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Biomedical subjects

D Curtis

Publications and source records attributed to D Curtis.

At least 109 records · Page 6Linked to original sources

Phenotypic characterization of individuals with 30-40 CAG repeats in the Huntington disease (HD) gene reveals HD cases with 36 repeats and apparently normal elderly individuals with 36-39 repeats.

Abnormal CAG expansions in the IT-15 gene are associated with Huntington disease (HD). In the diagnostic setting it is necessary to define the limits of the CAG size ranges on normal and HD-associated chromosomes. Most large analyses that defined the limits of the normal and pathological size ranges employed PCR assays, which included the CAG repeats and a CCG repeat tract that was thought to be invariant. Many of these experiments found an overlap between the normal and disease size ranges. Subsequent findings that the CCG repeats vary by 8 trinucleotide lengths suggested that the limits of the normal and disease size ranges should be reevaluated with assays that exclude the CCG polymorphism. Since patients with between 30 and 40 repeats are rare, a consortium was assembled to collect such individuals. All 178 samples were reanalyzed in Cambridge by using assays specific for the CAG repeats. We have optimized methods for reliable sizing of CAG repeats and show cases that demonstrate the dangers of using PCR assays that include both the CAG and CCG polymorphisms. Seven HD patients had 36 repeats, which confirms that this allele is associated with disease. Individuals without apparent symptoms or signs of HD were found at 36 repeats (aged 74, 78, 79, and 87 years), 37 repeats (aged 69 years), 38 repeats (aged 69 and 90 years), and 39 repeats (aged 67, 90, and 95 years). The detailed case histories of an exceptional case from this series will be presented: a 95-year-old man with 39 repeats who did not have classical features of HD. The apparently healthy survival into old age of some individuals with 36-39 repeats suggests that the HD mutation may not always be fully penetrant.

Adult↗

Murine flt3 ligand protects M1 leukemic cells from LIF-induced differentiation and suppression of self-renewal.

Self-renewing cell divisions are an important characteristic exhibited by both normal hematopoietic stem cells and leukemic cell populations. We have examined the action of flt3/flk2 ligand (FL) on physiologic suppression of self-renewal during growth factor-induced differentiation of M1 leukemic cells. Unstimulated M1 cells expressed high levels of flt3 receptor mRNA and protein, with approximately 20,000 molecules present at the cell surface. Consistent with data obtained from normal macrophage populations, expression of both mRNA and protein for flt3 receptor was suppressed as cells were induced to differentiate into mature macrophages in response to leukemia inhibitory factor (LIF). Although FL alone had no detectable action on unstimulated M1 cells, an effect was revealed during LIF-induced differentiation. FL overcame LIF-induced suppression in clonal cultures of M1 cells, prevented morphologic changes associated with macrophage differentiation and interfered with the LIF-induced responsiveness of M1 cells to macrophage colony-stimulating factor (M-CSF). This action of FL was evident on both parental M1 cells and M1 cells whose differentiation program was perturbed by enforced expression of the transcription factor SCL. The action of FL was most striking in clone transfer experiments in which FL rescued M1 cells from LIF-induced suppression of self-renewal. The ability of FL to maintain self-renewal characteristics satisfies one of the criteria predicted for a stem-cell-active molecule and contrasts with the action of FL in stimulating proliferation and differentiation of normal hematopoietic cells.

Animals↗

Linkage of Wolfram syndrome to chromosome 4p16.1 and evidence for heterogeneity.

Wolfram syndrome (DIDMOAD syndrome; MIM 222300) is an autosomal recessive neurodegenerative disorder characterized by juvenile-onset diabetes mellitus and bilateral optic atrophy. Previous linkage analysis of multiply affected families indicated that the gene for Wolfram syndrome is on chromosome 4p, and it produced no evidence for locus heterogeneity. We have investigated 12 U.K. families with Wolfram syndrome, and we report confirmation of linkage to chromosome 4p, with a maximum two-point LOD score of 4.6 with DRD5, assuming homogeneity, and of 5.1, assuming heterogeneity. Overlapping multipoint analysis using six markers at a time produced definite evidence for locus heterogeneity: the maximum multipoint LOD score under homogeneity was <2, whereas when heterogeneity was allowed for an admixture a LOD of 6.2 was obtained in the interval between D4S432 and D4S431, with the peak close to the marker D4S3023. One family with an atypical phenotype was definitely unlinked to the region. Haplotype inspection of the remaining 11 families, which appear linked to chromosome 4p and had typical phenotypes, revealed crossover events during meiosis, which also placed the gene in the interval D4S432 and D4S431. In these families no recombinants were detected with the marker D4S3023, which maps within the same interval.

