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Biomedical subjects

A C Wilson

Publications and source records attributed to A C Wilson.

At least 19 recordsLinked to original sources

Independent origins of New Zealand moas and kiwis.

Two groups of flightless ratite birds existed in New Zealand during the Pleistocene: the kiwis and the moas. The latter are now extinct but formerly included 11 species. We have enzymatically amplified and sequenced approximately 400 base pairs of the mitochondrial 12S rRNA gene from bones and soft tissue remains of four species of moas as well as eight other species of ratite birds and a tinamou. Contrary to expectation, the phylogenetic analysis shows that the kiwis are more closely related to Australian and African ratities than to the moas. Thus, New Zealand probably was colonized twice by ancestors of ratite birds.

Animals

Effect of methylated forms of selenium on cell viability and the induction of DNA strand breakage.

Selenobetaine (SB) and selenobetaine methyl ester (SBME) are methylated selenonium derivatives that undergo metabolism to release methyl selenide and dimethylselenide, respectively, as primary metabolites. Since methylation of selenium is considered to be detoxifying, the toxicologic activity of SB or SBME may differ from that of inorganic forms of selenium, such as selenite, that undergo reduction and can induce cell damage. In this study, the effects of SB, SBME and selenite on the viability and long-term growth potential of a mouse leukemia cell line (L1210) were compared. Treatment with 20 microM selenite reduced the rate of cell doubling and the long-term growth potential of cells as measured by colony-forming ability. These effects of selenite were accompanied by a reduction in DNA integrity, assessed by alkaline elution analysis for single-strand breaks. Exposure to 500 microM SB or SBME for 24 hr reduced the colony-forming ability of cells in the absence of any effect on dye exclusion or induction of single-strand breaks in DNA. Exposure of cells to 500 microM SB or SBME resulted in levels of intracellular selenium similar to those after exposure to 20 microM selenite. These observations indicate that it is possible to maintain high intracellular levels of selenium, by exposure to methylated selenocompounds, without affecting DNA integrity. These findings also suggest that DNA fragmentation resulting from exposure to selenite occurs during its reductive metabolism and not from the accumulation of a methylated metabolite of selenium. The fact that SB or SBME reduced the ability of L1210 cells to form colonies in agar in the absence of either DNA fragmentation or any effect on the ability of treated cells to exclude a vital dye suggests that both methylated compounds alter the long-term proliferative potential of cells via a mechanism(s) distinct from that associated with cell injury and death by necrosis. Efforts are underway to determine the origin of these effects.

Animals

Arterial blood nicotine concentration and coronary vasoconstrictive effect of low-nicotine cigarette smoking.

Low-nicotine cigarettes have been advertised to the public as less harmful to the cardiovascular system. We studied the effects of smoking two low-nicotine cigarettes on arterial and venous blood nicotine levels, hemodynamics, and coronary vascular tone in 12 patients referred for diagnostic coronary arteriography. All were chronic smokers as evidenced by their elevated baseline arterial and venous cotinine blood levels (139 +/- 30 ng/ml and 155 +/- 34 ng/ml, respectively). High-resolution coronary angiograms were evaluated "blindly" before and after smoking. An electronic caliper was used to measure the diameter of disease-free coronary segments of the left anterior descending and circumflex arteries. Arterial nicotine levels rose from 5 +/- 1 ng/ml at baseline to 37 +/- 7 ng/ml (p less than 0.01) after the first cigarette was smoked and to 45 +/- 8 ng/ml (p less than 0.01) after the second cigarette. Venous nicotine levels rose from 8 +/- 2 ng at baseline to 15 +/- 3 ng/ml (p less than 0.05) after the first cigarette and to 20 +/- 3 ng/ml (p less than 0.01) after the second cigarette. After the first cigarette heart rate increased 8 +/- 2 beats/min (p less than 0.003) and double product 1229 +/- 400 beats/min x mm Hg (p less than 0.02). Compared to baseline values, after the second cigarette heart rate increased 9 +/- 1 beats/min (p less than 0.001) and double product 1767 +/- 486 beats/min x mm Hg (p less than 0.01). Systolic, diastolic, and mean blood pressure did not change significantly after either the first or second cigarette.(ABSTRACT TRUNCATED AT 250 WORDS)

Cardiac Catheterization

Evolutionary genetics of ruminant lysozymes.

