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J Kruh

Publications and source records attributed to J Kruh.

At least 55 records · Page 3Linked to original sources

Effect of sodium butyrate on messenger RNA populations in myogenic cells in culture.

Sodium butyrate, when added in millimolar concentrations to a culture of myoblasts of the L6 cell line, inhibits reversibly cell proliferation and differentiation. The aim of this work was to study the effect of sodium butyrate on the nuclear and cytoplasmic RNAs in these cells. We have prepared (3H) DNAs complementary to cytoplasmic polyadenylated RNAs from treated and untreated cells and performed homologous and heterologous hybridizations with cytoplasmic polyadenylated RNAs and with total nuclear RNAs. The hybridization kinetics led to the following conclusions: a) Hybridization with nuclear RNAs shows that butyrate allows the transcription of most of the RNA sequences synthesized in proliferating myoblasts, including the sequences that are no longer synthesized in untreated myotubes. However some differences in the hybridization saturation levels indicate that sodium butyrate might modify the expression of a limited number of genes involved in cell proliferation, muscular differentiation, or both. b) Hybridization with cytoplasmic polyadenylated RNAs shows that sodium butyrate acts also at a post-transcriptional level, it produces a large decrease in the frequency of the abundant sequences present in untreated cells, but has little effect on the total number of different RNA species.

Animals↗

Effect of sodium butyrate on the hepatoma cell cycle: possible use for cell synchronization.

Exposure of HTC cells to sodium butyrate caused inhibition of growth. The site of growth inhibition was studied by time-lapse cinematography and [3H]thymidine incorporation studies. Evidence is presented that sodium butyrate affected the cell cycle at a specific point immediately after mitosis. Inasmuch as it does not modify the interphase duration after its removal, butyrate may be used for HTC synchronization.

Animals↗

Selective inhibition by sodium butyrate of glucocorticoid-induced tyrosine aminotransferase synthesis in hepatoma tissue-cultured cells.

Sodium butyrate in a 5 mM concentration prevents the induction of tyrosine aminotransferase in hepatoma culture cells, without affecting the basal level of the enzyme. This effect is reversible immediately after the removal of butyrate, or after a lag, if butyrate was present for more than 2 h. Neither the amount of cellular RNA nor the rate of total RNA synthesis were affected by sodium butyrate. Furthermore, butyrate does not inhibit protein synthesis: [35S]methionine incorporation into proteins, measured in a reticulocyte lysate system, shows no significant difference between the translation capacity of the RNAs from butyrate-treated cells and from dexamethasone-induced or uninduced cells. Nevertheless, when tyrosine aminotransferase was isolated from the translation products by its specific antiserum and analyzed by gel electrophoresis, we observed that the amount of the enzyme synthetized in the presence of RNAs from dexamethasone/butyrate-treated cells was strongly diminished relative to that synthesized in the presence of RNA from dexamethasone-induced cells. These experiments indicate that the treatment of the cells with butyrate decreases the activity of the specific messenger RNA for tyrosine aminotransferase to a level close to the basal level.

Animals↗

Changes in some chromatin and cytoplasmic enzymes of perinatal rat hepatocytes during culture.

Hepatocytes prepared from rats at various perinatal stages were cultured in selective medium that does not allow fibroblastic cell growth. Cell population remained homogeneous during the culture. Hepatocytes undergo divisions for a period, which varies according to the stage of development of the rat. Light and electron microscope observations showed the presence of numerous cytoplasmic organelles; moreover, hydrocortisone-induced structures similar to bile canaliculi. Chromatin protein kinase decreased rapidly during culture except in samples prepared from 17-day fetuses in which it remained unchanged for 2 days and decreased to a lesser extent afterwards. Chromatin nonhistone proteins were incubated with (gamma-32P) ATP and the phosphorylation pattern analyzed on polyacrylamide gels. Many radioactive peaks were observed in chromatin proteins from 17-day fetuses; they were much lower in proteins than 19-day fetuses. The phosphorylation pattern was analyzed in hepatocytes after 2 days of culture. Many radioactive peaks were observed with proteins from hepatocytes taken from 17-day fetuses; no radioactivity was observed in proteins from 19-day fetuses. This is in contrast with the absence of radioactive peaks in chromatin proteins from adult rat hepatocytes. In cytoplasm, aldolase and pyruvate kinase specific activities varied according to the age of the rat. They strongly decreased during culture except in hepatocytes and 15- and 17-day fetuses, in which they remained stable for a least 5 days. The stability of chromatin and cytoplasmic enzymes in hepatocytes from 17-day fetuses could result from their ability to be regulated by hormones that are secreted at this stage of development.

Adenosine Triphosphate↗

Early reversible nuclear alterations induced by sodium butyrate in cultured hepatoma cells.

Exposure of HTC cells to sodium butyrate caused various cellular and subcellular changes. A high proportion of the cells became elongated or spherical after 48 h. Already after 1-4 h, nucleoli appeared modified as shown by changes in the distribution of their components. Progressively, most of the cytoplasmic components were altered, suggesting an effect of butyrate on membranes. Most of the butyrate-induced modifications disappeared 1-2 days after transfer of the cells into a normal medium.

Animals↗

Localization of phosphoproteins and of protein kinases in chromatin from hepatoma tissue-cultured cells.

