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Biomedical subjects

P Seth

Publications and source records attributed to P Seth.

At least 109 records · Page 6Linked to original sources

Role of p53 and apoptosis in sensitization of cis-diamminedichloroplatinum antitumor activity by interleukin-1 in ovarian carcinoma cells.

We have previously reported that interleukin-1 (IL-1 ) sensitized cisplatin cytotoxicity against human ovarian NIH:OVCAR-3 tumor cells. We have further examined inter-actions of IL-1 with cisplatin in these ovarian cells. Treatment of cells with either IL-1 or CDDP or combinations resulted in a significant accumulation of cells in G1 phase and a concomitant decrease in the S phase of the cell cycle. IL-1 and CDDP treatment induced p53 protein in NIH:OVCAR-3 tumor cells. CDDP and IL-1 treatment decreased the steady-state expression of c-myc RNA and induced significant degradation of the genomic DNA into internucleosomal sized DNA fragments which was further increased in the presence of both agents in these cells. Taken together, these studies suggest that IL-1 may kill ovarian NIH:OVCAR-3 tumor cells by inducing a blockade at G1/S of the cell cycle, down-regulating c-myc gene and inducing p53-dependent apoptosis. The synergistic interactions of IL-1 with CDDP may involve the enhancement of p53-dependent apoptosis.

Apoptosis↗

Cloning and structural analysis of the cDNA and the gene encoding the murine type 1 sigma receptor.

We have isolated a mouse cDNA which codes for a functional type 1 sigma receptor. The functional identity of the cDNA was established by expressing the cDNA in mammalian cells and measuring the cDNA-induced binding of haloperidol. Using this cDNA as the probe, we have isolated a murine genomic clone which contains the type 1 sigma receptor gene in its entirety. We have sequenced the gene completely, deduced the exon-intron organization and analyzed the promoter region sequence for transcription factor binding sites. The gene (approximately 7 kbp) is TATA-less but contains CCAATC and GC boxes immediately upstream of the transcription start site. The gene consists of 4 exons and 3 introns. The 5'-flanking region contains putative binding sites for AP-1, AP-2, GATA-1 and steroid receptors.

Amino Acid Sequence↗

Promoting apoptosis: a novel activity associated with the cyclin-dependent kinase inhibitor p27.

p27Kip1, a cyclin-dependent kinase inhibitor, is recognized as a negative regulator of the cell cycle. In this paper, we report that overexpression of p27Kip1 triggers apoptosis in several different human cancer cell lines. Using a recombinant adenoviral vector that expresses p27Kip1 (Adp27), we found that overexpression of p27Kip1 in MDA-MB-231 breast cancer cells induces apoptosis that was seen by a number of different techniques, including flow cytometry and in situ terminal deoxynucleotidyl transferase-mediated nick end labeling, flow cytometric assay for sub-G1 population, and 4',6-diamindino-2-phenylindole staining. Cleavage of poly(ADP-ribose) polymerase and degradation of cyclin B1, events that are known to be associated with apoptosis, were also observed following overexpression of p27Kip1. This is the first report indicating a role for p27Kip1 in induction of apoptosis.

Adenoviridae↗

Tumor suppressor p53 is a negative regulator in thyroid hormone receptor signaling pathways.

