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Biomedical subjects

M Rubini

Publications and source records attributed to M Rubini.

At least 37 records · Page 2Linked to original sources

Syntenic groups between human chromosome 9 and Indian muntjac chromosomes revealed by ZOO-FISH.

The recent techniques of chromosome painting allow the molecular comparison of chromosomes from distantly related mammals. Here we show a modified ZOO-FISH technique based on lower stringency which allows to identify syntenic regions between human and Indian muntjac chromosomes. While when probing with human chromosome 2, no consistent cluster of hybridization were observed, with human chromosome 9, a number of discrete fluorescent regions along the Indian muntjac chromosomes were found.

Animals↗

Rat glioblastoma cells expressing an antisense RNA to the insulin-like growth factor-1 (IGF-1) receptor are nontumorigenic and induce regression of wild-type tumors.

Insulin-like growth factor-1 (IGF-1) and IGF-2 are critical regulators of cell proliferation. The growth-promoting action of both ligands is mediated by the type 1 IGF receptor (IGF-1R). We have investigated the role of the IGF-1R in the growth and tumorigenicity of rat C6 glioblastoma cells. For this purpose, antisense RNA to IGF-1R RNA was introduced into cells by either the addition of oligodeoxynucleotides or by transfection with plasmids that express antisense RNA to IGF-1R RNA. At low cell density, C6 cells grew slowly in serum-free medium and proliferated with the sole addition of IGF-1 or IGF-2. Both antisense IGF-1R oligodeoxynucleotides and stable transfection with a plasmid expressing an antisense IGF-1R RNA inhibited IGF-1-mediated growth in monolayers and clonogenicity in soft agar. Sense oligodeoxynucleotides and sense-expressing plasmid had no effect on either parameter. In stable antisense transfectants, tyrosine-phosphorylated IGF-1 receptors were not detectable, although they were easily detected in wild-type cells. When wild-type C6 cells were injected s.c. into syngeneic immunocompetent rats, tumors developed within 1 week. In contrast, stably transfected C6 cells overexpressing antisense IGF-1R RNA were nontumorigenic. Moreover, when C6 IGF-1R antisense cells were injected, subsequent tumor formation by wild-type C6 cells was completely prevented. Finally, injection of C6 IGF-1R antisense cells into rats carrying an established wild-type C6 tumor caused complete regression of the tumors. The results demonstrate the critical importance of the IGF-1R in glioblastoma cell growth, clonogenicity, and tumorigenicity. Although the mechanism is presently unknown, the fact that the injection of C6 cells expressing an antisense RNA to IGF-1R RNA leads to regression of already established wild-type C6 tumors suggests the possibility of practical applications.

Animals↗

Platelet-derived growth factor increases the activity of the promoter of the insulin-like growth factor-1 (IGF-1) receptor gene.

Stimulation by platelet-derived growth factor (PDGF) is known to increase the number of IGF-I binding sites in cells in culture. We show here that PDGF also increases the levels of IGF-1 receptor mRNA. Using cell lines stably transfected with an expression plasmid in which the reporter luciferase gene is under the control of the rat IGF-1 receptor gene promoter, we find that PDGF increases the activity of this promoter. A short IGF-1 receptor gene promoter, comprising about 100 base pairs of the sequence immediately upstream of the initiation of transcription site, is sufficient for a response to the stimulatory action of PDGF. These results suggest that an increase in RNA levels and in promoter activity may play an important role in the increase in IGF-1 receptor levels that occurs after stimulation by PDGF.

3T3 Cells↗

The role of the IGF-I receptor in the growth and transformation of mammalian cells.

