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Biomedical subjects

M Beato

Publications and source records attributed to M Beato.

At least 181 records · Page 10Linked to original sources

Purification and properties of rabbit uterus preuteroglobin mRNA.

The mRNA for preuteroglobin, a precursor of the hormonally induced protein uteroglobin, has been partially purified from the endometrium of progesterone treated rabbits. The purification procedure starts with total endometrial polysomes and involves treatment with proteinase K and dodecylsulfate, chromatography on oligo(dT)-cellulose, sucrose density gradient centrifugation, electrophoresis in polyacrylamide gels containing dodecylsulfate, and a second absorption to oligo(dT)-cellulose. The final mRNA preparation codes exclusively for preuteroglobin in a wheat germ cell-free system and migrates as a single band in polyacrylamide gels containing 99% formanide. The average length of the poly(A) segment is 60 nucleotides and the translation of the preuteroglobin mRNA is inhibited by m7G(5')ppp(5')A, indicating that it contains a "capped" 5'-terminus. Comparison with known standards yields a molecular weight of 200,000 (600 nucleotides) for preuteroglobin mRNA, approximately twice as many nucleotides as required for encoding the 90 aminoacids of its cell-free product.

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Translation of the mRNA for rabbit uteroglobin in cell-free systems. Evidence for a precursor protein.

Uteroglobin, an hormonally induced protein composed of two similar subunits, represents around 50% of the proteins synthesized and secreted into the uterine lumen of rabbits treated sequentially with estradiol and progesterone. The endometrium of these animals was used as a source for the isolation of the mRNA for uteroglobin. Poly(A)-rich RNA, extracted from purified polysomes with phenol chloroform and isolated on oligo(dT)-cellulose columns, contains one fourth of the total protein coding activity of the endometrium. Between 20--25% of the polypeptides synthesized by this RNA in cell-free systems derived from Krebs II ascites cells or wheat germs react with a monospecific antiserum prepared in guinea pigs against uteroglobin. The material bound to the antibody was identified as a precursor of uteroglobin according to the following criteria. 1. The product synthesized in vitro can be displaced from the complex with the specific immunoglobulin by purified uteroglobin. 2. Analysis of the immunoprecipitate on polyacrylamide gels containing urea and dodecylsulfate demonstrate the existence of a single labelled polypeptide with an apparent molecular weight larger than the uteroglobin subunits. 3. The tryptic digest of this polypeptide, labelled in vitro with [3H]lysine, shares seven peptides with mature uteroglobin labelled with the same amino acid in perfused uteri, and exhibits and additional peptide not present in uteroglobin. 4. Injection of the same mRNA preparation into Xenopus oocytes results in the production of uteroglobin. The endometrium of intact animals treated with estradiol alone also contains the same mRNA bound to polysomes but in a smaller proportion, indicating that the progesterone-induced synthesis of uteroglobin is accompanied by an accumulation of the specific mRNA in the polysomes.

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Binding of progesterone to the proteins of the uterine luminal fluid. Identification of uteroglobin as the binding protein.

1. The uterine luminal fluid of rabbits treated with estradiol and progesterone contains a protein factor with high affinity for [3-H] progesterone which is not present in the uterine secretion of control rabbits treated with estradiol. 2. This progesterone dependent factor is shown by gel filtration and polyacrylamide gel electrophoresis to be identical with the uterus specific protein uteroglobin, which seems to be required during the preimplantation phase. Uteroglobin specific antiserum, prepared in guinea pigs, completely inhibits the progesterone binding activity of the proteins of the uterine fluid. 3. Progesterone binding to uteroglobin is dependent upon millimolar concentrations of dithioerythritol. At saturation, one molecule of progesterone binds per uteroglobin molecule and the apparent association constant is 2 x 10-6 M-1 at 0 degrees C. 4. The progesterone binding species of uteroglobin exhibits a molecular weight of around 12 000 on polyacrylamide gels containing dodecylsulfate, and of 15 000 upon gel filtration, indicating a non-globular shape. This molecule is compased of two subunits of similar molecular size which are held together by a disulfide bridge among other forces.

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Cell-free translation of the globin message within polydisperse high-molecular-weight ribonucleic acid of avian erythrocytes.

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.

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