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R Barbieri

Publications and source records attributed to R Barbieri.

At least 73 records · Page 4Linked to original sources

Induction of murine erythroleukemia cell differentiation by proteinases is inhibited by aromatic poly-amidines.

The effects of the tetra benzamidine serine-proteinase inhibitor 1,3-di-(p-amidinophenoxy) -2,2- bis- (p-amidinophenoxymethyl)propane (TAPP-H) and related compounds, including halo-derivatives, were determined on the erythroid differentiation of murine erythroleukemic cells induced by trypsin and kallikrein. These aromatic poly-amidines and their halo derivatives were found to be strong inhibitors of both trypsin and kallikrein mediated induction of commitment of MEL cells to erythroid differentiation, hemoglobin synthesis and accumulation, globin mRNA production. No inhibitory effects were detected by treating proteinase-induced MEL cells with benzamidine. Only slight inhibitory activity was found after treatment of trypsin-induced MEL cells with other antiproteinase compounds widely used in the control of proteinase-dependent functions, including leupeptin, antipain and Bowman-Birk proteinase inhibitor. MEL cells induced to erythroid differentiation by proteinases could be proposed as an experimental system to test the biological activity of proteinase inhibitors.

Amidines↗

Isolation and characterization of a K562 cell line resistant to 1-beta-D-arabinofuranosylcytosine-mediated erythroid induction.

The isolation of a K562 cell line, K562(S)R, resistant to 1-beta-D-arabinofuranosylcytosine (ara-C)-mediated erythroid induction, is described. Ara-C (10-50 microM) inhibits cell growth of K562(S)R cells but is not able to activate the program of erythroid induction. This failure is associated with the lack in the increase of accumulation of epsilon-globin and gamma-globin mRNA sequences in ara-C-treated K562(S)R cells. This cell line could be of interest for studies focused on molecular mechanisms of activation of globin genes in K562 cells.

Azacitidine↗

Induction to erythroid differentiation of K562 cells by 1-beta-D-arabinofuranosylcytosine is inhibited by iron chelators: reversion by treatment with hemin.

Erythroid differentiation of human leukemic K 562 cells is inhibited by the iron chelator desferrioxamine (DF). In addition, desferrioxamine induces an increase of uptake of hemin. When hemin is added to the culture medium, the DF-mediated inhibitory effects on erythroid induction are reversed. Briefly, hemin allows hemoglobin synthesis by K 562 cells induced to erythroid differentiation by 1-beta-D-arabinofuranosylcytosine (ara-C) and treated with 12.5 micrograms/ml DF. In addition, it was found that hemin treatment leads to a reversion of inhibition of K 562 cell proliferation mediated by 50-75 micrograms/ml DF. This effect of hemin was also detected in other cultured human tumor cell lines (B-lymphoid, erythroleukemic and from breast carcinomas, melanomas and kidney carcinomas).

Cell Differentiation↗

A 119Sn Mössbauer spectroscopic study on the interaction of dimethyltin (IV) derivatives with rat hemoglobin, and of related model systems in aqueous solution.

In the context of a study of the molecular basis of the antileukemia (murine) activity of diorganotin (IV) compounds, the interaction with rat hemoglobin (selected as a model protein) of the representative terms dimethyltin dichloride, dimethyltin glycylglycinate (Me2SnGlyGly), and dimethyltin L-cysteinate (Me2Sn-Cys) has been investigated by 119Sn Mössbauer spectroscopy. In order to possibly determine the reaction pathway, aqueous model systems in Hepes buffer at pH 7.4 were also considered. The structural characteristics of reactants and products were advanced on the basis of semiempirical calculations of Mössbauer nuclear quadrupole splitting parameters, delta E, by the point-charge model approach. In aqueous Hepes at pH 7.4, evidence was obtained for the formation of the five-coordinated species, trigonal bipyramidal type (tbp), Me2Sn(OH)2.Hepes(II), Me2Sn(OH)(GlyGly).Hepes(III), and Me2Sn(OH)Cys(IV) (see Fig. 1). Equatorial groups or atoms would be the Me radicals, as well as OH, N(peptide), and S(thiol), respectively. Hepes would coordinate to tin in axial position through the tertiary amino nitrogen, while cysteine would behave as a bidentate chelating agent, with an axially located amino group. Species (II), (III), and (IV) react with cysteine in aqueous Hepes at pH 7.4, yielding Me2Sn(OH)Cys(IV), as well as Me2SnCys2(V), where tin would be embedded into a tbp structure due to one cysteine probably chelating (equatorial S thiol and axial amino nitrogen), and one monodentate through S thiol. Species (II), (III), and (IV) react analogously with rat hemoglobin, primarily through the S thiol of a cysteine side chain, yielding pellets where the environment of tin could be tetrahedral, such as in Me2Sn(OH)(S thiol), (VI), and tetrahedral (IX) or tbp (V) in Me2Sn(Cys)(S thiol), where Cys would act either as chelating or monodentate. Further reaction of (VI) and (IX) could involve imidazole nitrogen atoms, N het, of histidine side chains, forming tetrahedral Me2Sn(S thiol)(N het), (VIII), or tbp Me2Sn(OH)(S thiol)(N het), (VII), and Me2Sn(Cys)(S thiol)(N het), (V) (see Figs. 1 and 5).