Recent developments in the molecular biology of the insulin-like growth factor I (IGF-I) receptor have clarified its role in cellular growth and transformation. Although cells homozygous for a targeted disruption of the IGF-I receptor genes can grow in serum-supplemented medium, the IGF-I receptor is required for optimal growth, and is required equally in all phases of the cell cycle. The receptor plays an even more stringent role in cellular transformation and tumorigenicity, which seem to be dependent on its normal expression in several cell types. The expression of both the IGF-I receptor and its ligands is regulated by other growth factors (especially PDGF and EGF), by oncogenes (like SV40 T antigen and c-myb) and by tumour suppressor genes (like WT1 and RB). The picture emerging from these studies is that several transforming agents may exert their growth promoting effects through the direct or indirect activation of the IGF autocrine loop.

Animals↗

Ethanol inhibits insulin-like growth factor-1-mediated signalling and proliferation of C6 rat glioblastoma cells.

BACKGROUND: Alcohol consumption during pregnancy often results in disorders of fetal development (Fetal Alcohol Syndrome). The brain appears to be particularly vulnerable, and alcohol abuse during pregnancy is probably the most common cause of acquired mental retardation. We therefore studied the in vitro effects of ethanol on insulin-like growth factor-1 (IGF-1)-mediated proliferation of rat C6 glioblastoma cells. EXPERIMENTAL DESIGN: The proliferation of C6 rat glioblastoma cells was measured in serum-free medium supplemented with specific growth factors in the presence or absence of ethanol. The effect of ethanol on IGF-1 receptor and insulin receptor substrate 1 (IRS-1) tyrosine phosphorylation was determined by immunoprecipitation and Western blotting, as was the phosphatidylinositol 3-kinase content within IRS-1 immunoprecipitates. RESULTS: C6 cells grew slowly in serum-free medium and proliferated in response to IGF-1. Ethanol, at physiologically tolerated concentrations, markedly inhibited the growth of C6 cells in response to IGF-1, but had no effect on the proliferative rate in the presence of platelet-derived growth factor or 1% fetal bovine serum. Inhibition of cell proliferation was evident when ethanol was only present during a 1-hour pulse of IGF-1. Cell growth in the presence of IGF-2 was also prevented by ethanol. The inhibition of IGF-1-mediated cell proliferation was accompanied by abrogation of IGF-1 receptor tyrosine autophosphorylation. Ethanol also interfered with the IGF-1-induced tyrosine phosphorylation of IRS-1, and the association of phosphatidylinositol-3 kinase with IRS-1. CONCLUSIONS: The data indicate that physiologically relevant concentrations of ethanol inhibit the responses of glial cells to IGF-1, including IGF-1 receptor autophosphorylation, IRS-1 and phosphatidylinositol-3 kinase activation, and cell growth.

Amino Acid Sequence↗

Simian virus 40 large tumor antigen is unable to transform mouse embryonic fibroblasts lacking type 1 insulin-like growth factor receptor.

Fibroblast cell lines were established from mouse embryos homozygous for a targeted disruption of the Igf1r gene, encoding the type 1 receptor for insulin-like growth factor I (IGF-I) and from their wild-type littermates. The cells from the wild-type embryos (W cells) grow in serum-free medium supplemented with platelet-derived growth factor, epidermal growth factor, and IGF-I, whereas the cells from Igf1r(-/-) embryos (R- cells) do not, although they grow at a reduced rate in 10% fetal calf serum. The simian virus 40 (SV40) large T antigen, expressed from a transfected plasmid, can transform W cells, which form foci in monolayer cultures and colonies in soft agar (anchorage-independent growth). In contrast, the SV40 large tumor antigen, although normally expressed from the transfected template, is unable to transform R- cells, which remain contact-inhibited and fail to grow in soft agar. The transformed phenotype is restored if the R- cells carrying the SV40 large tumor antigen are stably transfected with a plasmid expressing the human IGF-I receptor. These results demonstrate that signaling via the IGF-I receptor is an indispensable component of the SV40 transformation pathway. This conclusion is further supported from the results of antisense RNA experiments with tumor cell lines showing that interference with the function of the IGF-I receptor has a profound effect on anchorage-independent growth, even under conditions that only modestly affect growth in monolayers.

