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Biomedical subjects

B L Maidak

Publications and source records attributed to B L Maidak.

4 recordsLinked to original sources

The Ribosomal Database Project.

The Ribosomal Database Project (RDP) is a curated database that offers ribosome-related data, analysis services, and associated computer programs. The offerings include phylogenetically ordered alignments of ribosomal RNA (rRNA) sequences, derived phylogenetic trees, rRNA secondary structure diagrams, and various software for handling, analyzing and displaying alignments and trees. The data are available via anonymous ftp (rdp.life.uiuc.edu), electronic mail (server/rdp.life.uiuc.edu) and gopher (rdpgopher.life.uiuc.edu). The electronic mail server also provides ribosomal probe checking, approximate phylogenetic placement of user-submitted sequences, screening for chimeric nature of newly sequenced rRNAs, and automated alignment.

Animals

The ribosomal database project.

The Ribosomal Database Project (RDP) is a curated database that offers ribosome data along with related programs and services. The offerings include phylogenetically ordered alignments of ribosomal RNA (rRNA) sequences, derived phylogenetic trees, rRNA secondary structure diagrams and various software packages for handling, analyzing and displaying alignments and trees. The data are available via ftp and electronic mail. Certain analytic services are also provided by the electronic mail server.

Databases, Factual

Genetic polymorphism for human platelet thermostable phenol sulfotransferase (TS PST) activity.

Platelet TS PST basal activity and thermal stability were measured in blood samples from 237 individuals in 50 nuclear families. Significant correlations were found among first degree relatives, confirming the previously reported familial aggregation of TS PST basal activity and thermal stability. Commingling analysis of basal TS PST activity provided evidence for multiple component distributions, and after transformation to remove skewness, segregation analysis supported a major gene hypothesis. For TS PST thermal stability, commingling analysis also provided evidence for multiple component distributions. However, segregation analyses were equivocal with regard to the presence of a major gene for thermal stability, since support for a major gene model depended on skewness. Bivariate commingling analysis, which examined thermal stability by simultaneously considering basal activity and activity after heating, suggested that genotypes, as defined by the inferred component distributions for TS PST activity, differ in thermal stability. A three-allele model is proposed as one hypothesis that may account for the combined results of basal activity and thermal stability. The results of this study indicate that a major gene polymorphism in conjunction with polygenic inheritance plays an important role in the regulation of both level of activity and thermal stability of this important drug-metabolizing enzyme in humans.

Adolescent

Inheritance of human platelet thermolabile phenol sulfotransferase (TL PST) activity.

Sulfate conjugation is an important pathway in the biotransformation of drugs and neurotransmitters. The thermolabile (TL) form of the enzyme phenol sulfotransferase (PST) catalyzes the sulfation of catecholamine neurotransmitters and drugs such as methyldopa and acetaminophen. Platelet TL PST activity was measured in blood samples from 232 individuals in 49 nuclear families. Correlations ranged from 0.43 to 0.45 for parent-offspring pairs and from 0.44 to 0.47 for siblings. Mother-father correlations were not significantly different from zero. Although evidence was not unequivocal, both segregation and commingling analyses provided some support for a major gene influence on TL PST activity, with other variation due to polygenic background. In both sets of analyses, however, support for a major gene hypothesis depended upon skewness in the TL PST activity distribution. A polygenic model with high heritability (0.77) was most strongly supported with the log transformed data. These results confirm and extend a previous report of high heritability of TL PST based on a study of twins. In addition, our results raise the possibility of a major gene effect on this important catecholamine- and drug-metabolizing enzyme--a possibility that can now be evaluated using biochemical techniques.

Adolescent