, and schizophrenia specifically, are attributable to a stratification effect consequent on health selection. Nevertheless, we are unable formally to reject the hypothesis that the previously observed difference between bipolar probands and control individuals is the result of this phenomenon.

Bipolar Disorder↗

Polydactyly and psychosis. Five cases of co-occurrence.

BACKGROUND: Abnormalities presumed to occur during foetal life have been associated with schizophrenia. Polydactyly is a developmental abnormality but no previous association has been reported between polydactyly and functional psychotic illness. METHOD: Individuals with both polydactyly and a functional psychosis were ascertained during a study of familial schizophrenia. RESULTS: Five such individuals were ascertained in the course of assessing 234 individuals with familial psychosis, giving a rate of polydactyly in the sample of around 10 times the general population rate. CONCLUSIONS: This study provides preliminary evidence that polydactyly is over-represented in individuals with familial schizophrenia and related psychotic illnesses.

Adult↗