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Biomedical subjects

D H Dean

Publications and source records attributed to D H Dean.

At least 19 recordsLinked to original sources

Expression of a gene encoding a scorpion insectotoxin peptide in yeast, bacteria and plants.

The nucleotide sequence encoding the scorpion insectotoxin I5A was chemically synthesized and expressed in yeast, bacteria and tobacco. The I5A peptides produced in these organisms were purified using an immunoaffinity chromatography procedure. I5A produced using the bacterial secretion system was efficiently secreted and released into the culture medium. In contrast, only a trace amount of I5A was detected in bacterial cytosols when expressed from a direct expression vector, suggesting that I5A was unstable in bacterial cells. I5A secreted from yeast using an alpha-factor signal sequence was shown to have an N-terminal (Glu-Ala)2 extension, indicating incomplete processing of the secreted peptide by dipeptidyl aminopeptidase A. In tobacco, a nonsecreted form of the protein was produced. No measurable insect toxicity was observed when insect larvae were assayed, regardless of whether I5A was produced in yeast, bacteria or tobacco. The lack of toxicity is almost certainly the result of improper folding due to incorrect disulfide bond formation. The inability to produce a biologically active peptide must be overcome before scorpion toxins might be used for the genetic engineering of plants for insect resistance. The yeast and bacterial expression systems described here may be useful for further studies on the problem of expressing a biologically active peptide.

Amino Acid Sequence

Location of a Bombyx mori receptor binding region on a Bacillus thuringiensis delta-endotoxin.

Receptor binding studies were performed with 125I-labeled trypsin-activated insecticidal toxins, CryIA(a) and CryIA(c), from Bacillus thuringiensis on brush-border membrane vesicles (BBMV) prepared from Bombyx mori larval midgut. Bioassays were performed by gently force feeding B. mori with diluted toxins. CryIA(a) toxin (LD50; 0.002 micrograms) was 200 times more active against B. mori larvae than CryIA(c) toxin (LD50; 0.421 micrograms) and showed high-affinity saturable binding. The Kd and the binding site concentration for CryIA(a) toxin were 3.5 nM and 7.95 pmol/mg, respectively. CryIA(c) toxin (Kd, 50.35 nM; Bmax, 2.85 pmol/mg) did not demonstrate high-affinity binding to B. mori BBMV. Control experiments with CryIA(a) and CryIA(c) toxins revealed no binding to mouse small intestine BBMV and nonspecific binding to pig kidney BBMV. These data provide evidence that binding to a specific receptor on the membrane of midgut epithelial cells is an important determinant with respect to differences in insecticidal spectrum of insecticidal crystal proteins. To locate a B. mori receptor binding region on the CryIA(a) toxin, homologous and heterologous competition binding studies were performed with a set of mutant proteins which had previously been used to define the B. mori "specificity domain" on this toxin (Ge, A. Z., Shivarova, N. I., and Dean, D. H. (1989) Proc. Natl. Acad. Sci. U.S.A. 86, 4037-4041). These mutant proteins have had regions of their genes reciprocally exchanged with the cryIA(c) gene. A B. mori receptor binding region on CryIA(a) toxin includes the amino-terminal portion of the hypervariable region, amino acids 332-450, which is identical to the previously described B. mori specificity determining region. These data provide direct evidence that delta-endotoxins contain a tract of amino acids that comprise a binding region and as a results determines the specificity of a toxin.

Amino Acid Sequence

Functional domains of Bacillus thuringiensis insecticidal crystal proteins. Refinement of Heliothis virescens and Trichoplusia ni specificity domains on CryIA(c).