Animals↗

Identification of a novel protein kinase C inhibitor in microsomes from phytohaemagglutinin activated human peripheral blood mononuclear cells.

A peptide inhibiting either corpuscolate or purified PKC has been identified from microsomes of PHA-activated human PBMC but it is not detectable in microsomes of resting PBMC. The peptide was obtained from a microsomal preparation in an oligomeric form that could be transformed into a monomeric form by beta-MSH. The active peptide (IN) was retained on a PC-11 chromatographic column and could be eluted with NaCl. IN is ineffective on PKC-dependent protamine phosphorylation of protamine and on Ca2+ and phospholipid-independent activity generated by mild hydrolysis with trypsin of PKC. Ca2+ binding is permissive for IN activity. IN inhibits particulate PKC in PHA-activated PBMC, but is ineffective after TPA activation. All these data indicate that IN acts at the regulatory domain of PKC.

Blood Proteins↗

Heteromorphism of human chromosome 18 detected by fluorescent in situ hybridization.

The individual variations of pericentromeric heterochromatin in human chromosome 18 were analysed using the C-banding techniques and nonradioactive fluorescence in situ hybridization (FISH) with chromosome 18 alpha-satellite DNA probe. FISH analysis shows heteromorphisms almost undetectable by C-banding and which regularly segregate in a family.

Chromosome Banding↗

Anchored anti-HLA class I monoclonal antibody fails to induce inhibition of PHA-activated lymphocytes proliferation.

It is known that anti-HLA Class I antibodies inhibit the proliferative response of PHA-activated T-lymphocytes. We found that plastic- or sepharose-linked anti-HLA Class I monoclonal antibody 01.65 does not inhibit either [3H]Thymidine incorporation or recruitment in the cell cycle, nor does it reduce the expression of c-myc mRNA and the membrane expression of Interleukin-2 Receptor and Transferrin Receptor. Furthermore, particulate Protein Kinase C is not affected by anchored anti-HLA Class I monoclonal antibody 01.65. We suggest that anti-HLA Class I monoclonal antibody may act through crosslinking or internalization of HLA Class I antigens.

Antibodies, Monoclonal↗

Altered proliferative kinetics in PHA-activated human T-lymphocytes treated with the anti-HLA class I monoclonal antibody 01.65.

Anti-HLA class I monoclonal antibody (mAb) 01.65 inhibited phytohaemagglutinin (PHA)-induced human lymphocyte proliferation. The inhibitory effect was inversely correlated to the strength of the proliferative response. It was increased when lymphocytes were stimulated with suboptimal doses of PHA but it disappeared with supraoptimal doses. Proliferation inhibition was achieved by prolonging the cell cycle time and by slowing down its recruitment rate. The former effect was not restricted to the G1-phase but also included the S phase. These results support the idea that HLA class I molecules are important in the PHA-induced proliferation of human T-lymphocytes.

Antibodies, Monoclonal↗

Molecular analysis of cell cycle-related gene expression in anti-HLA class I monoclonal antibody (01.65) treated PHA-activated human T-lymphocytes.

HLA class I antigens seem to be involved in the proliferative response of PHA-activated human T-lymphocytes. We have previously reported that the treatment of PHA-activated peripheral blood mononuclear cells (PBMC) with an anti-HLA class I monoclonal antibody, 01.65, (i) inhibits the tritiated thymidine incorporation, (ii) inactivates cytosolic protein kinase C (PKC) and (iii) causes an increase in the duration of the cell cycle. Northern Blot kinetic analysis of c-fos, c-myc, cdc2, IL-2R, c-myb, ODC, TK and H3, from 10 minutes to 120 hours, was performed in MAb 01.65 treated cultures. We found that the expression of four genes (c-myc, IL-2R, cdc2 and TK) was depressed 24 hours after PHA stimulation.