Adolescent↗

Characterization of a novel androgen-sensitive, prostate-specific antigen-producing prostatic carcinoma xenograft: LuCaP 23.

Prostatic carcinoma has proven extremely difficult to establish as cell lines or xenografts. In this article, we describe a new series of prostate cancer xenografts propagated in athymic mice, designated LuCaP 23, developed from prostate metastases harvested at autopsy shortly after death. Tumor from three separate metastatic deposits was developed into three xenograft sublines: two from lymph node metastases (LuCaP 23.1 and 23.8) and one from a liver metastasis (LuCaP 23.12). Fluorescence in situ hybridization analysis confirms the xenografts are human. Histologically, the xenografts are comprised of columnar epithelial cells arranged in a glandular pattern. Tumor doubling times range from 11 to 21 days for the three sublines. The cells secrete large amounts of prostate-specific antigen (PSA) with PSA indices of 1.27, 1.63, and 5.21 ng/ml/mm3 for the mice bearing the LuCaP 23.1, 23.8, and 23.12 sublines, respectively. Following androgen deprivation a temporary decrease in PSA secretion and a decrease in tumor size are noted in most tumors. Eventually, the tumors become androgen independent and resume growth in castrate hosts. The degree of PSA response to castration and time to PSA nadir correlate with time to progression. Thus, unlike most existing models of prostatic carcinoma, this novel xenograft exhibits many phenotypic characteristics of clinical prostatic carcinoma, including androgen sensitivity. These properties make this xenograft an excellent model for future study.

Acid Phosphatase↗

Association between clozapine response and allelic variation in the 5-HT2C receptor gene.

A cysteine to serine substitution at amino acid 23 in the 5-HT2C receptor gene alters the pharmacological properties of the protein. We investigated this polymorphism in subjects with schizophrenia resistant to conventional neuroleptic drugs, and analysed our data for allelic association between the disease state or clinical response to the atypical antipsychotic drug, clozapine. Ninety percent of subjects who had one or more 5-HT2Cser alleles (19/21) were classified as clozapine responders compared with 59% (84/141) without this allele (chi 2 = 7.7, p = 0.005), suggesting that this mutation is a predictor of good response to clozapine. There was no association between schizophrenia and the 5-HT2Cser allele, but our results indicate that the 5-HT2C receptor may contain the major site of action through which clozapine mediates its antipsychotic effects.

Alleles↗

Linkage analysis of chromosome 22q12-13 in a United Kingdom/Icelandic sample of 23 multiplex schizophrenia families.

A possible linkage to a genetic subtype of schizophrenia and related disorders has been reported on the long arm of chromosome 22 at q12-13. (Pulver et al., 1994: Am J Med Genet 54:36-43; Coon et al., 1994: Am J Med Genet 54:72-79; Pulver et al., 1994: Am J Med Genet 54:44-50). However formal statistical tests in a combined sample could not reject homogeneity and prove that there was a linked subgroup of families. We have studied 23 schizophrenia pedigrees to test whether some multiplex schizophrenia families may be linked to the microsatellite markers D22S274 and D22S283 which span the 22q12-13 region. Two point followed by multipoint lod and non-parametric linkage analyses under the assumption of heterogeneity provided no evidence for linkage over the relevant region.

Chromosomes, Human, Pair 22↗

The genetic susceptibility to Gilles de la Tourette syndrome in a large multiple affected British kindred: linkage analysis excludes a role for the genes coding for dopamine D1, D2, D3, D4, D5 receptors, dopamine beta hydroxylase, tyrosinase, and tyrosine hydroxylase.

Segregation analyses have shown that Gilles de la Tourette Syndrome (GTS) is transmitted as an autosomal dominant gene disorder indicating that classical linkage analysis should be able to identify susceptibility loci. Previous studies of GTS have included investigations of neuroreceptor function, neurotransmitters, and their metabolites as well as neurotransmitter-related enzymes in an attempt to determine the pathophysiology of GTS. The neurotransmitter systems most often thought to be involved in GTS include those involving adrenaline, noradrenaline, and dopamine. We have carried out research to test the hypothesis that genes encoding proteins in the catecholamine pathways may contribute to the genetic etiology of GTS. Polymorphic markers at or near the D1, D2, D3, D4, D5 neuroreceptor gene loci as well as at the genes encoding dopamine beta hydroxylase (DBH), tyrosinase (TY) and tyrosine hydroxylase (TH) were studied in one large multiple affected pedigree. The linkage results of this investigation exclude a major role of these candidate genes in the etiology of GTS in the pedigree.

