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D Goldman

Publications and source records attributed to D Goldman.

At least 19 recordsLinked to original sources

HTR2C Cys23Ser polymorphism in relation to CSF monoamine metabolite concentrations and DSM-III-R psychiatric diagnoses.

BACKGROUND: Heritable variation in brain monoaminergic activity has been suggested to lead to interindividual differences in vulnerability to alcoholism, and many other behavioral disorders. We evaluated if a functional Cys23Ser polymorphism in the 5-HT2C receptor gene, the principal serotonin receptor in the brain, contributes to variation in serotonin, norepinephrine and dopamine activity, as indexed by their major metabolite concentrations in cerebrospinal fluid (CSF). Genotype-monoamine metabolite concentration associations were subsequently correlated to risk for alcoholism. METHODS: The study sample consisted of unrelated Finnish males, including 214 alcoholic, violent offenders and 222 population controls who were interviewed using the Structured Clinical Interview for DSM-III-R, blind rated for psychiatric diagnoses and typed for the HTR2C Cys23Ser polymorphism. CSF concentrations of 5-hydroxyindoleacetic acid (5-HIAA), the major metabolite of serotonin, 3-methoxy-4-hydroxyphenylethyleneglycol (MHPG), the major metabolite of norepinephrine, and homovanillic acid (HVA), the major metabolite of dopamine were available from 195 individuals. RESULTS: The major finding in this study was that HTR2C CysSer23 significantly contributed to CSF MHPG concentrations (p = .012). Higher concentrations of CSF MHPG were observed both in alcoholic violent offenders and population controls with HTR2C Ser23 genotype. Despite the association of Cys23Ser to CSF MHPG, HTR2C genotype was not associated with alcoholism, nor with other psychiatric disorders present in this sample. CONCLUSIONS: We conclude that a functional HTR2C Cys23Ser polymorphism contributes to the interindividual genetic variation of CSF MHPG explaining 3% of the total variance. This finding suggests that 5-HT2C receptors are involved in the regulation of norepinephrine turnover in humans; however, HTR2C Cys23Ser does not appear to contribute to the risk of alcoholism, or its contribution to this complex and heterogenous disorder is too small to be detected by a sample of this size and structure.

Alcoholism

Cladistic association analysis of Y chromosome effects on alcohol dependence and related personality traits.

Association between Y chromosome haplotype variation and alcohol dependence and related personality traits was investigated in a large sample of psychiatrically diagnosed Finnish males. Haplotypes were constructed for 359 individuals using alleles at eight loci (seven microsatellite loci and a nucleotide substitution in the DYZ3 alphoid satellite locus). A cladogram linking the 102 observed haplotype configurations was constructed by using parsimony with a single-step mutation model. Then, a series of contingency tables nested according to the cladogram hierarchy were used to test for association between Y haplotype and alcohol dependence. Finally, using only alcohol-dependent subjects, we tested for association between Y haplotype and personality variables postulated to define subtypes of alcoholism-antisocial personality disorder, novelty seeking, harm avoidance, and reward dependence. Significant association with alcohol dependence was observed at three Y haplotype clades, with significance levels of P = 0.002, P = 0.020, and P = 0.010. Within alcohol-dependent subjects, no relationship was revealed between Y haplotype and antisocial personality disorder, novelty seeking, harm avoidance, or reward dependence. These results demonstrate, by using a fully objective association design, that differences among Y chromosomes contribute to variation in vulnerability to alcohol dependence. However, they do not demonstrate an association between Y haplotype and the personality variables thought to underlie the subtypes of alcoholism.

Alcoholism

No coding variant of the tryptophan hydroxylase gene detected in seasonal affective disorder, obsessive-compulsive disorder, anorexia nervosa, and alcoholism.