Thyroid hormone nuclear receptors (TRs) are ligand-dependent transcription factors which regulate growth, differentiation, and development. The molecular mechanisms by which TRs mediate these diverse effects are unclear. One emerging hypothesis suggests that TRs could mediate these diverse effects via cooperation with different transcription factors/receptors. Indeed, we have recently shown that the human TR subtype beta1 (h-TRbeta1) interacts with the tumor suppressor p53. p53 is a transcription factor that plays a critical role in cell cycle regulation and tumor development. To assess the physiological relevance of the interaction of h-TRbeta1 with p53, the present study addressed the question as to whether the functions of h-TRbeta1 could be modulated by p53. We first compared the h-TRbeta1-mediated transcriptional activity in two pairs of isogenic cell lines, RKO/RKO E6 and MCF-7/MCF-7 E6. RKO and MCF-7 cells are colon and breast carcinoma cell lines, respectively, that contain p53 but lack TRbeta1. The isogenic RKO E6 and MCF-7 E6 cells are stable clones expressing high levels of papillomavirus type 16 E6 protein. In these cells, the level of p53 protein was lower than the parental cells. The impairment of p53 functions in these E6-containing cells led to an activation of TRbeta1-mediated transcriptional activity. Furthermore, in a growth hormone-producing cell line in which the expression of the growth hormone gene is positively regulated by TRs, overexpression of the wild-type p53 led to repression in the expression of the growth hormone gene. Thus, TRs could cross-talk with p53 in its signaling pathways to regulate gene regulatory functions. The present findings further strengthen the hypothesis that mediation of the pleiotropic effects of T3 requires the cooperation of TRs with a large network of transcription factors.

Adenoviridae↗

Granule-mediated killing: pathways for granzyme B-initiated apoptosis.

We report that the serine protease granzyme B (GrB), which is crucial for granule-mediated cell killing, initiates apoptosis in target cells by first maturing caspase-10. In addition, GrB has a limited capacity to mature other caspases and to cause cell death independently of the caspases. Compared with other members, GrB in vitro most efficiently processes caspase-7 and -10. In a human cell model, full maturation of caspase-7 does not occur unless caspase-10 is present. Furthermore, GrB matured caspase-3 with less efficiency than caspase-7 or caspase-10. With the caspases fully inactivated by peptidic inhibitors, GrB induced in Jurkat cells growth arrest and, over a delayed time period, cell death. Thus, the primary mechanism by which GrB initiates cell death is activation of the caspases through caspase-10. However, under circumstances where caspase-10 is absent or dysfunctional, GrB can act through secondary mechanisms including activation of other caspases and direct cell killing by cleavage of noncaspase substrates. The redundant functions of GrB ensure the effectiveness of granule-mediated cell killing, even in target cells that lack the expression or function (e.g., by mutation or a viral serpin) of one or more of the caspases, providing the host with overlapping safeguards against aberrantly replicating, nonself or virally infected cells.

Apoptosis↗

Alterations in the free radical generation and nitric oxide release from rat peripheral polymorphonuclear leukocytes following thrombosis.

The present investigation was undertaken to study the alterations in free radical generation and release of nitric oxide (NO) from polymorphonuclear leukocytes (PMNLs) following thrombosis. Thrombosis was induced in rats by intravenous injection of collagen and adrenaline. PMNLs were separated from rat blood by using dextran sedimentation and Ficoll-Hypaque. Arachidonic acid (AA), formyl methionine leucine phenylalanine (FMLP) and opsonized zymosan (OZ) induced free radical generation was estimated as luminol (LCL) and Lucigenin (LUCDCL) dependent chemiluminescence. PMNLs nitric oxide synthase (NOS) activity and NO release were measured by using [14C] L-Arginine (L-Arg) and oxy-hemoglobin respectively. LCL and LUCDCL responses in rat PMNLs were significantly attenuated following thrombosis. There was no change in the release of myeloperoxidase enzyme (MPO) from PMNLs obtained following thrombosis. PMNLs NOS activity and NO release were also found to be increased after thrombosis. Pretreatment of rat PMNLs with 10 mM L-NAME (NO precursor) or 100 microM sodium nitroprusside (NO donor), resulted in significant reduction of AA induced LCL response. Results obtained indicate that NO release form PMNLs was augmented while free radical generation response was attenuated after the induction of thrombosis.

Animals↗

Desensitization of spinal 5-HT1A receptors to 8-OH-DPAT: an in vivo spinal reflex study.

