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Biomedical subjects

A Fantoni

Publications and source records attributed to A Fantoni.

At least 73 records · Page 4Linked to original sources

Molecular cloning of DNA sequences coding for mouse embryonic globins.

Yolk sac derived erythroid cells in mouse embryos synthesize four embryonic globins of which two are alpha-like and two are beta-like. Pure globin messenger RNAs from these cells were used as templates for two successive polymerizing reactions and a mixture of double stranded cDNAs coding for the four globins was obtained. These molecules were blunt-end ligated to an ECoR1 digested pBR322 plasmid and the recombinant plasmids were used to transform E. coli Hb101. Bacterial clones which proved positive upon hybridization with 32P-labelled embryonic globin cDNA were amplified and their plasmid DNA was isolated. Three different plasmids were studied, namely no. 2, 16 and 54. The restriction map of these plasmids showed that: 1) plasmid no. 2 and 54 had lost extensive DNA sequences comprising the genes responsible for tetracycline resistance; 2) the size of inserted sequences ranges from 427 base pairs of plasmid no. 16 to about 280 base pairs of plasmid no. 54; 3) plasmid no. 2 does not share any of the studied restriction sites with the other plasmids, while no. 2 and 54 have at least one site in common. The coding properties of inserted DNA were determined by positive hybrid translation showing that no. 2 codes for the alpha-like embryonic chain x, while no. 16 and 54 code for a beta-like embryonic chain, either y or z.

Animals↗

Embryonic hemoglobins in man and other mammals.

This report attempts to review the present state of research on embryonic hemoglobins in humans and other mammals from a cytologic, molecular, and clinical point of view. In all mammals, the yolk sac is the site responsible for the "primitive" erythropoiesis, which produces an erythroid population characterized by peculiar cytologic features and globin gene expression. Morphological and molecular events that underlie prenatal erythropoiesis are described herein giving rise to questions regarding biology at large (i.e., the differential activity of genes capable of similar functions); molecular biology of eukaryotic genes (i.e., globin gene organization and structural subtleties); and clinical hematology (i.e., syndromes associated with the appearance of embryonic hemoglobins.

Aneuploidy↗

Control of globin gene expression in mouse yolk sac erythroid cells.

In the present paper are reported results from our laboratory and data of the literature on the structure and the expression of embryonic globin genes in mouse fetuses. The following aspects are presented: 1. Erythropoiesis and synthesis of globin chains in fetal mice. 2. The transcriptional and post-transcriptional control of embryonic globin gene expression. 3. The chromosomal location and organization of mouse embryonic globin genes.

Animals↗

Expression of erythroid differentiation and terminal cell division in induced Friend leukemia cells.

Hexamethylenebisacetamide and hemin are both inducers of Friend leukemia cells to express globin genes. In Friend leukemia cells treated with hexamethylenebisacetamide the accumulation and translation of globin mRNA and the accumulation of hemoglobin are associated with terminal cell division. As hemin does not induce the expression of the set of genes responsible for terminal cell division, the relationship between cell cycle and globin gene expression was investigated during the late differentiation of Friend leukemia cells treated with hemin. Our results demonstrate that terminal cell division is not necessarily performed in cells which accumulate both globin mRNA and hemoglobin, suggesting that these features are not necessarily coupled in leukemia erythroid differentiation.

Acetamides↗

Translational discrimination between embryonic and adult mouse globin mRNAs in the rabbit reticulocyte lysate system.

In the present study mouse adult (alpha, beta) and embryonic globin (x, y, z) mRNas are compared for their capacity of being translated in a micrococcus nuclease treated rabbit reticulocyte lysate. The results of these experiments indicate that: 1) alpha and beta adult RNAs are translated with a higher efficiency as compared to the alpha-like and beta-like embryonic mRNAs; 2) adult beta and embryonic beta-like messengers are translated more efficiently than their corresponding adult alpha and embryonic alpha-like messengers; 3) the alpha/beta synthetic ratio, both for adult and embryonic globins is highly dependent upon the concentration of globin mRNAs. For embryonic globins the ratio decreases from 0.21 at low mRNA concentration to 0.11 at high mRNA concentration. For adult globin mRNAs the alpha/beta chain synthetic ratio decreases from 1.4 to 0.9 within the same range of concentration.

Animals↗

Construction of a recombinant bacterial plasmid containing DNA sequences for a mouse embryonic globin chain.

