PubMed Health⌕ Search

Biomedical subjects

A Vacca

Publications and source records attributed to A Vacca.

At least 181 records · Page 10Linked to original sources

Role of neutrophils and CD4+ T lymphocytes in the primary and memory response to nonimmunogenic murine mammary adenocarcinoma made immunogenic by IL-2 gene.

TS/A is a spontaneous adenocarcinoma, apparently not immunogenic in BALB/cnAnCr mice. TS/A cells are unable to stimulate a syngeneic antitumor response either in vitro or in vivo. To evaluate the immunogenic potential of IL-2-releasing neoplastic cells, we used an expression vector to introduce the cDNA coding for murine IL-2 into TS/A cells. Six clones releasing between 30 and 6800 U of IL-2/10(5) cells/ml/48 h have been isolated. Both low (30 U, B1.30) and high (6000 U, B4.6000) IL-2-releasing clone are capable of stimulating a proliferative and cytotoxic response in syngeneic cultures. While the B1.30 clone grows in 60% of syngeneic mice with a delayed pattern, the five clones that release higher levels of IL-2 are promptly rejected. Rejection is associated with neutrophil infiltration, the intensity of which is directly proportional to the amount of IL-2 released. NK cells and CD4+ lymphocytes are uninfluential, whereas CD8+ lymphocytes play only a minor role. This neutrophil-dominated rejection leaves a long-lasting, tumor-specific, T lymphocyte-mediated immune memory. For its induction, CD4+ lymphocytes are required. Their specific activation appears to depend on both the amount of IL-2 released and the granulocyte-mediated reaction that may lead to a more efficient presentation of tumor-associated Ag. These data support the notion that, after transduction of IL-2 gene, cancer cells may elicit an immune antitumor response, and stress the potential use of IL-2 as a component of new tumor vaccines.

Adenocarcinoma↗

Glucocorticoid receptor-mediated suppression of the interleukin 2 gene expression through impairment of the cooperativity between nuclear factor of activated T cells and AP-1 enhancer elements.

The immunosuppressant hormone dexamethasone (Dex) interferes with T cell-specific signals activating the enhancer sequences directing interleukin 2 (IL-2) transcription. We report that the Dex-dependent downregulation of 12-O-tetradecanoyl-phorbol-13-acetate (TPA) and calcium ionophore-induced activity of the IL-2 enhancer are mediated by glucocorticoid receptor (GR) via a process that requires intact NH2- and COOH-terminal and DNA-binding domains. Functional analysis of chloramphenicol acetyltransferase (CAT) vectors containing internal deletions of the -317 to +47 bp IL-2 enhancer showed that the GR-responsive elements mapped to regions containing nuclear factor of activated T cells protein (NFAT) (-279 to -263 bp) and AP-1 (-160 to -150 bp) motifs. The AP-1 motif binds TPA and calcium ionophore-induced nuclear factor(s) containing fos protein. TPA and calcium ionophore-induced transcriptional activation of homo-oligomers of the NFAT element were not inhibited by Dex, while AP-1 motif concatemers were not stimulated by TPA and calcium ionophore. When combined, NFAT and AP-1 motifs significantly synergized in directing CAT transcription. Such a synergism was impaired by specific mutations affecting the trans-acting factor binding to either NFAT or AP-1 motifs. In spite of the lack of hormone regulation of isolated cis elements, TPA/calcium ionophore-mediated activation of CAT vectors containing a combination of the NFAT and the AP-1 motifs became suppressible by Dex. Our results show that the IL-2-AP-1 motif confers GR sensitivity to a flanking region containing a NFAT element and suggest that synergistic cooperativity between the NFAT and AP-1 sites allows GR to mediate the Dex inhibition of IL-2 gene transcription. Therefore, a Dex-modulated second level of IL-2 enhancer regulation, based on a combinatorial modular interplay, appears to be present.

Base Sequence↗

17 beta-estradiol dehydrogenase (E2DH) activity in T47D cells.

Activity of NAD-dependent 17 beta-hydroxysteroid dehydrogenase (E2DH), the enzyme which converts estradiol (E2) into its less active metabolite estrone (E1), has been previously characterized in normal human breast cells in culture and in benign and malignant breast tumors. E2DH activity is far greater in epithelial cells than in fibroblasts. Moreover, it is progesterone dependent in epithelial cells. It was therefore interesting to explore E2DH in the progesterone receptor (PR)-rich T47D cell line as a possible marker of hormone dependence in breast cancer cells. In T47D cells, transformation of [3H]E2 to E1 is limited. The metabolism seems to be preferentially oriented in the way E1----E2 in these cells. However, in the presence of the cofactor NAD the conversion of E2 into E1 increases. Moreover, treatment of T47D cells in culture by the progestin R5020 stimulates E2 to E1 conversion 2- to 3-fold. Stimulation of E2DH (E2----E1) activity reflects both the presence and the operability of PR. This observation underlines the possible interest of E2DH assay in parallel to estradiol receptor and PR to evaluate hormone-dependence of breast cancer.