Chromosome Aberrations↗

Exclusion of linkage of schizophrenia to the gene for the dopamine D2 receptor (DRD2) and chromosome 11q translocation sites.

There have been previous reports of a 1q43;11q21 translocation cosegregating with schizophrenia and a 9p22;11q22.3 translocation cosegregating with manic depression. In addition, the genes for the dopamine D2 receptor and for tyrosinase both map to chromosome 11q. Three 11q DNA markers were used to investigate 23 pedigrees containing multiple cases of schizophrenia. Strongly negative lod scores were obtained, providing evidence against linkage over a 70 cM region which included both translocation sites and both candidate genes.

Chromosome Mapping↗

Euthanasia.

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Attitude to Death↗

Suggestive evidence for linkage of schizophrenia to markers on chromosome 13q14.1-q32.

Family, twin and adoption studies highlight the influence of genes in the aetiology of schizophrenia, though the mode of inheritance is unclear. We have been conducting a systematic search for major genes in schizophrenia using a series of multiply affected families and report preliminary results of linkage under heterogeneity with markers on chromosome 13. A lod2 score of 1.61 for marker D13S144 was obtained at theta = 0 and alpha of 0.5 and nearby markers also produced positive values.

Adoption↗

Chromosome 22 markers demonstrate transmission disequilibrium with schizophrenia.

Previously we reported evidence for genetic linkage between markers on chromosome 22q12 and schizophrenia in 23 multiply affected pedigrees. As part of further investigation of this region, we have applied the transmission disequilibrium test (TDT) to the genotype data. The TDT is a test for both linkage and linkage disequilibrium, and is based on the unequal probability of transmission of two different marker alleles from parents to affected offspring. We obtained significant results for the marker D22S283 (chi 2 = 35.9, 14 df, p = 0.001), D22S278 (chi 2 = 16.5, 6 df, p = 0.01) and F8VWFP (chi 2 = 13.1, 4 df, p = 0.01). Application of the Bonferonni correction for testing multiple markers renders the results for marker D22S278 and F8VWFP non-significant (from p = 0.01 to p = 0.14), while the result for D22S283 remains modestly significant at p < 0.02. Overall, our findings strengthen the suggestion that the region around D22S283 contains a susceptibility gene for schizophrenia.

Chromosome Mapping↗

Genetic association between alleles of pancreatic phospholipase A2 gene and bipolar affective disorder.

Chromosome 12q is a region of interest for the genetics of bipolar affective disorder because of reports of apparent cosegregation between this disorder and Darier's disease in a small number of families. Findings from a recent linkage study suggest that this chromosomal region may contain a susceptibility gene for bipolar affective disorder. We have found evidence of an allelic association between bipolar disorder and a marker at the pancreatic phospholipase A2 gene (PLA2A) in this region (p < or = 0.01). These results are consistent with the linkage study, and warrant additional investigations.

Alleles↗

Fludarabine-related autoimmune haemolytic anaemia in patients with chronic lymphocytic leukaemia.

We have treated 52 patients with chronic lymphocytic leukaemia (CLL) with fludarabine; 12 developed severe autoimmune haemolysis. Only three had a previous history of haemolytic anaemia. Six out of eight patients retreated with fludarabine after control of their haemolysis developed an exacerbation of the haemolytic anaemia. The cause of autoimmune phenomena in CLL is not known, but our findings reinforce the view that they are caused by a disturbance in immunoregulatory T cells. Fludarabine is a known suppressor of T-cell function.

Adult↗

An extended transmission/disequilibrium test (TDT) for multi-allele marker loci.

The transmission/disequilibrium test (TDT) was recently introduced by Spielman et al. (1993) as a test for linkage and linkage disequilibrium. The test is based on the unequal probability of transmission of two different marker alleles from parents to affected offspring, when the marker locus and the hypothetical disease locus are linked and are in linkage disequilibrium. The probabilities of marker allele transmission to affected offspring conditional on parental genotype have been derived by Ott (1989) for a biallelic marker and a recessive disorder with no phenocopies. Here, we derive the transmission probabilities for a multi-allele marker locus and a generalized single locus disease model in a random sample of affected individuals from a randomly mating population. The form of these transmission probabilities suggests an extension of the TDT to multi-allele marker loci, in which the alternative hypothesis is restricted to take account of the likely pattern of unequal transmission when the recombination fraction is near 0. We show how our extended TDT can be implemented by standard software for logistic regression, although we have also written our own program which is available on request. We have evaluated the approximate power of the test under a range of realistic assumptions, and it appears that the test will often have good power when linkage disequilibrium is strong and if the disease is recessive.

Alleles↗