Antibodies, Monoclonal↗

Competitive effect of anti-HLA class I monoclonal antibody (01.65) and N-N-staurosporine on prolipherative response of PHA activated T-lymphocytes.

N-N-Staurosporine (STAR) inhibits in a dose dependent manner Tritiated-Thymidine (3H-TdR) incorporation in phytohemagglutinin (PHA) activated Peripheral Blood Mononuclear Cells (PBMC) treated with anti-HLA class I monoclonal antibody (MAb) 01.65 and its effect results competitive with MAb 01.65. Cytosolic and particulate Protein Kinase C (PKC) have been studied. Only when PKC particulate activity is no more detectable, the effect of STAR on 3H-TdR incorporation is evident.

Alkaloids↗

An anti-HLA class I monoclonal antibody alters the progression in the cell cycle of phytohemagglutinin-activated human T lymphocytes.

The monomorphic anti-HLA Class I monoclonal antibody 01.65 inhibits the incorporation of tritiated thymidine ([3H]TdR) in Phytohemagglutinin (PHA)-activated human T lymphocytes. Our data indicate that 01.65 affects the average duration of the cell cycle by increasing the length of the early S subphase. As a consequence of the increase in the doubling time of the cell population, the absolute number of cells at harvesting time was reduced in 01.65-treated cultures compared to that of untreated cultures. The lengthening of the S-phase and the decrease in the cell number can together quantitatively account for the reduction of [3H]TdR incorporation observed in 01.65-treated cultures.

Antibodies, Monoclonal↗

Chromosomal evolution in Cervidae.

On the basis of chromosome data obtained on 30 species and 20 subspecies of Cervidae, a report is submitted on the karyosystematics of this family. The primitive karyotype of Cervidae may be inferred to be composed of 35 acrocentric pairs (2n = 70 FN = 70). During the phyletic evolution of this family different types of chromosome rearrangements were probably selected and the group may have differentiated karyologically into three branches: (1) the Cervinae that fixed a centric fusion resulting in a metacentric pair of autosomes (2n = 68, FN = 70), as shown by the basic karyotype of Cervus elaphus, and where Robertsonian fusions are the preeminent type of chromosome rearrangement; (2) the Odocoileinae, in which pericentric inversions and Robertsonian fusions were favored, yielding first a submetacentric X and then a submetacentric autosome pair. The most representative karyotype is 2n = 70, FN = 74--as in Odocoileus hemionus; and (3) the Muntiacinae, in which centric and tandem fusions were the most common chromosome rearrangements. While Muntiacus reevesi has a karyotype 2n = 46, FN = 46, the chromosome number drops down to 2n = 6 in the females of the M. muntjak vaginalis subspecies group and M. rooseveltorum. Therefore, while the karyotypes are conserved within the subfamilies Cervinae and Odocoileinae; the subfamily Muntiacinae appears to be the most chromosomally diversified group. The few karyological data on the Moschus berezovskii suggest that the Moschinae should be placed in a separate family, the Moschidae.

Animals↗

C-fos, c-myc and IL-2R mRNA expression in PHA activated T lymphocytes treated with a monoclonal anti-HLA class I antibody (MAb 01.65).

Monoclonal anti HLA class I antibodies inhibit the proliferative response of PHA-stimulated T lymphocytes. We studied the effects of MAb 01.65 anti-HLA class I on c-fos, c-myc and IL-2R mRNA expression. We found that MAb treatment does not modify either c-fos mRNA levels observed after 10 minutes to 3 hrs or the early c-myc mRNA expression revealed after 1 to 6 hrs, but decreases the intensity of autoradiographic signals of late c-myc and IL-2R mRNA expression. Since we had previously ascertained that MAb 01.65 treatment induces a decrease in PKC enzymatic activity after few minutes, the correlation of that result with the data presented in this paper will be discussed.

Antibodies, Monoclonal↗