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R L Cann

Publications and source records attributed to R L Cann.

24 records · Page 2Linked to original sources

Polymorphic sites and the mechanism of evolution in human mitochondrial DNA.

Twelve restriction enzymes were used to screen for the presence or absence of cleavage sites at 441 locations in the mitochondrial DNA of 112 humans from four continents. Cleavage maps were constructed by comparison of DNA fragment sizes with those expected from the published sequence for one human mtDNA. One hundred and sixty-three of the sites were polymorphic, i.e., present in some individuals but absent from others, 278 sites being invariant. These polymorphisms probably result from single base substitutions and occur in all functional regions of the genome.--In 77 cases, it was possible to specify the exact nature and location (within a restriction site) of the mutation responsible for the absence of a restriction site in a known human mtDNA sequence and its presence in another human mtDNA. Fifty-two of these 77 gain mutations occur in genes coding for proteins, 34 being silent and 18 causing amino acid replacements; moreover, nine of the replacements are radical.--Notable also is the anomalous ratio of transitions to transversions required to account for these 77 restriction site differences between the known human mtDNA sequences and other human mtDNAs. This ratio is lower for most groups of restriction sites than has been reported from sequence comparisons of limited parts of the mtDNA genome in closely related mammals, perhaps indicating a special functional role or sensitivity to mutagenesis for palindromic regions containing high levels of guanine and cytosine.--From the genomic distribution of the 163 polymorphic sites, it is inferred that the level of point mutational variability in tRNA and rRNA genes is nearly as high as in protein-coding genes but lower than in noncoding mtDNA. Thus, the functional constraints operating on components of the protein-synthetic apparatus may be lower for mitochondria than for other systems. Furthermore, the mitochondrial genes for tRNAs that recognize four codons are more variable than those recognizing only two codons.--Among the more variable of the human mitochondrial genes coding for proteins is that for subunit 2 of cytochrome oxidase; this polypeptide appears to have been evolving about five times faster in primates than in other mammals. Cytochrome c, a nuclearly encoded protein that interacts directly with the oxidase 2 subunit in electron transport, has also evolved faster in primates than in rodents or ungulates. This example, along with that for the mitochondrial rRNA genes and the nuclear genes coding for mitochondrial ribosomal proteins, provides evidence for coevolution between specific nuclear and mitochondrial genes.

Base Sequence↗

Mitochondrial DNA variation in Australian aborigines: the spread of modern populations.

Twelve Aboriginal people from Western Australia were examined for evidence of mitochondrial DNA polymorphism using 12 restriction endonucleases. Analyzed against a background population drawn from individuals of widespread geographic origin, Australians do not represent a depauperate mitochondrial gene pool. These 12 individuals showed the same range of functional diversity seen in the larger population sampled. Forty-two separate mitochondrial mutations were found among Aboriginal Australians, 35 probably due to single base substitutions and 7 due to length variation for specific regions of the genome. Such results reinforce the view that multiple populations have contributed to the spread of peoples in the Pacific. Mitochondrial DNA polymorphisms suggest that populations which contain these maternal lines can be traced back to one with a worldwide distribution roughly 350,000 years ago, corresponding to the emergence of Homo sapiens.

Anthropology, Physical↗

Length mutations in human mitochondrial DNA.

By high-resolution, restriction mapping of mitochondrial DNAs purified from 112 human individuals, we have identified 14 length variants caused by small additions and deletions (from about 6 to 14 base pairs in length). Three of the 14 length differences are due to mutations at two locations within the D loop, whereas the remaining 11 occur at seven sites that are probably within other noncoding sequences and at junctions between coding sequences. In five of the nine regions of length polymorphism, there is a sequence of five cytosines in a row, this sequence being comparatively rare in coding DNA. Phylogenetic analysis indicates that, in most of the polymorphic regions, a given length mutation has arisen several times independently in different human lineages. The average rate at which length mutations have been arising and surviving in the human species is estimated to be many times higher for noncoding mtDNA than for noncoding nuclear DNA. The mystery of why vertebrate mtDNA is more prone than nuclear DNA to evolve by point mutation is now compounded by the discovery of a similar bias toward rapid evolution by length mutation.

Chromosome Deletion↗

Evolution of human mitochondrial DNA: a preliminary report.

Preliminary mapping of 346 cleavage sites in the mitochondrial genome of 100 human beings gives evidence that the genes for transfer RNA are highly variable, a result that points to the need for testing the accuracy of mitochondrial protein synthesis. In addition, the map comparisons imply that Australia has as much mtDNA diversity as any other area tested in the Old World. Assuming a model of strictly maternal inheritance, it appears possible to follow individual female lineages back hundreds of generations thereby providing human genetics with an important new measure of population heterogeneity. This measure, when compared with those available from protein and morphologic considerations, will help highlight particular groups of people whose mitochondria may increase greatly our understanding of the historical processes leading to the evolution of our own species.

Biological Evolution↗

Contribution of aromatic residue interactions to the stability of myoglobin. V. Enhancement by aromatic compounds of the rate of heat denaturation.

Aromatic compounds like chlorpromazine and benzoate and its homologs strongly enhance the rate of heat denaturation of myoglobin. The latter apparently exert their action by complexing with a single kind of site in the hemeprotein. Both charge-transfer and hydrophobic interactions are implicated in complex formation, most probably with the heme moiety.

Animals↗

Mitochondrial DNA and human evolution.

Mitochondrial DNAs from 147 people, drawn from five geographic populations have been analysed by restriction mapping. All these mitochondrial DNAs stem from one woman who is postulated to have lived about 200,000 years ago, probably in Africa. All the populations examined except the African population have multiple origins, implying that each area was colonised repeatedly.

Biological Evolution↗