BACKGROUND: The goal of this study was to evaluate the role of genetic variation in the coding sequence of tryptophan hydroxylase (TPH) in the pathogenesis of several psychiatric diseases in which altered serotonin function has been implicated: bipolar affective disorder (BP), obsessive-compulsive disorder (OCD), anorexia nervosa (AN), seasonal affective disorder (SAD), panic disorder (PD), and alcoholism (Alc). METHODS: Ninety-three percent of the TPH coding sequence was screened by polymerase chain reaction single-strand conformation polymorphism (SSCP) for DNA sequence variations in 128 AN, 88 OCD, 72 SAD, 45 PD, and 36 BP patients and 142 normal volunteers. Also included in the screening were 61 Alc randomly selected from a Finnish alcoholic population in which an association of a TPH intron 7 polymorphism with suicidality was previously observed. Polymorphisms detected by SSCP were characterized by DNA sequencing and by allele-specific restriction enzyme digestion. Genotyping was then performed in 34 Finnish alcoholic suicide attempters. RESULTS: A rare silent mutation was identified in exon 10 and is designated T1095C. The C1095 allele was found in 1 OCD and in 2 AN subjects; all 3 individuals were heterozygous (C1095/T1095) for the variant allele. No association was observed between this TPH T1095C variant with either OCD, AN, Alc, or suicidality. CONCLUSION: These results suggest that the coding sequence of the TPH gene does not contain abundant variants, and may not play a major role in vulnerability to several psychopathologies in which reduced serotonin turnover has been implicated.

Alcoholism

Selective genotyping for the role of 5-HT2A, 5-HT2C, and GABA alpha 6 receptors and the serotonin transporter in the level of response to alcohol: a pilot study.

BACKGROUND: The vulnerability to alcohol dependence appears to be genetically influenced through a variety of mechanisms. One potentially genetically mediated channel may be a low level of response (LR) to alcohol, which has been seen in children of alcoholics and noted to predict future alcohol abuse and dependence. This pilot study uses a case and control genetic association approach to evaluate the possible role of five genotypes in both LR and alcoholism in informative subgroups of men with high and low LR scores documented 15 years earlier. METHODS: As part of a larger study, 41 men, about 39 years old, were selected from among the first 113, completed 15-year follow-ups in a prospective study. The 17 subjects whose LRs at age 20 were in the lower third were compared on five polymorphisms of four genes with 24 men whose reactions to alcohol had been above the median. RESULTS: The 14 men with the LL genotype of the serotonin transporter (5-HTT) polymorphism and the seven with the Pro/Ser genotype of the GABAA alpha 6 polymorphism had demonstrated lower LR scores at about age 20, and had significantly higher proportions of alcoholics than the other genotypes for those loci. All four subjects with combined LL and Pro/Ser genotypes had developed alcoholism and demonstrated the lowest LR scores overall. There was no evidence that two polymorphisms of the 5-HT2A receptor gene and one of the 5-HT2C receptor gene were related to LR or alcoholism in this sample. CONCLUSIONS: These results are consistent with animal and human studies suggesting a possible role for genetic variation in the GABAA alpha 6 and the serotonin transporter in the reaction to alcohol and the alcoholism risk.

Adult

Benefits and pitfalls encountered in psychiatric genetic association studies.

The genetic association strategy is currently being applied to a number of psychiatric phenotypes including disease vulnerability, personality variation and clinical response to psychotropic drugs. Association studies offer the prospect of identification of the specific alleles that confer significant effects on clinical phenotype. However, it should be noted that this strategy has additional advantages as well as unique drawbacks. In this paper, we review the basic methodology utilized in each step of a typical psychiatric genetic association study and discuss their potential benefits and pitfalls with particular emphasis on the selection of clinical phenotype, the identification of a candidate gene, the selection of a candidate variant, clinical data set design, and the statistical analysis of association data. With appropriate design and execution, it is hoped that the association strategy will prove to be as successful in psychiatry as it has proven to be in other branches of medicine.

Alleles

Big mountain.

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Biological Psychiatry

Autosomal, mitochondrial, and Y chromosome DNA variation in Finland: evidence for a male-specific bottleneck.