Breast Neoplasms↗

Retinoic acid-induced down-regulation of the interleukin-2 promoter via cis-regulatory sequences containing an octamer motif.

Retinoic acid (RA) is known to influence the proliferation and differentiation of a wide variety of transformed and developing cells. We found that RA and the specific RA receptor (RAR) ligand Ch55 inhibited the phorbol ester and calcium ionophore-induced expression of the T-cell growth factor interleukin-2 (IL-2) gene. Expression of transiently transfected chloramphenicol acetyltransferase vectors containing the 5'-flanking region of the IL-2 gene was also inhibited by RA. RA-induced down-regulation of the IL-2 enhancer is mediated by RAR, since overexpression of transfected RARs increased RA sensitivity of the IL-2 promoter. Functional analysis of chloramphenicol acetyltransferase vectors containing either internal deletion mutants of the region from -317 to +47 bp of the IL-2 enhancer or multimerized cis-regulatory elements showed that the RA-responsive element in the IL-2 promoter mapped to sequences containing an octamer motif. RAR also inhibited the transcriptional activity of the octamer motif of the immunoglobulin heavy chain enhancer. In spite of the transcriptional inhibition of the IL-2 octamer motif, RA did not decrease the in vitro DNA-binding capability of octamer-1 protein. These results identify a regulatory pathway within the IL-2 promoter which involves the octamer motif and RAR.

Base Sequence↗

A disturbance of the IL-2/IL-2 receptor system parallels the activity of multiple myeloma.

The IL-2/IL-2 receptor (IL-2R) system has been investigated in 64 patients with multiple myeloma (MM), 31 with monoclonal gammopathies of undetermined significance (MGUS) and 20 normal controls. The MM data were related to clinical status by comparing active disease, i.e. at diagnosis and at relapse, and stable disease, i.e. complete remission and off-treatment plateau phase. Serum and urinary values of the soluble IL-2R (sIL-2R) were significantly increased in MM patients compared with normal controls and this increase was related to activity. MM patients with active disease gave significantly higher values than those with stable disease. Compared with normal controls, enriched B cell (but not T cell) preparations from peripheral blood mononuclear cells (PBMC) showed significantly increased proportions of IL-2R+ cells in MM and MGUS. However, the highest proportions were detected in active MM compared with stable MM and MGUS. Also, 16% of all MM patients, as opposed to 9% of MGUS, had well-defined bone marrow IL-2R+ plasma cell populations. The lowest serum IL-2 values were found in active MM. Serial follow up of serum sIL-2R suggested that this peptide can be used as an additional marker of active malignancy. The data indicate that a disturbance of IL-2/IL-2R system is most pronounced in active MM. These findings may provide clues as to the T cell abnormalities in MM.

Aged↗

T-cell restricted and unrestricted expression of transfected human interleukin-2 gene: phorbol ester- and calcium-inducible versus constitutive expression.

Interleukin-2 (IL-2) gene expression is tightly controlled and generally limited to antigenic stimulation of T cells. To study the cell-specific expression of the IL-2 gene, we transfected the intact human IL-2 gene, including 2.0 kb of 5' and 0.3 kb of 3' flanking sequences, into mouse NIH-3T3 fibroblasts and BFS lymphoma T cells and into human epithelial HeLa cells. Stable transformants (NIH-3T3,HeLa and BFS cells) carried an intact transfected IL-2 gene and constitutively expressed cytoplasmic human IL-2 mRNA which was not detected in vector-transfected cells. Constitutive expression of IL-2 mRNA in human IL-2 gene-transfected NIH-3T3 and HeLa cells was associated to the secretion of bioactive IL-2 protein, while no IL-2 production was observed in untransfected or vector-transfected cells. Cytoplasmic IL-2 mRNA observed in transfectants was larger (1.4 kb) than endogenous IL-2 mRNA of human T cells, although smaller than RNA containing unspliced intact introns. No alternative promoters or polyadenylation signals were used by these cells, but some intronic sequences were present in the 1.4 kb mRNA. Phorbol ester and calcium ionophore did not modulate the expression of the transfected IL-2 gene in NIH-3T3 and HeLa cells, while these agents increased its expression in transfected BFS lymphoma T cells. We conclude that when transfected into lymphoid and non-lymphoid cells the intact human IL-2 gene is constitutively expressed, while its phorbol ester/calcium-mediated inducible expression is restricted to T cells. This suggests that the constitutive and inducible expression of the IL-2 gene can be dissociated and are presumably subjected to separate regulatory pathways.

