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Biomedical subjects

L J Heilmann

Publications and source records attributed to L J Heilmann.

4 recordsLinked to original sources

The boll weevil vitellogenin gene: nucleotide sequence, structure, and evolutionary relationship to nematode and vertebrate vitellogenin genes.

Boll weevil (Anthonomus grandis) eggs contain two yolk proteins, YP47 and YP160. Using anti-YP160 antiserum as probe, a partial-length complementary DNA (cDNA) was isolated from a lambda gt11 adult female cDNA library. A second partial-length cDNA was isolated from a lambda gt10 adult female cDNA library by differential screening with male vs. female cDNAs. Northern blot analysis showed that each cloned cDNA hybridized to a 6-kb female-specific transcript. These cDNAs were used to probe a genomic library, and two overlapping genomic clones were obtained that span the boll weevil vitellogenin gene. The entire transcription unit was sequenced, and introns were mapped by a combination of primer extension experiments, S1 nuclease protection experiments, and polymerase chain reaction-mediated synthesis of two additional cDNA clones. Based on these data, the vitellogenin mRNA is 5511 nucleotides [plus a poly(A) tail of undetermined length] and specifies a provitellogenin of 1790 amino acids. The deduced protein has a Glu+Gln content of 16.3%, which is a relatively high value that is typical of most vitellogenins. Protein sequence similarities including Cys clusters conserved between boll weevil vitellogenin and Xenopus laevis A2 or Caenorhabditis elegans vit-5 vitellogenins indicated that the boll weevil protein is a member of the ancient nematode-vertebrate vitellogenin family. Moreover, the six introns in the boll weevil vitellogenin gene interrupt the coding region at positions closely or exactly corresponding to a subset of the positions of the 34 vertebrate vitellogenin introns, further supporting the argument for a common evolutionary relationship. This report represents the first complete nucleotide sequence and structural analysis of a nondipteran insect vitellogenin gene.

Amino Acid Sequence

Measurement of proviral genes in uninfected and avian myeloblastosis virus-infected cells by hybridization with 3H-labeled complementary DNA probe excess.

Viral RNA (vRNA) from avian myeloblastosis virus or DNA from virus-infected and uninfected cells was hybridized with [3H]DNA complementary to viral RNA ([3H]cDNA) under conditions of [3H]cDNA excess. When [3H]cDNA was used to drive the hybridization reaction with vRNA, a rate constant of 33.2 liters/mol-s was obtained. The same rate constant was obtained when vRNA excess was used as the driver. The specific activities of the [3H]DNA probe, estimated from kinetic measurements of the hybridization reaction and from the amount of [3H]cDNA in hybrid form at equilibrium, were 9.1 and 8.6 cpm/pg, respectively. DNA isolated from uninfected cells contained five or six copies of proviral DNA per cell genome. DNA isolated from erythrocytes infected with avian myeloblastosis virus had an additional five or six viral genes added to the cell genome, and the virus-infected target cell (myeloblasts) contained about 15 additional copies of proviral DNA per cell. The use of excess [3H]cDNA probe is an easy and accurate method to quantify the frequency of proviral DNA sequences in cell DNA and to measure a small amount (40 to 200 pg) of vRNA. Probe excess hybridization offers a number of advantages over other procedures and these are discussed.

Animals

Trout P450IA1: cDNA and deduced protein sequence, expression in liver, and evolutionary significance.

The cytochrome P1(450) (P450IA1) cDNA has been isolated and sequenced from liver of 3-methylcholanthrene-treated rainbow trout (Salmo gairdneri). The cDNA hybridizes to a 2.8-kb mRNA that is induced at least 10-fold by 3-methylcholanthrene. Southern blot analysis suggests the presence of a single gene or a very small number of genes. An open reading frame of the 2573-bp cDNA encodes a 522-residue protein (Mr = 59,241) that is more similar to the mammalian P450IA1 than the mammalian P450IA2 proteins. The aromatic hydrocarbon (Ah) receptor, responsible for mammalian P450IA1 and IA2 inducibility, was detected in trout liver cytosol by specific binding to [1,6-3H]2,3,7,8-tetrachlorodibenzo-p-dioxin (TCDD) in vitro. Comparison of the fish P450IA1 protein with human, mouse, rat and rabbit P450IA1 and P450IA2 proteins reveals the presence of a remarkably large number of single amino acids and stretches of 2-6 residues in a row that are invariant among these nine P450 proteins. These conserved regions may participate in the binding of the NADPH-P450 oxidoreductase flavoprotein, substrate, or heme.

Amino Acid Sequence