The high prevalence of rare genetic diseases in Finland has been attributed to a founder effect some 2,000 years ago. However, this hypothesis has not been supported from mtDNA sequence and autosomal microsatellite data which indicate high levels of gene diversity. Here we have identified genetic evidence for a population bottleneck by examining variable microsatellite loci on the nonrecombining portion of Y chromosomes from Finland and four populations from Europe and the Americas. Sequence data from segment I of the control region (HVS-1) of mtDNA (360 bases) and 20 autosomal dinucleotide repeat markers were also analyzed. Partitions of genetic variance within and between populations revealed significant levels of Y-chromosome differentiation between populations. Phylogenetic and diversity analyses revealed divergent Finnish Y-haplotype clades and significantly lower Y-haplotype diversity among Finns as compared to other populations. Surprisingly, Finnish Y-haplotype diversity was even lower than the Native American populations. These results provide support for the Finnish bottleneck hypothesis. Evidence for two separate founding Finnish Y-chromosome lineages was also observed from the Y-chromosome phylogeny. A limited number of closely related founding males may have contributed to the low number of paternal lineages in the Finnish population. In contrast, high levels of genetic diversity for mtDNA and autosomal STRs may be the result of sex-biased gene flow and recent immigration to urban areas from established internal isolates within Finland.

Base Sequence

Nucleotide sequence diversity in non-coding regions of ALDH2 as revealed by restriction enzyme and SSCP analysis.

The simultaneous analysis of closely linked nucleotide substitutions has recently become possible. However, it is not known whether the construction of molecular haplotypes will be a generally useful strategy for nuclear genes. Furthermore, whereas mobility-shift methods are widely used for the discovery of nucleotide substitutions, the yield of these methods has rarely been evaluated. This paper investigates these issues in non-coding regions of ALDH2, the gene that encodes aldehyde dehydrogenase 2 (ALDH2). Screening 20 Europeans, 20 native Americans, and 20 Asians by using restriction enzyme and single-strand conformation polymorphism (SSCP) analysis has revealed 16 variable sites. SSCP yields slightly fewer than the number of nucleotide substitutions predicted by the restriction enzyme digests. Estimates of nucleotide diversity are similar to those of other genes, suggesting that the pattern of polymorphism in ALDH2 offers a preview of what can be expected in many human nuclear genes. Eight of the variable sites discovered here and four sites discovered by others have been genotyped in 756 people from 17 populations across five continents. An expectation-maximization method has used to estimate haplotype states and frequencies. Only three haplotypes are common worldwide, and a fourth haplotype is common in, but private to, Asia. Although allele frequencies differ among sites, linkage disequilibrium is almost maximal across ALDH2. This suggests that haplotype construction at ALDH2 is particularly successful. The ALDH2 result, in conjunction with linkage disequilibrium results from other genes, indicates that haplotype construction will be a generally useful genomic strategy.

Aldehyde Dehydrogenase

The role of genetic factors in the etiology of seasonal affective disorder and seasonality.

The study of the genetic basis of seasonal affective disorder (SAD), a condition where depressions in fall and winter alternate with nondepressed periods in the spring and summer, has recently received attention. The data on the genetics of seasonal affective disorders are of three types: 1. Familiality: Studies on the prevalence of psychiatric disorders among relatives of patients with SAD suggested a familial contribution to the development of SAD; 2. Heritability: A survey of a cohort of twins showed that genetic effects exert a global influence across a variety of behavioral traits and accounted for at least 29% of the variance in seasonality in men and women; 3. Molecular genetic research: two genetic variants related to serotonergic transmission, the 5-HTTLPR and the 5-HT2A-1438G/A gene promoter polymorphisms, are associated with SAD; the former but not the latter polymorphism is related to seasonality. Future research may clarify the role of different genes in the development of SAD.

Adult

Genetics of alcoholism and substance abuse.

Twin studies have demonstrated that addictive disorders are genetically and environmentally influenced. Our knowledge of behavioral differences predisposing to addiction is advancing rapidly, particularly in alcoholism but also in the other addictions, through studies on animals and humans. Recently, linkage analyses in humans and rodents have pointed to genomic regions harboring genes which influence addiction or drug-associated behaviors. There is increasing evidence that the addictions have common as well as distinct neurobiological pathways. These advances in the understanding of the genetics of addictive disorders should facilitate the development of specific pharmacotherapies and the more accurate targeting of therapies using molecular diagnostic approaches.

Adolescent

In vitro-in vivo evaluation of a controlled release buccal bioadhesive device for oral drug delivery.