An important role in the control of gene expression has been attributed to phosphoproteins present among chromatin non-histone proteins. In a previous work we have shown that at least part of these phosphoproteins are associated with nucleosomes. In this work we wanted to establish whether this association occurs with all nucleosomes or with the nucleosomes present in fragments preferentially released by a mild micrococcal nuclease digestion, which originated essentially from active parts of chromatin. Phosphoproteins were labelled in vivo by incubating hepatoma tissue-cultured cells with [32P]phosphate and chromatin was submitted to a limited micrococcal nuclease digestion. The released fragments were fractionated by preparative gel electrophoresis. [32P]Phosphoproteins were essentialy found in the smallest released fragments: monomers and dimers of nucleosomes. The same result was obtained when the phosphoproteins were labelled in vitro by incubating each fragment obtained by the preparative electrophoresis in the presence of [gamma-32P]ATP. It indicates that part of the protein kinase activity was strongly bound to the particles. The bound phosphoproteins were analysed by sodium dodecylsulfate/polyacrylamide gel electrophoresis. Two main polypeptides were characterized: phosphopeptide a, Mr 41000, present in all small fragments; phosphopeptide b, Mr 31000, present in all small fragments, except in the fastest moving nucleosomes. Phosvitin kinase was found associated with the small released fragments, its specific activity was by far the highest in the fraction which includes the dimers of nucleosomes. It is concluded that phosphoproteins and protein kinases are associated with the nucleosomes of the active parts of chromatin, which suggests a role of these proteins in the control of gene expression.

Animals↗

Hepatocyte chromosomal non-histone proteins in developing rats.

Rat hepatocytes taken a different stages of the perinatal period were partially purified. On sodium dodecylsulphate acrylamide electrophoresis chromosomal non-histone proteins showed important variations in complexity during development. Chromosomal phosvitin kinase strongly increased during the last days of fetal life; it strongly decreased just after birth and increased again for a short time, while the cytosol phosvitin kinase increased more significantly after birth. Chromosomal non-histone proteins prepared at varoius stages were incubated with [gamma-32P]ATP and resolved on polyacrylamide gel. The incorporation was very low in sample taken at the 15th say of the fetal life. A dramatic increase was observed at the 17th day. This incorporation strongly decreased in the samples taken thereafter and it was negligible in proteins from adult rats. The variations in protein kinase and in 32P incorporation into non-histone proteins were correlated with the pattern of appearance of enzymes in this period of life, with cell growth and with the hormone-induced maturation.

Aging↗

Variations in some molecular events during the early phases of the reuber H 35 hepatoma cell cycle. I. Glucocorticoid induction of tyrosine aminotransferase.

1. Reuber H 35 hepatoma cell cultures were syncrhonized by serum depletion of the growth medium for 72 hr, which results in arrest of the cells in the G0 or G1 phase of the cell cycle. 2. Induction of tyrosine aminotransferase by dexamethasone was studied. Induction along the cell cycle varies with respect to the sensitivity of the cell towards low hormone concentration and the maximum effect elicited by the hormone. 3. Scatchard analyses of receptor- [3H]triamcinolone binding was performed in cell extracts prepared from cells at various times of G1 and S. Variations were observed in the concentration of glucocorticoid receptor as well as in the affinity of the receptor for the hormone. 4. During the latter part of the cell cycle, variations in the concentrations of the receptor could not explain the variation in enzyme induction, since the maximum rate of induction decreased while an increase in receptor activity still occurred.

Animals↗

Variations in some molecular events during the early phases of the Reuber H 35 cell cycle. II.-Chromatin protein phosphorylation and protein kinases.

Reuber H 35 hepatoma cells were synchronized by transfer in a serum free medium. Growth was re-initiated by addition of serum. Under these conditions DNA synthesis exhibited a maximum after 24 hours. Chromatin non-histone proteins prepared from cells at various phases of the cell cycle were incubated with [gamma-32P] ATP and the radioactive pattern of protein bound 32P was analysed by electrophoresis on polyacrylamide gels. No radioactive peak was observed in G0. Several peaks appeared 3 hours after the addition of serum. The radioactivity progressively increased until the cells reached the S phase. When most of the cells were in the S phase the radioactivity strongly decreased. Chromatin protein kinase activities were found to increase in late G1 and continued to increase in the S phase. The increase was 65% when phosvitin was the substrate, 100% with casein and histone H1. It is suggested that chromatin phosphorylated proteins could be involved in the mechanism which initiates DNA synthesis in G1 phase cells.

Animals↗

Comparison of non histone proteins selectively associated with nucleosomes with proteins released during limited DNase digestions.

Cultured mammary cells from GR mouse were used to analyse proteins associated with the mononucleosomes and released by a short micrococcal DNase treatment of nuclei. On metrizamide density gradients, mononucleosomes appear to be heterogeneous according to their content of associated non-histone proteins. Proteins associated with the denser fraction (1.22 - 1.24 g/ml) were analysed by two dimensional electrophoresis and compared to the proteins released by DNase I treatment. All the proteins associated with mononucleosomes were also released by DNase I treatment. It could then be assumed that these proteins are associated with the active part of the genome. Additional proteins were released by micrococcal DNase treatment of the nuclei. They could be involved in a higher order organization of chromatin.

Animals↗

Conformation of DNA in chromatin protein-DNA complexes studied by infrared spectroscopy.

The following observations concerning the DNA secondary structures in various nucleohistone complexes were made by infrared spectroscopy: 1/ in chromatin, chromatin extracted by 0.6 M NaCl, nucleosomes, and histone-DNA reconstituted complexes, the DNA remains in a B type conformation at low relative hygrometry; 2/ in chromatin extracted by tRNA and in non histone protein-DNA reconstituted complexes, the DNA can adopt an A type conformation. Infrared linear dichroism data show that in NHP-DNA complexes the low relative hygrometry conformation of DNA may be modified and that the infrared parameter -1090 is close to that measured for RNA's or DNA-RNA hybrids. It is concluded that the histones block the DNA in a B form and that some of the NHP could be involved in the control of the secondary structure of DNA in chromatin.

Animals↗