Animals↗

Transcriptional regulation of the interleukin 2 gene by glucocorticoid hormones. Role of steroid receptor and antigen-responsive 5'-flanking sequences.

Dexamethasone treatment of the Jurkat T77 cell clone inhibited the enhancing effect of 12-O-tetradecanoylporbol-13-acetate (TPA) and the calcium ionophore A23187 on the interleukin 2 (IL2) mRNA levels and gene transcription from intact nuclei. Dexamethasone treatment of Jurkat T77 cells inhibited the TPA/A23187-dependent activation of the transcription from the transfected pIL2CAT, containing 600 base pairs of the genomic sequences upstream of the coding region of IL2 gene, including the TPA/calcium responsive cis-regulatory elements and promoter sequences, driving the expression of the chloramphenicol acetyltransferase (CAT) gene. Transfection of either Jurkat T77 cell clone or glucocorticoid-resistant Jurkat cells with a human glucocorticoid receptor cDNA under the transcriptional control of the Rous sarcoma virus long terminal repeat (LTR) (pRShGR alpha) significantly increased or induced, respectively, the dexamethasone-mediated inhibition of the TPA/A23187-dependent expression of pIL2-CAT as well as the enhancing effect on the expression of the cotransfected CAT gene under the control of the mouse mammary tumor virus LTR, as a marker of glucocorticoid receptor action. This suggests a role for the glucocorticoid receptor in mediating the dexamethasone action on IL2 gene expression. To study the cis-regulatory sequence specificity of the dexamethasone-induced interference with the TPA/A23187-mediated T cell activating signals, we studied the effect of the hormone on the regulatory elements contained in the Rous sarcoma virus and human T lymphotropic virus 1 long terminal repeats and the SV40 promoter, which are known to be transcriptionally enhanced by those activating agents. Dexamethasone was unable to interfere with the TPA/A23187-mediated enhancement of these cis-regulatory elements, suggesting that the hormone effect is specific for IL-2 gene sequences. Our data suggest that the dexamethasone-mediated transcriptional inhibition of the IL2 gene is mediated by an interference with the protein kinase C and calcium-mediated trans-activation of the antigen-responsive and T cell-specific elements lying in the 5'-flanking region of the gene.

Animals↗

Post-transcriptional control of c-myc proto-oncogene expression by glucocorticoid hormones in human T lymphoblastic leukemic cells.

We have studied the regulation of the human c-myc proto-oncogene by glucocorticoid hormones in T lymphoblastic leukemic cells. A significant decrease (50%) of the steady state levels of c-myc mRNA was observed as early as 3 h after dexamethasone treatment of CEM-1.3 human lymphoma cells, reaching less than 5% values, with respect to untreated cells, 24 h after hormone administration. Nuclear run-on experiments showed no modifications of the transcriptional rate from the first exon. However, a slight decrease (15%) of the transcript elongation from the first exon/first intron boundary was observed in the dexamethasone-treated cells. Using actinomycin D to block gene transcription, we have observed a significant increase in the rate of c-myc RNA specific decay after dexamethasone treatment. Furthermore, cycloheximide was able to overcome completely the dexamethasone-induced down-regulation of the c-myc gene expression. Our data suggest that dexamethasone is able to inhibit human c-myc gene expression primarily at the post-transcriptional level, through the synthesis of hormone-induced regulatory protein(s) controlling c-myc transcript stability.

Blotting, Northern↗

Enhancement of c-erbA proto-oncogene expression by glucocorticoid hormones in S49.1 lymphoma cells.

The modifications of the mRNA levels of the c-myc and c-erbA proto-oncogenes during the dexamethasone-induced decrease of S49.1 cell proliferation have been studied. The levels of c-myc mRNA decreased significantly between 3 and 18 h after dexamethasone (1 microM) treatment. In contrast, a significant increase in the levels of a 2.6 kb c-erbA mRNA was observed between 6 and 18 h after hormone treatment. Cycloheximide treatment of S49.1 cells increased the levels of c-erbA RNA and overcome the enhancing effect of dexamethasone on the expression of this proto-oncogene, suggesting that ongoing protein synthesis is necessary to elicit this hormone effect. The associated decrease of cell proliferation and changes in c-myc and c-erbA mRNA levels after dexamethasone treatment suggest that such oncogenes might be involved in the dexamethasone-mediated control of lymphoid cell growth.

