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Biomedical subjects

J S Emtage

Publications and source records attributed to J S Emtage.

5 recordsLinked to original sources

Complete nucleotide sequence of an influenza virus haemagglutinin gene from cloned DNA.

A synthetic fowl plague virus (FPV) haemagglutinin gene has been cloned in bacteria and the complete sequence of the RNA gene deduced. It is 1,742 nucleotides long and the mRNA codes for 56.3 amino acids in an uninterrupted sequence. The nature of some of the important domains in the haemagglutinin has been established, and their structure is discussed in relation to their function. Extensive amino acid sequence homologies exist between FPV and human influenza haemagglutinins.

Amino Acid Sequence

Polyadenylation and reverse transcription of influenza viral RNA.

The polyadenylation of Fowl Plague Viral RNA and of Influenza A/Victoria Viral RNA using E. coli poly (A) polymerase and the subsequent reverse transcription of the polyadenylated species is reported. We have shown that all 8 genome fragments are adenylated and that an average of 25--30 adenylic acid residues per molecule is sufficient for maximal transcription with reverse transcriptase. The cDNA product is 95% sensitive to Sl-nuclease and hybridisation analysis against viral RNA reveals it to be a faithful copy of the RNA. Amongst the transcription products are long, discrete copies of genes 1--8, the lengths of which are comparable with those of the vRNA determined by electrophoresis on formamide acrylamide gels. These single-stranded cDNAs have been further transcribed to form double-stranded products with hair-pin structures at one end. Analysis of this material on native acrylamide gels revealed some DNA bands corresponding to the predicted sizes for genes 4--8.

DNA, Viral

Vitamin D in the avian egg. Its molecular identity and mechanism of incorporation into yolk.

The chemical identity of vitamin D in the egg of the domestic fowl was studied by analysing radioactivity in eggs from hens injected with [3H]cholecalciferol. Labelled molecules were found throughout the egg, but the concentration of total radioactivity in albumin was only 5-7% of that in yolk. In lipid extracts of yolk, more than 90% of the radioactivity was as unchanged cholecalciferol and 5% as 25-hydroxycholecalciferol. Only about 3% of the radioactivity in albumin was chloroform-soluble, and of this 40% was 25-hydroxycholecalciferol and 15% was cholecalciferol. Evidence is presented to support the idea that the specific transport of cholecalciferol into yolk is mediated by a cholecalciferol-binding protein in blood. This protein forms a complex with yolk proteins in transit from liver to ovary via the blood. A cholecalciferol-binding protein, chromatographically similar to that from blood, was found in egg yolk. It is postulated that cholecalciferol forms part of a complex with its specific binding protein, Ca2+ and the yolk phosphoprotein, phosvitin. This complex is then incorporated into yolk by the thecal cells of the ovarian follicle.

Animals

Production and properties of vitamin-D-induced mRNA for chick calcium-binding protein.

1. Calcium-binding protein synthesis on chick intestinal polysomes is induced within 2 h of injecting vitamin-D-deficient birds with 1,25-dihydroxycholecalciferol. The induction is short-lived: the maximum output of the binding protein is reached by 13 h after hormone injection, and declines rapidly thereafter. 2. This induction of calcium-binding protein synthesis occurs by the production of active mRNA for the protein. The sedimentation coefficient of this mRNA in denaturing conditions is 18 S, equivalent to a molecular weight of approximately 700000, and the molecule contains a tract of polyadenylate. 3. Both polysomal and poly(A)-containing RNA extracted from intestinal polysomes stimulate the synthesis of a range of proteins (up to 70000 molecular weight) by the wheat germ cell-free system. Immunoprecipitable calcium-binding protein is translated from RNA obtained from 1,25-dihydroxycholecalciferol-dosed birds but not from control birds. This calcium-binding protein is the same size (27000 molecular weight) as authentic chick calcium-binding protein; No other proteins are specifically precipitated by the antiserum. Thus in chickens 1,25-dihydroxycholecalciferol-induced calcium-binding protein is not synthesised via any precursor molecule. The implications of this result are discussed.

Amino Acid Sequence

Structural features of encephalomyocarditis virus RNA from analysis of reverse transcription products.

The presence in encephalomyocarditis (EMC) virus RNA of homonucleotide tracts 10 nucleotides or more in length has been investigated by testing the ability of homo-oligodeoxynucleotides to prime DNA synthesis in the reverse transcriptase from avian myeloblastosis virus. Neither (dC)10 nor (dA)10 promoted incorporation of [3H]deoxynucleotides into acid-insoluble material but (dG)10 and (dT)12-18 were effective primers and produced DNA products approximately 2000 nucleotides in length. We conclude that there are single-stranded oligo(rC) and oligo(rA) tracts in native EMC virus RNA at 37 degrees C. Kinetic analysis indicated that oligo(dT) priming is similar to priming on ovalbumin mRNA and that it gives rise to only one DNA product per template molecule. Oligo(dG) priming appears to be complicated by self-aggregation of the primer. Oligo(dT)-primed and oligo(dG)-primed DNA have both been separated on alkaline-sucrose gradients into two peaks of which only the 'heavier' will hybridise to EMC virus RNA. Competitive hybridisation experiments indicate that the 'heavy' oligo(dT)-primed and oligo(dG)-primed DNA fractions hybridise to overlapping sequences of EMC virus RNA and place the priming regions of EMC virus RNA approximately 500 nucleotides apart during reverse transcription.

Encephalomyocarditis virus