Comparative studies of mammalian lysozymes and their genes have contributed to knowledge of how new functions arise during evolution. The recruitment of lysozymes for functioning in the stomach fluid of ruminants has occurred in response to selection pressures that are partly known and on a time-scale that is known. A semiquantitative analysis of adaptive evolution is thus made possible by the ruminant lysozyme system. Large-scale production of lysozyme by the stomach lining entailed gene duplication as well as a change in gene expression. Remoulding of the lysozyme for working and lasting in the stomach fluid involved accelerated amino acid replacements, which may have been facilitated by intergenic recombination. The possibility that multigene families can accelerate adaptive evolution, by virtue of their capacity for bringing together functionally coupled substitutions, receives emphasis in this review.

Adaptation, Physiological

Body fat and overweight among children and adolescents with diabetes mellitus.

Body composition was assessed in 68 children and adolescents with diabetes mellitus. Body fat was measured by skinfold thickness and the results were compared with those obtained by bioelectrical impedance methods (r = 0.76, p less than 0.001). Percentage body fat from skinfold thickness estimations was 12-38%. Girls appeared to be most at risk of obesity during puberty with mean body fat 31%, significantly greater than in prepubertal girls (22%, p = 0.001) and pubertal boys (21%, p less than 0.001). Body fat increased progressively through puberty in girls, with those in late puberty (stages 4 and 5) having significantly more percentage body fat than those in earlier puberty (stages 2 and 3, p less than 0.001). Those in late puberty also received significantly more insulin per kilogram body weight (p = 0.05) and had higher HbA1 levels (p less than 0.05) than prepubertal girls.

Adipose Tissue

The prognostic significance of very low frequency ventricular ectopic activity in survivors of acute myocardial infarction. BHAT Study Group.

Survivors of myocardial infarction with less than 2 PVC/h on 24-h ambulatory electrocardiography were followed up for an average of 25 months (11 to 40 months) while receiving a placebo (1,222 patients) or propranolol, 180 or 240 mg/day (1,234 patients). Three quarters of the participants with PVCs had an average of less than 2 PVC/h. Only 16 percent did not have any ventricular ectopic activity during the 24 h. Analysis of total mortality according to the number of premature ventricular complexes per hour showed that patients who had PVCs with a very low frequency (less than 0.5/h) had 49 percent higher mortality than patients who did not have any PVC. Patients who had greater than 0.5 PVC/h but less than 1 PVC/h had a statistically significant higher mortality rate, 11.7 vs 4.1 percent (p less than 0.0001) than patients who had no PVC. These data indicate that low ventricular ectopic activity frequency is associated with increased mortality in survivors of acute myocardial infarction.

Cardiac Complexes, Premature

Mitochondrial resolution of a deep branch in the genealogical tree for perching birds.

Animal mitochondrial DNA (mtDNA) is known to contain information about the genealogical relations among closely related species and is shown here to yield information about distant relations as well. Our results also draw attention to the need for caution in using third positions of codons for tree construction. This is evident from comparative studies of the cytochrome b gene in 13 species representing major groups within the order of perching birds (Passeriformes). Sequences of a 924 base-pair segment of this gene were obtained from each of these species via the polymerase chain reaction and a novel set of versatile primers. With a woodpecker sequence as an outgroup, trees that separate songbirds from other perching birds and resolve the ancient branch leading to songbirds were obtained utilizing the conservative first and second positions of codons. Analysis of positions within codons suggests that, for deep branches, the skewed base composition at the fast-changing third positions can result in phylogenetic disinformation, which conflicts with the information retained in the first and second positions. The mitochondrial tree shows broad concordance with that based on hybridization of nuclear DNA; however, parsimony and maximum likelihood methods suggest a close kinship between thrushes and Australian babblers, in agreement with the traditional morphological classification.

Amino Acid Sequence

Mode and tempo of molecular evolution in the nematode caenorhabditis: cytochrome oxidase II and calmodulin sequences.