Animals↗

Differential effects of benzamidine derivatives on the expression of c-myc and HLA-DR alpha genes in a human B-lymphoid tumor cell line.

In this paper, we report the effects of aromatic tetra amidines (TAPP-H) on cell growth and gene expression of a B-lymphoid human tumor cell line, WI-L2. The results obtained give evidence (a) for inhibition of cell proliferation by TAPP-H; (b) for stronger antiproliferative activity of TAPP-halo derivatives; (c) for TAPP-mediated inhibition of accumulation of c-myc RNA sequences but not of HLA-DR alpha mRNA and DR antigens. These results suggest that this class of antiproliferative compounds exhibit differential effects on cell-cycle specific and differentiation specific genes. In addition, also TAPP-related compounds containing 2 (DAPP) or 3 (TAPB) benzamidine residues retain inhibitory activity on the proliferation of WI-L2 cells. These latter compounds might be proposed as useful substrate in the synthesis of drug-conjugated monoclonal antibodies or growth factors.

Amidines↗

Clustering of undermethylated CCGG and GCGC sequences in the 5' region of the Ha-ras-1 oncogene of human leukemic K562 cells.

The methylation state of the CCGG and GCGC sites of the Ha-ras-1 oncogene was analysed in the human leukemic K562 cell line, which was found to actively transcribe this gene. The results obtained demonstrate that the Ha-ras-1 oncogene is extensively methylated in both exonic, intronic, VTR and 3' untranslated portions, while undermethylations are present in a CG-rich island localized upstream of exon 1, near putative transcription initiation signals. Treatment of K562 cells with 5-azacytidine induces undermethylation of the Ha-ras-1 oncogene without major differences in the accumulation of Ha-ras-1 mRNA transcripts.

Base Sequence↗

Regulation of the expression of class II genes of the human major histocompatibility complex in tumor cells.

The control of expression of human class II MHC genes has been studied in lymphoid and melanoma cells. Specific unmethylation of all restriction sites nearby the promoter regions has been detected in all cell lines and tissues studied, irrespective of their ability to express class II MHC products. The main functional role of DNA methylation appears, on the contrary, to be the regulation of a fraction of the nucleotide polymorphism of class II MHC genes. Constitutive expression of these genes can be modified by recombinant IFN-gamma and by the demethylating agent 5-azacytidine. Both the modifiers differentially regulate the levels of class II MHC and invariant chain products. In melanoma cells IFN-gamma derepresses transcription of a 1.2-Kb HLA-DR alpha mRNA, but does not affect the levels of a 0.8-Kb HLA-DR alpha specific mRNA. These molecular changes are triggered by IFN-gamma through a protein-synthesis-dependent pathway.

Azacitidine↗

c-myc oncogene alterations in human thyroid carcinomas.

A possible role of the c-myc oncogene in the neoplastic transformation of the human thyroid has been investigated. The structure, the methylation status, and the copy number of this oncogene have been analyzed in normal and in tumor thyroid DNAs by Southern blotting technique and dot blot hybridization. Among six carcinomas, four presented abnormal c-myc DNA structure: Three cases showed a mutation in the 5' flanking region of the gene, originating a new EcoRI site; the other case showed a deletion of 5 kb involving the first exon of the gene. This deletion was also observed in the white blood cells of the same individual. In addition, in three carcinomas a double dose of the oncogene has been demonstrated. In all the carcinomas examined, undermethylation of the c-myc oncogene has been observed. These findings suggest that c-myc oncogene alterations might be involved in the malignant transformation of the human thyroids and can be considered as tumor markers.

Base Sequence↗

Localization of beta-hydroxysteroid dehydrogenase in Anguilla anguilla testis.

The histochemical reaction for 3 beta-hydroxysteroid dehydrogenase was applied to glutaraldehyde fixed eel testis and successively processed for transmission electron microscopy. The reaction product was found only on the smooth endoplasmic reticulum and in the intermembrane space of mitochondria of the Leydig cells of hCG treated silver eels. The positive cytochemical reaction appears to be coupled with an enlargement of the Leydig cells and an increase of their smooth endoplasmic reticulum.

3-Hydroxysteroid Dehydrogenases↗

Inhibition of hemoglobin accumulation by monoclonal antibodies to the human transferrin receptor is reversed by hemin.

We have studied the effects of hemin on the inhibition of K562 cell erythroid differentiation mediated by a monoclonal antibody to the human transferrin receptor. In the absence of hemin, the monoclonal antibody 42/6 suppresses the increase of hemoglobin accumulation induced by butyric acid or 5-azacytidine (5-azaCR). In contrast, in the presence of hemin, the hemin-resistant K562(h) cell line is induced to hemoglobin production by treatment with 5-azaCR even in the presence of the monoclonal antibody to human transferrin receptor. The results obtained suggest (1) that the human leukemic K562 cells treated with monoclonal antibodies to human transferrin receptor might retain molecular properties similar to those found in erythroid cells from subjects affected by alterations of iron metabolism, and (2) that hemin might allow hemoglobin synthesis in erythroid cells whose iron uptake is inhibited by monoclonal antibodies to human transferrin receptors.

Animals↗