Isolation on cellulose of ovalbumin and globin mRNA and their translation in an ascites cell-free system.
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Biomedical subjects
Publications and source records attributed to P Feigelson.
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Highly purified RNase H (RNA.DNA hybrid ribonucleotidohydrolase, EC 3.1.4.34) from calf thymus was used to specifically remove the poly(A) sequences of purified rabbit globin mRNA after its hybridization with poly(dT). The deadenylylated globin mRNA was repurified by a one-step procedure including a nitrocellulose column. The poly(A) size and the content of unmodified mRNA were determined by hybridization with [(3)H]-poly(U), and it could be shown that the RNase H digestion method effectively removes this terminal poly(A) sequence. No difference in activity was found between mRNAs with and without poly(A) to initiate, elongate, terminate, and release newly synthesized globin chains in exogenous-mRNA-dependent, cell-free, protein-synthesizing systems from wheat embryo, ascites Krebs II cells, and rat liver. Furthermore, poly(A)-free globin mRNA competed with the same efficiency as authentic globin mRNA against chick ovalbumin mRNA when translated under total mRNA saturation conditions. It is apparent that the 3'-terminal poly(A) sequence is not necessary to maintain the translationally active secondary and tertiary configuration of the globin mRNA molecule. Preincubation of intact and deadenylylated globin mRNA in the Krebs II ascites translational system indicates that the presence of the poly(A) sequence may stabilize the translationally active mRNA molecule.
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Polydisperse high-molecular-weight RNA of nucleated avian erythrocytes includes sequences coding for globin chains. The RNA was extracted from immature erythrocytes of ducks and fractionated under denaturing conditions by sucrose density gradient centrifugation in 99% dimethylsulfoxide. The RNA sedimenting faster than 45 S was able to direct the synthesis of duck globins in the Krebs II ascites cell-free protein-synthesizing system. The newly synthesized globin molecules have been identified by their characteristic electrophoretic properties in polyacrylamide gels containing either urea or sodium dodecyl sulfate, and by immunoprecipitation of the released globin chains by rabbit antibodies against duck hemoglobin. In order to rule out the possibility of a contamination of the high-molecular-weight RNA with duck-globin messenger RNA tailing from the 9-10S region, rabbit-globin messenger RNA was added to duck RNA as an internal control. No rabbit-globin messenger RNA activity could be detected in the RNA fractions sedimenting faster than 45 S. It is concluded that high-molecular-weight RNAs in the nucleated erythroid cell contain sequences of globin messenger RNAs covalently attached to larger polynucleotide chains. These results support the view that polydisperse nuclear RNA is the precursor of the cytoplasmic messenger RNA fraction.
Messenger RNA from rat liver was partially purified by chromatography on cellulose on the basis of its poly(A) content. Microgram amounts of this RNA stimulate protein synthesis manyfold in a heterologous cell-free system, derived from Krebs ascites cells supplemented with reticulocyte initiation factors. The messenger RNA directs the initiation, synthesis, and release of a product that was identified as complete subunits of hepatic tryptophan oxygenase (EC 1.13.1.12) by immunoprecipitation with monovalent antibodies prepared against homogeneous tryptophan oxygenase and subsequent sodium dodecyl sulfate-polyacrylamide electrophoresis of the solubilized immunoprecipitate. This may represent the first complete translation in a heterologous system of a mammalian messenger RNA coding for an enzyme protein. Analysis of the messenger RNA content of the liver after glucocorticoid administration demonstrates that the hormonally enhanced rate of synthesis of tryptophan oxygenase is accompanied by an increased quantity of its corresponding messenger RNA.
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