PURPOSE: To investigate the use of buccal bioadhesive device in targeting controlled drug delivery to the gastrointestinal tract. METHODS: A three-leg crossover study was designed to evaluate the application of buccal bioadhesive device for providing controlled drug delivery to the gastrointestinal tract of a model drug cyanocobalamin in four healthy adult male beagle dogs. RESULTS: In vitro dissolution studies using deionized water as the medium indicated that 100% of the drug was released within 15 min from a immediate release oral capsule formulation, whereas 90% of the drug was released within a period of 18 hrs from a buccal bioadhesive device formulation. Drug release from the buccal bioadhesive devices appeared to follow Higuchi's square root of time dependent model. The terminal half-life of the drug following I.V. administration in four dogs was found to be 16.4+/-2.4 hrs. Following immediate release oral capsule administration of the drug Cmax, tmax and bioavailability were 2333+/-1469 ng/L, 2.5+/-1.0 hrs and 14.1+/-7.9%, respectively. Following buccal bioadhesive device administration of the drug Cmax, t(max) and bioavailability were 4154+/-1096 ng/L, 11+/-1.2 hrs and 35.8+/-4.1%, respectively. Significantly higher bioavailability of the drug was observed with the buccal bioadhesive device administration when compared to the immediate release oral capsule. CONCLUSIONS: The buccal bioadhesive device appears to improve the oral bioavailability of cyanocobalamin by providing controlled delivery of the drug to the gastrointestinal tract.

Adhesives

Association between seasonal affective disorder and the 5-HT2A promoter polymorphism, -1438G/A.

Genes involved in serotonin metabolism are good candidates for the pathogenesis of seasonal affective disorder (SAD). A functional variant in the serotonin transporter promoter, 5-HTTLPR, has recently been shown to be associated with SAD and seasonality. The purpose of this study was to determine whether -1438G/A, a polymorphism in the 5-HT2A promoter, is associated with SAD and seasonality, and whether it has additive effects with 5-HTTLPR on seasonality. Sixty-seven individuals with SAD and 69 normal volunteers, all screened with the SCID and diagnosed according to DSM-III-R criteria, were genotyped for the -1 438G/A 5-HT2A promoter polymorphism. All had been previously genotyped for 5-HTTLPR and had been assessed for seasonality by the Global Seasonality Scale. There was a significant increase in the frequency of the -1438A variant allele of the 5-HT2A promoter polymorphism in SAD patients (0.47) compared to matched controls (0.36) (P < 0.01). The difference in genotype distribution was also significant (P < 0.05). We found no association between the -1438G/A polymorphism and seasonality scores, and there was no additive effect with 5-HTTLPR on seasonality. In conclusion, we have shown that the -1438G/A 5-HT2A promoter variant is associated with SAD but not with seasonality. We suggest that the association may instead be with the depressive symptoms of SAD. However, these results should be treated with caution until replicated because of the possibility of false-positive findings in case-control association studies.

Adenine

Identification of four variants in the tryptophan hydroxylase promoter and association to behavior.

One of the most replicated findings in biological psychiatry is the observation of lower 5-hydroxyindoleacetic acid concentrations, the major metabolite of serotonin, in the brain and cerebrospinal fluid of subjects with impulsive aggression. Tryptophan hydroxylase (TPH) is the rate-limiting enzyme in the synthesis of serotonin, however functional variants have not been reported from the coding sequence of this gene. Therefore, we screened the human TPH promoter (TPH-P) for genetic variants which could modulate TPH gene transcription. The TPH-P (2093 nucleotides) was screened for sequence variation by SSCP analysis of 260 individuals from Finnish, Italian, American Caucasian, and American Indian populations. Four common polymorphisms were identified: -7180T>G, -7065C>T, -6526A>G, and -5806G>T (designated as nucleotides upstream of the translation start site). In the Finns, the four polymorphisms had a minor allele frequency of 0.40 and in this population linkage disequilibrium between the four loci was complete. In the other populations the minor allele frequencies ranged from 0.40 to 0.45. TPH -6526A>G genotype was determined in 167 unrelated Finnish offenders and 153 controls previously studied for the TPH IVS7+779C>A polymorphism. A significant association was observed between -6526A>G and suicidality in the offenders. TPH -6526A>G and the previously reported intron seven polymorphism, TPH IVS7+779C>A, exhibited a normalised linkage disequilibrium of 0.89 in Finns. Normalized linkage disequilibrium was reduced in other populations, being 0.49 and 0.21 in Italians and American Indians, respectively. In conclusion, four TPH-P variants were identified which can be used for haplotype-based analysis to localize functional TPH alleles influencing behavior.