Insecticidal crystal proteins (delta-endotoxins), CryIA(a) and CryIA(c), from Bacillus thuringiensis are 82% homologous. Despite this homology, CryIA(c) was determined to have 10-fold more insecticidal activity toward Heliothis virescens and Trichoplusia ni than CryIA(a). Reciprocal recombinations between these two genes were performed by the homolog-scanning technique. The resultant mutants had different segments of their primary sequences exchanged. Bioassays with toxin proteins from these mutants revealed that amino acids 335-450 on CryIA(c) are associated with the activity against T. ni, whereas amino acids 335-615 on the same toxin are required to exchange full H. virescens specificity. One chimeric protein toxin, involving residues 450-612 from CryIA(c), demonstrated 30 times more activity against H. virescens than the native parental toxin, indicating that this region plays an important role in H. virescens specificity. The structural integrity of mutant toxin proteins was assessed by treatment with bovine trypsin. All actively toxic proteins formed a 65-kDA trypsin-resistant active toxic core, similar to the parental CryIA(c) toxin, indicating that toxin protein structure was not altered significantly. Contrarily, certain inactive mutant proteins were susceptible to complete protease hydrolysis, indicating that their lack of toxicity may have been due to structural alterations.

Bacillus thuringiensis

Toothbrush abrasion caused by different dentifrices.

The purpose of this study was to evaluate the abrasive effect on toothbrush bristles caused by three brands of commercially distributed dentifrices: Colgate regular flavor, Crest tartar-control formula, and Caffree gel. New brushes and brushes tested in distilled water served as controls. Scanning electron micrographs were taken of all test samples, randomly labeled, then presented to independent evaluators. Each bristle evaluated was assigned to one of seven wear categories adapted from previous studies. Crest and Caffree produced the most bristle wear and were not significantly different from each other. Colgate and water resulted in less wear, and new brushes the least wear. These results demonstrate that the effective life of a toothbrush will vary with the type of dentifrice used.

Dentifrices

Hyperexpression of a Bacillus thuringiensis delta-endotoxin-encoding gene in Escherichia coli: properties of the product.

Conditions for hyperexpression, in Escherichia coli, of the Bacillus thuringiensis var, kurstaki gene, cryIA9(c)73, encoding an insecticidal crystal protein, CryIA(c)73, were investigated by varying the promoter type, host cell, plasmid copy number, the second codon and number of terminators. The cryIA(c)73 gene was cloned into three E. coli expression vectors, pKK223-3 (Ptac promoter), pET-3a (P phi 10 promoter), and pUC19 (Ptac promoter). The level of cryIA(c)73 expression was measured by ELISA and compared to total cellular protein over growth periods of 24 and 48 h. Maximum expression levels of 284 microgram CryIA(C)73/ml (48% of cellular protein) were obtained in shake flasks with the Ptac promoter in E. coli JM103. Optimal conditions were found to be low-copy-number plasmid (pBR322 ori), 48 h of growth, in lon+ cells. A change of the gene's second codon to AAA can improve expression by two to three fold but is undetectable in the presence of a strong E. coli promoter. The cryIA(c)73 gene product, in E. coli, formed crystals with the same lattice structure as the native crystals formed in B. thuringiensis (as visualized by electron microscopy). Bioassay results (insect toxicity and specificity) of the crystal produced in E. coli were similar to that produced in B. thuringiensis.

Bacillus thuringiensis

Orientation of genes in the Bacillus subtilis chromosome.

The orientation of 96 genes on the Bacillus subtilis chromosome was deduced by the analysis of published data. Of these genes, 91 were found to be oriented so that their promoters were proximal to the chromosomal replication origin and their transcription termini to the replication terminus. Transcription of these genes would therefore be co-directional with replication. This chromosomal organization is consistent with the hypothesis advanced for Escherichia coli that bacteria avoid head-on collisions between RNA polymerase and DNA replication proteins by the appropriate orientation of their transcription units.

Bacillus subtilis

Meeting the needs for health services of persons with mental retardation living in the community.

Adequate health services are critical to the success of efforts to maintain persons with mental retardation in the community, yet information concerning the health status of this population is in short supply. This paper presents the results of a survey of 333 mentally retarded persons randomly selected from a population of 1,333 such individuals living in community settings. Almost two-thirds had chronic conditions requiring medical intervention. The top five conditions in terms of prevalence were neurologic, ophthalmologic, dermatologic, psychiatric-emotional, and orthopedic. The majority of conditions were being managed appropriately in the community health system. A substantial proportion can be managed by primary care physicians with limited specialty involvement. For almost 60 percent of clients with conditions requiring home treatments on an ongoing basis, however, service gaps were identified. Other problems included the reluctance of some providers to accept Medicaid, and the inability of some clients to cooperate with medical examinations.

