A general method for heterokaryon identification using a BUdR/Hoechst technique.
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Biomedical subjects
Publications and source records attributed to F Gros.
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Using cDNA probes, we have analysed the sequence complexity and the frequency distribution of the polysomal poly(A)-containing RNA from neuroblastoma cells at two different developmental states: either as round, immature neuroblasts, or as differentiated cells exhibiting the morphological properties of mature neurons. The total complexities measured for mRNA from undifferentiated and differentiated cells are identical and correspond to approximately 7000 average-sized sequences of 1750 nucleotides distributed in the same three abundance classes. We have determined the homology between the mRNA populations corresponding to the two developmental states by heterologous cross-hybridization: all the sequence from differentiated cells are present in the polysomes of undifferentiated cells. Conversely, the mRNA from differentiated cells fails to hybridize with about 15% of hybridizable cDNA corresponding to undifferentiated cells. This difference probably results from the disappearance of some mRNA species and may be related to the terminal differentiation of neuroblastoma cells.
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We have analysed the poly(A)-containing RNA from neuroblastoma cells at two different developmental states: either as round, immature neuroblasts grown in suspension, or as differentiated cells exhibiting the morphological properties of mature neurons, when attached to a culture dish. Suspension-grown and monolayer cells were pulse-labelled with tritiated uridine. The profile of cytoplasmic poly(A)-containing RNA from suspension cells is highly heterogeneous with peaks ranging from 16-30 S. The profile obtained from differentiated cells appears somewhat distinct from the previous one. This is evidenced by a relative decrease in the 26-S peak and a virtual disappearance of the 16-S component. In order to compare the 'steady-state' patterns of poly(A)-containing RNA in these two developmental stages, polysomal RNA was prepared from unlabelled cells. Following sucrose gradient sedimentation, each fraction was hybridized to [3H]poly(U). Examination of the two RNA hybridization profiles reveals striking similarities suggesting that 'steady-state' messenger populations include, on the average, the same subspecies. The 16-S fraction, which was not observed after the pulse-labelling of the monolayer culture, is detected here by hybridization to [3H]poly(U) when using polysomal poly(A)-containing RNA from monolayer cells as substrate. These results suggest that terminal differentiation of neuroblastoma cells is not accompanied by major alterations of the transcription program and is paralleled by a marked stabilization of the 16-S species.
The ability of embryonic chicken muscle initiation factors to translate rabbit globin messenger RNA in an efficient, fractionated cell-free system has been examined. Although muscle factors stimulate leucine incorporation to only 15--35% the levels achieved with rabbit reticulocyte initiation factors, they synthesize more than one globin chain per mRNA molecule and both alpha and beta globin are produced. Increasing the ribosome concentration and adding the polyamine spermidine to the system produce stimulatory effects which are quantitatively and qualitatively similar for both factor preparations. The lower efficiency of synthesis of muscle factors relative to reticulocyte factors is also apparent when mRNA from encephalomyocarditis virus or embryonic chicken muscle polysomes are used in the cell-free system. These results do not support a specific restriction in the capacity of muscle factors to translate globin mRNA. Furthermore, the similarity of the effects of presumed non-specific components on the activity of muscle and reticulocyte factors suggests that globin synthesis in the cell-free system may be controlled in a similar fashion for both preparations.
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Specific gene transcription from chromatin has been examined in two different systems by using direct measurement of specific sequences by hybridization with excess DNA probe. An improved procedure has been used for hybridization of DNA immobilized on filters. This procedure is sensitive to less than one part in 10(5). Polyoma RNA sequences were detected a level of 0.004% in the overall transcript from chromatin of ts-a-transformed 3T3 fibroblasts. By the use of constructed plasmid DNA carrying rabbit globin sequences, globin RNA was titrated in the RNA transcribed from chromatin of bone marrow cells. Its relative frequency was 0.01%. Results obtained with this new approach confirm that DNA in chromatin is not randomly transcribed. They further illustrate that a reproducible assay system is now available for studying control elements active on gene expression at the transcriptional level, taking advantage of the constructed plasmids containing eukaryotic gene DNA fragments.
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Complementary DNA (cDNA) from Mengo virus RNA has been synthesized and used as a probe to measure the synthesis and accumulation of viral RNA in Mengo infected L cell cultures, treated or untreated with interferon. Under experimental conditions used (200 units interferon/ml and 50 virus plaque-forming units/cell) results show that there is some synthesis of Mengo virus RNA in cells treated with interferon. One hour after infection, treated cells contain three times less viral RNA than untreated cells; five hours after infection, this difference has increased to ten fold. As in the control, no fragmented Mengo virus RNA molecules were found in interferon treated cells. The smaller recovery of infectious particles from interferon treated cells as compared to RNA accumulation suggests that not only RNA accumulation is inhibited but also a step posterior in viral maturation.
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