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S Ellis

Publications and source records attributed to S Ellis.

At least 253 records · Page 14Linked to original sources

Who are we?

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Aggression↗

A touch of guilt?

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Bangladesh↗

Characterization of Azotobacter vinelandii deoxyribonucleic acid and folded chromosomes.

The properties of Azotobacter vinelandii deoxyribonucleic acid (DNA) and folded chromosomes were studied and compared to those of Escherichia coli as a standard. Based on melting temperature and buoyant density measurements, the guanosine + cytosine content of purified A. vinelandii DNA was 65%, whereas that of E. coli DNA was 50%. The results of renaturation studies showed that the unique DNA sequence lengths of the two organisms were similar with Cot1/2 values of 7.3 +/- 0.4 mol.s/liter and 7.5 +/- 0.3 mol.s/liter, respectively, for A. vinelandii and E. coli. Folded chromosomes of A. vinelandii sedimented in a centrifugal field at a rate identical to those derived from E. coli, 1,600 to 1,700S. Based on the DNA content per cell and the mass of a single genome, A. vinelandii contains at least 40 chromosomes per cell.

Azotobacter↗

Growth hormone control of glucose oxidation pathways in hypophysectomized rats.

An in vivo response of glucose oxidation to growth hormone has been demonstrated. Hypophysectomized rats were found to oxidize glucose at rates significantly higher than normal rats. Treatment with growth hormone 1 h before injection of 14C-U-glucose, 14C-6-glucose, or 14C-1-glucose caused a return to a normal oxidation pattern. This acute response was independent of insulin action but clearly time-dependent since no change from untreated hypophysectomized rats appeared when growth hormone was given at various times prior to administration of labeled glucose. The response observed for 14C-6-glucose was comparable to that observed for 14C-1-glucose with regard to dynamics but differed with respect to total 14C recovered as 14CO2. The cumulative percent 14CO2 recovered from oxidation of 14C-6-glucose 1 h after growth hormone injection exceeded that recovered from oxidation of 14C-1-glucose. These results suggest a change in glucose oxidation by a route that cannot be explained solely by changes in either the hexose monophosphate or Embden-Meyerhof pathways.

Animals↗