Adolescent

Location of the Bombyx mori specificity domain on a Bacillus thuringiensis delta-endotoxin protein.

Bacillus thuringiensis produces different types of insecticidal crystal proteins (ICPs) or delta-endotoxins. In an effort to identify the insect specificity of ICP toxins, two icp genes were cloned into the Escherichia coli expression vector pKK223-3, and bioassays were performed with purified crystals. The type A protein [from an icpA1, or 4.5-kilobase (kb) gene, from B. thuringiensis var. kurstaki HD-1] was found to be 400 times more active against Bombyx mori than type C protein (from an icpC73, or 6.6-kb gene, from B. thuringiensis var. kurstaki HD-244). The type C protein was 9 times more active against Trichoplusia ni than the type A protein, while both have similar activity against Manduca sexta. To locate the specificity domain of the type A protein for B. mori, site-directed mutagenesis was used to introduce or remove restriction enzyme sites, facilitating the exchange of regions of the two genes. The hybrid genes were overexpressed, and purified ICP was used in bioassays. The B. mori specificity domain for the ICP A toxin is located in the amino-terminal portion of the hypervariable region between amino acids 332 and 450.

Animals

Modulation of immune response. A possible role for murine salivary epidermal and nerve growth factors.

Both epidermal growth factor (EGF) and nerve growth factor (NGF) were found to moderate the reactivity of mouse spleen cells in an in vitro model of immune response. Blastogenic response was suppressed by EGF and potentiated by NGF. Both proteins are present in mouse, but not human, saliva in quantities equal to or greater than those affecting blastogenic response in our assay. Immune response occurring in the mouse periodontium may be affected by the presence of these factors in the saliva.

Animals

Temperate Bacillus bacteriophage SP16 genome is circularly permuted and terminally redundant.

The physical nature of temperate Bacillus bacteriophage SP16 DNA was analyzed by electron microscopy, exonuclease digestion, denaturation-renaturation experiments, and restriction enzyme analysis. The SP16 genome is a linear molecule 60.0 +/- 2.0 kilobases in length without cohesive ends. Electron micrographs of denatured and renatured SP16 DNA showed that the DNA is circularly permuted. The genome possesses terminal redundancy, as demonstrated by electron microscopy of exonuclease III-digested DNA.

Bacillus

Location of the Bacillus subtilis temperate bacteriophage phi 105 attP attachment site.

Chromosomal DNAs of lysogens of phi 105 and phi 105 DI:1t were digested with restriction enzymes EcoRI and HpaI and were probed with nick-translated mature phi 105 DNA. Altered bacteriophage-specific bands in the lysogens were detected, indicating that the phage integrates into the host chromosome at a single site, probably via a Campbell-type circular intermediate. The phage attachment site is centrally located in the phage genome and lies between the phage immunity region and the nonessential deletable region of phi 105.

Bacillus subtilis

Lethal effect of male rat submandibular gland homogenate for rat neonates.

Suckling rats injected subcutaneously with male submandibular gland homogenate (SMGH), but not liver homogenate (LH), died within 24 h. Weanling and adult rats injected with proportionately greater doses of male SMGH did not die. Suckling rats injected with male SMGH exhibited a 1200% increase in serum trypsin-like activity while the corresponding increase for an adult receiving a proportionately similar dose was 46%. We suggest that pups injected subcutaneously with SMGH absorbed trypsin-like enzymes into their bloodstream, were unable to inactivate the enzymes, and suffered a hypotensive crisis leading to death.

Age Factors

Nucleotide sequence of the cohesive single-stranded ends of Bacillus subtilis temperate bacteriophage phi 105.

The cohesive single-stranded ends of temperate Bacillus subtilis phage phi 105 were analyzed with the exonuclease activities of the Klenow fragment of DNA polymerase I and with exonuclease III and were found to be 3' extensions. Chemical sequencing of 3'-end-labeled fragments showed that the ends are 7-base extended 3' single strands and have the sequence: 5'-GCGCTCC-3'. 3'-CGCGAGG-5'

Bacillus subtilis