Animals↗

Altered restriction pattern of the putative DNA binding domain of estrogen receptor or related genes in primary human meningiomas.

We analyzed by restriction mapping the genomic organization of the estrogen receptor gene in several primary human brain tumors in order to investigate the possible relationships between the development of these tumors and gonadal steroid hormones. In 5 out of 23 meningiomas the Eco RI restriction of genomic DNAs revealed 6 invariant normal fragments of 6.5, 4.8, 3.8, 3.1, 2.7 and 1.7 kb, plus 2 additional variant fragments of either 8.6 or 2.5 kb. More detailed analysis showed that these variant bands hybridized with a probe specific for the middle region of the estrogen receptor cDNA, coding for the DNA-binding domain of the receptor. This abnormal restriction pattern was found only in these meningiomas and not in other brain tumors or DNAs obtained from peripheral blood lymphocytes.

Blotting, Southern↗

Stimulation of antibody response in the gastrointestinal mucosa of immunodeficient mice by oral treatment with bacterial antigens. An immunoperoxidase study.

The immunodeficient (nude) mice were chosen as a model to verify the in vivo stimulating activity of bacterial antigens on the humoral immune response. By using an immunoperoxidase technique, the Ig+ cell content in the gastro-intestinal mucosa of mice was evaluated after oral treatment with a mixture of bacterial antigen fractions (trade name Colopten). Treatment for 15 days was able to induce a significant increase in the proportions of Ig+ cells in both the jejunum and ileum. In contrast, the number of Ig+ cells was significantly increased after 30 days of treatment throughout the gastro-intestinal tract. Based on the staining intensity, a semiquantitative evaluation of the Ig content of the cells was made. Strongly stained Ig+ cells were localized into the gastro-intestinal mucosa during treatment and appeared to be the prominent lymphoid cell population in the small bowel after prolonged administration of Colopten. The morphological analysis of tissues showed that after treatment Ig+ cells tended to be collected within the mucosa rather than being isolated as in untreated animals. Therefore, these results demonstrate that oral administration of Colopten was able to elicit a local humoral immune response in an animal model for severe immunodeficiency.

Animals↗

Hodgkin's disease presenting in 1 of 4 siblings affected by hereditary spinocerebellar ataxia: clinical, immunological and genetic study.

One of 4 siblings affected by hereditary spinocerebellar ataxia (HSCA) of Marie's type developed Hodgkin's disease (HD): the stage was IV B, the patient was submitted to conventional chemo- and radiotherapy and achieved complete remission. An accurate clinical, genetic and immunological study was carried out on all his family, including a complete HLA typing, a chromosome study, the immunophenotyping of peripheral blood mononuclear cells (PBMC), the PBMC response to polyclonal mitogens, to interleukin 2 (IL-2), to the association of PHA + IL-2 and the evaluation of the IL-2 receptor expression. No association was clearly demonstrable between an HLA haplotype and HSCA, while the patient with HSCA and HD was HLA-B18- and DQw3-positive (the last at homozygous level), two antigens known to be strongly associated with HD, mainly among the Sardinian ethnic group. The mode of inheritance of HD susceptibility is however completely different from that of Marie's HSCA. The chromosome study did not show any characteristic pattern of the karyotype, neither of the HSCA affected nor of the unaffected members. The immunological investigations did not elucidate any characteristic behavior of the family members, apart from the typical findings of HD seen on patients with HSCA and HD. Our study could not demonstrate any genetic and/or immunologic common background shared by the two diseases, HSCA and HD. Their coexistence in our patient, although the statistic probability is very low, seems to be a fortuitous coincidence more than the result of a common genetic and pathogenetic mechanism.

Adult↗

Tumor-promoting phorbol ester and ras oncogene expression inhibit the glucocorticoid-dependent transcription from the mouse mammary tumor virus long terminal repeat.

