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Biomedical subjects

B Burkhart

Publications and source records attributed to B Burkhart.

7 recordsLinked to original sources

Intensive surveillance for infections in a three-year study of nursing home patients.

The authors report the results of a 3-year (August 1984-May 1987) prospective study of intensive surveillance for nursing home-associated infections in 666 patients in a 300-bed nursing home in San Diego, California. Ninety-three percent (666 of 714) of the eligible subjects enrolled; 75% were women. The mean age of the subjects was 81.6 years. Lengths of stay ranged from 1 day to 1,025 days, with a mean of 166 days; the cumulative length of stay for all subjects was 110,746 days (303 years). Operational definitions that were heavily dependent on evaluation of clinical signs and symptoms were used by nurse practitioners in weekly or biweekly assessments of all patients to identify infections. The overall incidence of nursing home-associated infection was 7.1 infections/1,000 patient-days. Many of the infections would not have been recognized by persons less skilled than nurse practitioners. Among the 788 nursing home-associated infections identified, 362 (47%) were in the respiratory tract (286 lower respiratory and 76 upper respiratory); 200 (25%) were associated with skin and subcutaneous and mucous membranes; 140 (18%) were symptomatic urinary tract infections; 13 (2%) were bacteremia; and 73 (9%) were other infections.

Adult

Characterization and regulation of sex-specific mouse steroid hydroxylase genes.

We characterized the genes of the male-specific mouse steroid 16 alpha-hydroxylase (C-P-45016 alpha) and the female-specific mouse steroid 15 alpha-hydroxylase (P-45015 alpha) within two distinct gene families. In spite of the high structural identities within each family, the expression of the hydroxylase genes is uniquely regulated. Moreover, the other family members encode the P-450s which are structurally very similar to the hydroxylases but are not able to catalyze steroid hydroxylase activities. For example, only a single amino acid substitution creates steroid 15 alpha-hydroxylase activity in another family-member P-450coh, which catalyzes coumarin 7-hydroxylase but little steroid hydroxylase activity. It appears, therefore, that the mouse P-450 gene families evolved through gene duplication and selective mutation to create new P-450s structurally as well as to establish novel regulatory elements for the gene expressions.

Amino Acid Sequence

Mouse steroid 15 alpha-hydroxylase gene family: identification of type II P-450(15)alpha as coumarin 7-hydroxylase.

We identified type II P-450(15)alpha as mouse coumarin 7-hydroxylase (P-450coh). Unlike type I P-450(15)alpha, the other member within the mouse steroid 15 alpha-hydroxylase gene family, type II catalyzed little steroid 15 alpha-hydroxylase activity, yet structurally there were only 11 substitutions between type I and type II P-450(15)alphaS within their 494 amino acid residues (Lindberg et al., 1989), and the N-terminal sequence (21 residues) of P-450coh was identical with that of both P-450(15)alphaS. Induction by pyrazole of coumarin 7-hydroxylase activity correlated well with the increase of type II P-450(15)alpha mRNA in 129/J male and female mice. Pyrazole, on the other hand, was less in males or not effective in females in inducing the 15 alpha-hydroxylase activity and type I P-450(15)alpha mRNA. Expression of type I and II in COS-1 cells revealed that the latter catalyzed coumarin 7-hydroxylase activity at 10 to approximately 14 pmol min-1 (mg of cellular protein)-1. The former, on the other hand, had a high testosterone 15 alpha-hydroxylase but little coumarin 7-hydroxylase activity. It was concluded, therefore, that type II P-450(15)alpha is the mouse coumarin 7-hydroxylase. Identification of type II as the P-450 specific to coumarin 7-hydroxylase activity and characterization of its cDNA and gene, therefore, were significant advances toward understanding the basis of genetic regulation of this activity in mice (known as Coh locus).

Animals

The structure and characterization of type I P-450(15) alpha gene as major steroid 15 alpha-hydroxylase and its comparison with type II P-450(15) alpha gene.

The structures of genes 15 alpha OH-1 and 15 alpha OH-2, within the mouse steroid 15 alpha-hydroxylase (P-450(15) alpha) family were determined. Genes 15 alpha OH-1 and -2 encoded mouse Type I and II P-450(15) alpha, respectively (Squires, E.J., and Negishi, M. (1988) J. Biol. Chem. 263, 4166-4171). The two genes, which spanned approximately 8 kilobase pairs of total length, showed nearly identical structures and were divided into nine exons at the same positions. A high nucleotide sequence homology (greater than 96%) indicated that 15 alpha OH-1 and -2 were duplicated within 5 million years. The two major transcription start sites were located at 14 and 24 base pairs (bp) upstream from the initiation Met in both genes. No tissue-specific difference in 15 alpha OH-1 and -2 transcriptional start sites was found in mouse liver and kidney. Both 15 alpha OH-1 and -2 had TATA and CAAT boxes at 30 and 100 bp, respectively, upstream from their major transcription start sites. A glucocorticoid regulatory element was present at 336 bp upstream from the start site in both genes. In addition to these motifs, 15 alpha OH-2 had an SV40 enhancer core sequence immediately downstream from its CAAT box. There were only 11 substitutions between Type I and II P-450(15) alpha in their 494-amino acid residues. Type I cDNA-transfected cell homogenates had testosterone 15 alpha-hydroxylase activity at approximately 9 pmol/min/mg protein. Type I also catalyzed progesterone and androstenedione 15 alpha-hydroxylase activities. Type II, on the other hand, exhibited little activity toward these steroids. The results indicated that Type I was the major steroid 15 alpha-hydroxylase. The differential 15 alpha OH-1 expression, therefore, determined the sexual dimorphism of the tissue-specific 15 alpha-hydroxylase activity in mice.

Amino Acid Sequence

Seminal vesicle secretion IV gene: allelic difference due to a series of 20-base-pair direct tandem repeats within an intron.

The rat seminal vesicle secretion IV (SVS IV) gene was isolated from a lambda Charon 4A library. The SVS IV gene transcription unit was found to be on one 3.3-kilobase (kb) EcoRI fragment. Restriction mapping and DNA sequence analysis demonstrated that the entire length of the SVS IV transcription unit is 1,930 base pairs (bp) and contains two introns. The 3.3-kb EcoRI fragment contains 144 bp of 5'-flanking region. At -113 bp from the presumed transcription initiation site an interesting structure with perfect dyad symmetry is noted. In another lambda clone, a 3.5-kb EcoRI fragment was isolated that contains the SVS IV gene and was shown to be identical to the 3.3-kb EcoRI fragment except for 180 bp of DNA in the second intron. The extra DNA consists of several (8-10) 20-bp tandem repeats flanked on each side by seven or eight copies of this same 20-bp repeat. Fisher X Sprague-Dawley hybrid rats, which contain both the EcoRI 3.5-kb form and the 3.3-kb form of the SVS IV gene, were crossed with each other. Analysis of the F1 generation demonstrated that the presence or absence of the 180-bp intronic insertion in the SVS IV gene defines an allelic difference. This report also presents the DNA sequence of the transcription unit and flanking regions of the SVS IV gene.

Alleles