Messenger RNAs for mouse embryonic globins were purified from yolk sac derived eyrthroid cells in mouse fetuses. Double stranded DNAs complementary to these messengers were synthesized and blunt end ligated to a EcoRI digested and DNA polymerase I repaired pBR322 plasmid. Of the ampicillin resistant transformants, one contained a plasmid with globin-specific cDNA. The inserted sequence is about 350 base pairs long. It contains one restriction site for EcoRI and one restriction site for HinfI about 170 and 80 base pairs from one end. The insert is not cleaved by HindIII, HindII, BamHI, PstI, SalI, AvaI, TaqI, HpaII, BglI. A mixture of purified messengers coding for alpha chains and for x, y and z embryonic chains was incubated with the recombinant plasmid and the hybridized messenger was translated in a mRNA depleted reticulocyte lysate protein synthesizing system. The product of translation was identified as a z chain by carboxymethylcellulose cromatography. The recombinant plasmid is named "pBR322-egz" after embryonic globin z.

Animals↗

Nuclear RNA sequences coding for alpha and beta globins in erythroid cells: evidence for multiple intermediate molecules.

The poly (A)-containing nuclear RNA from dimethylsulfoxide-induced Friend leukemia cells was fractionated by acrylamide gel electrophoresis in denaturing conditions and analyzed for alpha and beta globin RNA sequences. The results indicate that nuclear RNA contains one species of large-size RNA (0.6 X 10(6) daltons), which is the putative precursor for beta globin mRNA only. In addition, it was shown by electrophoretic analysis that the complex of RNA molecules not resolved by sucrose gradient centrifugation (11S) comprises sequences of decreasing size (0.34, 0.28, and 0.26 X 10(6) daltons), which might be the precursors of alpha and beta globin mRNA.

Erythrocytes↗

Isolation and characterization of the messenger RNAs for mouse embryonic globin chains.

Messenger RNAs for mouse embryonic globins were purified from yolk sac erythroid cells by oligodeoxythymidilate-cellulose chromatography and sucrose density centrifugation. Full-sized complementary DNA copies of embryonic globin mRNAs were synthesized. Acrylamide gel electrophoresis of these RNAs indicate an average molecular weight of 220 000, including a polyadenylated sequence of about 35 residues, as determined by hybridization to [3H]polyuridylate. The wheat-germ translation products of mRNAs have the size and the ionic characteristics of the four embryonic globin chains alpha, x, y and z. Hybridization kinetics in vast RNA excess were performed and compared to standard r0t curves of adult globin messengers, demonstrating a total base sequence complexity of about 880 000 daltons, that is four different RNA sequences of 220 000 molecular weight. The titration of embryonic globin cDNAs with increasing amounts of their complementary RNA templates indicates that the embryonic globin messengers were isolated at a high degree of purity.

Animals↗

Terminal stages of erythroid differentiation: persistent production of globin messenger RNA is necessary to sustain globin synthesis.

The kinetic relationship between the globin mRNA accumulation and the rate of synthesis of globin chains was studied during the terminal stages of differentiation in erythroid cells derived from the yolk sac of mouse fetuses. RNA derived from the whole cells and from different cell compartments were hybridized to DNA complementary to embryonic globin mRNA. The relative proportion of embryonic globin RNA molecules and their absolute number per cell were estimated on the 11th, 12th, and 13th days of mouse fetal development. During erythroid terminal differentiation globin mRNA became progressively predominant on polyribosomes along with the progressive specialization of cell functions. The number of embryonic globin RNA molecules per cell remained constant while yolk sac erythroid cells underwent two rounds of cell division. These data indicate that the transcription of globin genes is operative throughout the last stages of terminal differentiation and that there is no detectable storage of globin RNA sequences in these cells. The rates of accumulation of mRNA molecules and of globin synthesis both seem correlated to the length of the cell cycle.

Animals↗

Mouse satellite DNA isolated by Ag+ -- CsSO4 density gradients contains G+C rich, slow reassociating sequences.

Mouse satellite DNA sequences isolated by centrifugation in CS2SO4--Ag+ gradients are analyzed for buoyant density by CSCl density gradients and for their content of fast reassociating sequences by denaturation and partial reassociation. Our data suggest that in CS2SO4 gradients silver ions separate a satellite band which contains both fast reassociating G+C rich sequences and slow reassociating, A+T rich DNA sequences.

Animals↗

Polyribosomal structures inactive for protein synthesis present in erythroid cells during terminal stages of differentiation.

During the terminal stages of differentiation nucleated erythroid cells from the fetal mouse synthesize hemoglobin at a lower rate because after the last cycle of cell division about half of their polyribosomal structures are rendered inactive for protien synthesis though they maintain their aggregated shape. Partially inactive polyribosomes are tested in comparison with normal polyribosomes for the capacity to support polypeptide chain synthesis in cell-free conditions. The following observations are made: a) no difference is found for the profile on sucrose density gradients; b) partially inactive polyribosomes carry growing polypeptide chains in reduced amounts in comparison with active polyribosomes; c) partially inactive polyribosomes are not capable to release "run off" 80 S ribosomal monomers and to dissociate to active ribosomal subunits. These data are interpreted as the evidence for a block of chain termination producing inactivation of polyribosomes during the late maturation of nucleated erythroid cells.

Animals↗