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Biomedical subjects

C Helms

Publications and source records attributed to C Helms.

58 records · Page 4Linked to original sources

Chromosome mapping of the CYC7 gene determining yeast iso-2-cytochrome c: structural and regulatory regions.

The primary structures of iso-1-cytochrome c and iso-2-cytochrome c in the yeast Saccharomyces cerevisiae are determined by the genes CYC1 and CYC7, respectively. The CYC1 locus was previously shown to be on the right arm of chromosome X, and the CYC7 locus is shown in this investigation to be on the left arm of chromosome V closely linked to the min1 and mak10 markers. The CYC7 locus appears to be composed of a structural region and a regulatory region. Mutations in the structural region can cause a deficiency or alteration of iso-2-cytochrome c, whereas mutations in the regulatory region can cause increases in the amount of iso-2-cytochrome c. Single-site gene conversion, occurring at a relatively high frequency of approximately 4%, caused intragenic recombination of a mutational site in the structural region and a mutational site in the regulatory region, enabling us to suggest the order of the sites in relationship to other markers on the chromosome.

Chromosome Mapping↗

A chromosomal translocation causing overproduction of iso-2-cytochrome c in yeast.

The CYC7-1 mutation in the yeast Saccharomyces cerevisiae causes the production of approximately 30 times the normal amount of iso-2-cytochrome c. Genetic analysis established that the CYC7-1 mutation is a reciprocal translocation involving the left arm of chromosome V and the right arm of chromosome XVI. The chromosome V arm was broken adjacent to the gene CYC7, which determines the primary structure of iso-2-cytochrome c, and this fragment containing the CYC7 gene was joined to the segment of chromosome XVI. It appears as though the elevation of iso-2-cytochrome c is caused by an abnormal controlling region adjacent to the structural region of the CYC7 gene.

Cytochrome c Group↗

The application of molecular and immunologic techniques to study the epidemiology of Legionella pneumophila serogroup 1.

We applied monoclonal antibody typing and restriction endonuclease analysis of plasmid DNA to study 28 clinical and 35 environmental (potable water) isolates of Legionella pneumophila serogroup 1 from three hospitals in Iowa between 1981 and 1986. Monoclonal antibody typing employed a panel of seven antibodies and delineated eight different subtypes. Plasmids were present in 57% of the isolates including 12 of 28 (43%) clinical and 25 of 35 (69%) potable water isolates. The plasmids ranged in size from 28 to 98 kilobase pairs and comprised eight distinct subtypes by restriction endonuclease analysis with Eco RI. Combination of monoclonal antibody and restriction endonuclease subtyping (composite subtyping) revealed 19 different composite subtypes of Legionella pneumophila serogroup 1. The most common composite subtype, 09:04, comprised 29% (18 of 63) of the isolates and was only found in clinical and potable water samples from a single pavilion in hospital A during an outbreak of Legionella pneumophila serogroup 1 pneumonia. Aside from this cluster the diversity of composite subtypes of Legionella pneumophila serogroup 1 observed in clinical and potable water sources over the 5-year period was striking. The combination of monoclonal antibody and restriction endonuclease typing resulted in improved strain delineation and a more useful use of epidemiologic markers for Legionella pneumophila serogroup 1.

Antibodies, Monoclonal↗