Adult

Ancestral Asian source(s) of new world Y-chromosome founder haplotypes.

Haplotypes constructed from Y-chromosome markers were used to trace the origins of Native Americans. Our sample consisted of 2,198 males from 60 global populations, including 19 Native American and 15 indigenous North Asian groups. A set of 12 biallelic polymorphisms gave rise to 14 unique Y-chromosome haplotypes that were unevenly distributed among the populations. Combining multiallelic variation at two Y-linked microsatellites (DYS19 and DXYS156Y) with the unique haplotypes results in a total of 95 combination haplotypes. Contra previous findings based on Y- chromosome data, our new results suggest the possibility of more than one Native American paternal founder haplotype. We postulate that, of the nine unique haplotypes found in Native Americans, haplotypes 1C and 1F are the best candidates for major New World founder haplotypes, whereas haplotypes 1B, 1I, and 1U may either be founder haplotypes and/or have arrived in the New World via recent admixture. Two of the other four haplotypes (YAP+ haplotypes 4 and 5) are probably present because of post-Columbian admixture, whereas haplotype 1G may have originated in the New World, and the Old World source of the final New World haplotype (1D) remains unresolved. The contrasting distribution patterns of the two major candidate founder haplotypes in Asia and the New World, as well as the results of a nested cladistic analysis, suggest the possibility of more than one paternal migration from the general region of Lake Baikal to the Americas.

Asia

Effects of worldwide population subdivision on ALDH2 linkage disequilibrium.

The effect of human population subdivision on linkage disequilibrium has previously been studied for unlinked genes. However, no study has focused on closely linked polymorphisms or formally partitioned linkage disequilibrium within and among worldwide populations. With an emphasis on population subdivision, the goal of this paper is to investigate the causes of linkage disequilibrium in ALDH2, the gene that encodes aldehyde dehydrogenase 2. Haplotypes for 756 people from 17 populations across five continents were estimated by maximum-likelihood from genotypes at six closely linked ALDH2 nucleotide substitutions. Linkage disequilibrium was partitioned into three components: within populations, among populations within continents, and among continents. It was found that population subdivision among continents had a larger and more disparate effect on linkage disequilibrium than subdivision among local populations. Further, linkage disequilibrium did not increase with population divergence as predicted by a simple model. Rather, the patterns of linkage disequilibrium were complicated because of the interplay of a near absence of recombination, the linkage disequilibrium that existed prior to the divergence of modern humans, subsequent mutation, population subdivision, random genetic drift, and perhaps natural selection. These results suggest that simple models may not well predict patterns of linkage disequilibrium in human populations.

Aldehyde Dehydrogenase

Relationship between a GABAA alpha 6 Pro385Ser substitution and benzodiazepine sensitivity.

OBJECTIVE: In humans, interindividual variation in sensitivity to benzodiazepine drugs may correlate with behavioral variation, including vulnerability to disease states such as alcoholism. In the rat, variation in alcohol and benzodiazepine sensitivity has been correlated with an inherited variant of the GABAA alpha 6 receptor. The authors detected a Pro385Ser [1236C > T] amino acid substitution in the human GABAA alpha 6 that may influence alcohol sensitivity. In this pilot study, they evaluated the contribution of this polymorphism to benzodiazepine sensitivity. METHOD: Sensitivity to diazepam was assessed in 51 children of alcoholics by using two eye movement measures: peak saccadic velocity and average smooth pursuit gain. Association analysis was performed with saccadic velocity and smooth pursuit gain as dependent variables and comparing Pro385/Ser385 heterozygotes and Pro385/Pro385 homozygotes. RESULTS: The Pro385Ser genotype was associated with less diazepam-induced impairment of saccadic velocity but not with smooth pursuit gain. CONCLUSIONS: The Pro385Ser genotype may play a role in benzodiazepine sensitivity and conditions, such as alcoholism, that may be correlated with this trait.

Adolescent