Oncogene activation has been suggested to play some role in determining the hormone independency of tumors. In order to study the role of protein kinase C in mediating the inhibition of the glucocorticoid-dependent transcription from the Mouse Mammary Tumor Virus (MMTV)-Long Terminal Repeat induced by overexpressed activated ras oncogene, we studied the effects of protein kinase C activators [the tumor promoting phorbol ester 12-O-tetradecanoyl-phorbol-13-acetate (TPA)] and inhibitors [1-(5-isoquinolinesulfonyl)-2-methylpiperazine (H-7)] on the dexamethasone (DEX)-mediated activation of a MMTV-Long Terminal Repeat-chloramphenicol acetyltransferase (pMMTV-CAT) chimeric reporter gene transiently transfected into NIH-3T3 cells and in Ha-ras-transformed fibroblasts (T24-NIH-3T3). TPA (30 ng/ml) together with DEX (0.1 microM) treatment of NIH-3T3 cells resulted in a significant decrease of CAT activity from pMMTV-CAT, compared to DEX treatment alone. The addition of H-7 (40 microM) was able to overcome the TPA-induced inhibition of DEX-dependent transcription from pMMTV-CAT. DEX-dependent expression of pMMTV-CAT was significantly reduced in T24-NIH-3T3 with respect to wild-type NIH-3T3 cells. Treatment of T24-NIH-3T3 cells with either H-7 or TPA significantly enhanced or decreased, respectively, the DEX-dependent expression of pMMTV-CAT. TPA and/or H-7 did not affect CAT activity from either pMMTV-CAT in the absence of DEX or from CAT gene under the control of the SV40 promoter. Similar glucocorticoid receptor sites and binding affinities were observed in T24-NIH-3T3 or TPA-treated NIH-3T3 cells compared to wild-type untreated cells. Our data suggest that activation of PKC is involved in the reduced transcriptional regulatory activity of glucocorticoid hormone induced by overexpressed Ha-ras oncogene in NIH-3T3 fibroblasts.

Animals↗

Radioimmunotherapy of human colon carcinoma by 131I-labelled monoclonal anti-CEA antibodies in a nude mouse model.

A mixture of 3 MAbs directed against 3 different CEA epitopes was radiolabelled with 131I and used for the treatment of a human colon carcinoma transplanted s.c. into nude mice. Intact MAbs and F(ab')2 fragments were mixed because it had been shown by autoradiography that these 2 antibody forms can penetrate into different areas of the tumor nodule. Ten days after transplantation of colon tumor T380 a single dose of 600 microCi of 131I MAbs was injected i.v. The tumor grafts were well established (as evidenced by exponential growth in untreated mice) and their size continued to increase up to 6 days after radiolabelled antibody injection. Tumor shrinking was then observed lasting for 4-12 weeks. In a control group injected with 600 microCi of 131I coupled to irrelevant monoclonal IgG, tumor growth was delayed, but no regression was observed. Tumors of mice injected with the corresponding amount of unlabelled antibodies grew like those of untreated mice. Based on measurements of the effective whole-body half-life of injected 131I, the mean radiation dose received by the animals was calculated to be 382 rads for the antibody group and 478 rads for the normal IgG controls. The genetically immunodeficient animals exhibited no increase in mortality, and only limited bone-marrow toxicity was observed. Direct measurement of radioactivity in mice dissected 1, 3 and 7 days after 131I-MAb injection showed that 25, 7.2 and 2.2% of injected dose were recovered per gram of tumor, the mean radiation dose delivered to the tumor being thus more than 5,000 rads. These experiments show that therapeutic doses of radioactivity can be selectively directed to human colon carcinoma by i.v. injection of 131I-labelled anti-CEA MAbs.

Animals↗

Imaging of human leukemic T-cell xenografts in nude mice by radiolabeled monoclonal antibodies and F(ab')2 fragments.

Monoclonal antibodies (MoAb) that react with the T-lymphocyte markers called cluster of differentiation CD5 and CD2 were labeled with iodine 131 (131I) and were injected intravenously in nude mice bearing solid subcutaneous xenografts derived from the human T-cell leukemia line Ichikawa. Both MoAb anti-CD5 and anti-CD2 yielded favorable mean tumor to whole-body ratios of 3.8 and 5.1, respectively. These ratios were further increased up to 10.0 for MoAb anti-CD5 and 15.5 for MoAb anti-CD2 by using their F(ab')2 fragments. The tumors could be imaged clearly by external scanning after injection of F(ab')2 fragments from both MoAb. F(ab')2 fragments from MoAb anti-CD2 and of a third MoAb recognizing the clonotypic determinant (Ti) of the antigen receptor expressed by the human T-cell line Jurkat were injected in mice bearing intrasplenic Jurkat xenografts. A selective localization of both fragments in tumor tissue was demonstrated with mean tumor to whole-body ratios of 7.5 and 4.1 for MoAb anti-CD2 and anti-Ti, respectively. These in vivo experimental results may provide useful information for the potential use of radiolabeled MoAb and fragments in the diagnosis and treatment of patients with T-cell lymphoma and different other forms of T-cell malignancies.

Animals↗