Through direct sequencing methods, the mitochondrial gene for cytochrome oxidase subunit two (CO II) and the single-copy nuclear gene for calmodulin were compared among strains of Caenorhabidits elegans and two other Caenorhabditis species (C. remanei and C. briggsae). In addition the CO II sequence was determined from a distantly related nematode, Steinernema intermedii. Among the 11 strains of C. elegans tested, there are four types of CO II gene, arising from two major lineages. Levels of intraspecific difference in the CO II gene are low (less than 2.0%) compared to the extraordinary divergence between congeneric species, which is about 50% when corrected for multiple hits. Concordant with the increase in divergence between taxa is a change in the pattern of substitution from a strong transition bias (24 transitions compared to two transversions) within species to a substitution pattern that appears to reflect the base composition of the mitochondrial genome when more divergent nematodes are compared. The base composition of the Caenorhabditis CO II gene is strongly biased toward A + T at all three positions of codons and appears to constrain the amino acid composition of the protein. Both the CO II and calmodulin genes show extreme conservation of amino acid sequences. When the accumulation of changes at silent sites in the two genes is compared among strains, it becomes evident that the mitochondrial gene is changing faster than the nuclear gene.

Amino Acid Sequence

mtDNA polymorphism in two communities of Jews.

Twenty-one types of mtDNA were found in a survey of 39 Israeli Jews, of whom 18 were Sephardic and 21 Ashkenazic. The survey was made with six restriction enzymes that together recognize an average of 600 bp/genome. The differences among the types appear to be due to base substitution at 19 cleavage sites, one deletion, and one conformational mutation. The numbers of differences imply that these modern Jews stem from a minimum of 21 maternal lineages that were already distinct from one another 4,000-5,000 years ago. In three of the four cases where a type was found in more than one person, it occurred in both Ashkenazic and Sephardic populations. The diversity of types in the combined sample of two Jewish populations is lower than both that in a sample from various parts of Africa and that in a sample from various parts of East Asia. Nevertheless, it is as high as that in a sample from diverse parts of New Guinea, an area much larger than that in Israel to which the Jewish population traces back.

Base Composition

Amino acid sequence of California quail lysozyme. Effect of evolutionary substitutions on the antigenic structure of lysozyme.

To examine the effect of amino acid substitutions in lysozyme on the binding of antibodies to lysozyme, we purified lysozyme from the egg whites of California quail and Gambel quail. Tryptic peptides were isolated from digests of the reduced and carboxymethylated lysozymes and subjected to quantitative analysis of their amino acid compositions. The two proteins were identical by this criterion. Each peptide from the California quail lysozyme was then sequenced by quantitative Edman degradation, and the peptides were ordered by homology with other bird lysozymes. California quail lysozyme is most similar in amino acid sequence to bobwhite quail lysozyme, from which it differs by two substitutions: arginine for lysine at position 68 and histidine for glutamine at position 121. California and bobwhite quail lysozymes were antigenically distinct from each other in quantitative microcomplement fixation tests, indicating that substitutions at one or both of these positions can alter the antigenic structure of lysozyme. Yet neither of these positions is among those claimed to account for the precise and entire antigenic structure of lysozyme [Atassi, M. Z., & Lee, C.-L. (1978) Biochem. J. 171, 429--434]. Two possible explanations for this discrepancy are discussed.

Amino Acid Sequence

Rapid evolution of animal mitochondrial DNA.

Mitochondrial DNA was purified from four species of higher primates (Guinea baboon, rhesus macaque, guenon, and human) and digested with 11 restriction endonucleases. A cleavage map was constructed for the mitochondrial DNA of each species. Comparison of the maps, aligned with respect to the origin and direction of DNA replication, revealed that the species differ from one another at most of the cleavage sites. The degree of divergence in nucleotide sequence at these sites was calculated from the fraction of cleavage sites shared by each pair of species. By plotting the degree of divergence in mitochondrial DNA against time of divergence, the rate of base substitution could be calculated from the initial slope of the curve. The value obtained, 0.02 substitutions per base pair per million years, was compared with the value for single-copy nuclear DNA. The rate of evolution of the mitochondrial genome appears to exceed that of the single-copy fraction of the nuclear genome by a factor of about 10. This high rate may be due, in part, to an elevated rate of mutation in mitochondrial DNA. Because of the high rate of evolution, mitochondrial DNA is likely to be an extremely useful molecule to employ for high-resolution analysis of the evolutionary process.

Animals