Serotonergic influence on spinal monosynaptic transmission and the desensitization of spinal 5-HT1A receptors following a single pretreatment with a 5-HT1A ligand were examined in vivo in acutely spinalized adult rats. Administration of a selective 5-HT1A agonist, 8-OH-DPAT (0.1 mg kg-1) significantly depressed the monosynaptic mass reflex (MMR) amplitude, which was prevented effectively by S(-)-propranolol, a 5-HT1A antagonist. The inhibitory effect of 8-OH-DPAT on MMR amplitude was significantly attenuated with a single dose of 8-OH-DPAT (1 mg kg-1, s.c.) administered 24 h before the experiments, indicating a marked desensitization of spinal 5-HT1A receptors. Desensitization of 5-HT1A receptors could be reversed by treatment of spiperone (1 mg kg-1, i.p.) 3 h before 8-OH-DPAT pretreatment. These results demonstrate that 5-HT1A receptor functionally modulates the spinal motor output and confirms the ability of 8-OH-DPAT to desensitize presynaptic 5-HT1A receptors as observed for the first time in rat spinal cord.

8-Hydroxy-2-(di-n-propylamino)tetralin↗

A recombinant adenovirus expressing p27Kip1 induces cell cycle arrest and loss of cyclin-Cdk activity in human breast cancer cells.

In order to elucidate the biochemical mechanisms by which the universal cyclin kinase inhibitor p27Kip1 regulates cell cycle progression in human breast cancer cells, a recombinant adenovirus expressing human p27 was constructed (Adp27). Upon infection of human breast cancer cells MDA-MB-231 and MCF-7 with Adp27, a high level of p27 expression was observed, and this resulted in a marked decrease in the proportion of cells in S-phase. In multiple cell lines, comparison of the cytotoxicity of Adp27 with another adenovirus vector expressing the related universal cyclin kinase inhibitor WAF1/Cip1 (AdWAF1), showed Adp27 to be markedly more (up to 56-fold) toxic than AdWAF1. DNA histograms showed Adp27 to cause a G1/S arrest at lower viral doses than AdWAF1. Analysis of cyclin dependent kinase activity following Adp27 infections showed decreased Cdk2 and cyclin B1-Cdc2 activity at lower viral doses when compared with AdWAF1. Adp27 is therefore potentially useful for studies of growth regulation and for gene therapy when growth inhibition is desired.

Adenoviridae↗

Inhibition of the growth of pre-established subcutaneous tumor nodules of human prostate cancer cells by single injection of the recombinant adenovirus p53 expression vector.

We have previously described potent growth-inhibitory effect of a recombinant adenovirus expressing wild type p53 (AdWTp53) in metastatic prostate cancer cells via activation of cellular p53 pathways. We have extended these observations to analyze the effects of AdWTp53 on primary cultures of radical prostatectomy specimens (RPS) and have also evaluated the gene therapeutic potential of the AdWTp53 in a nude mice model. Infection of primary cultures of prostate cancer specimens resulted in about 80% cell growth inhibition in comparison with cultures treated with control adenovirus dl312. Single injection of AdWTp53 into pre-established tumor nodules of DU145 prostate cancer cells suppressed tumor growth significantly (p = 0.0407) as determined by comparison of tumor volumes of the AdWTp53-treated vs. control vector (dl312) or PBS-treated groups. Moreover, there was no significant difference in tumor growth inhibition between single vs. multiple injections of AdWTp53. Our observations support the potential of AdWTp53 for gene therapy of prostate cancer.

Adenoviridae↗

The role of p27Kip1 in gamma interferon-mediated growth arrest of mammary epithelial cells and related defects in mammary carcinoma cells.

Interferon gamma (IFNgamma) induces growth arrest in normal human mammary epithelial cells by establishing a block during mid-G1 corresponding to the time when the retinoblastoma protein (Rb) would normally be inactivated by hyperphosphorylation. IFNgamma inhibits the kinase activities of cdk2, cdk4 and cdk6 within 24 h of treatment. Protein levels of the cdks and G1 cyclins do not change within this time period, although cdk4 levels are significantly reduced by 48 h. IFNgamma treatment induces p27Kip1 protein levels, presumably by a post-transcriptional mechanism as no change was observed in the mRNA levels. In addition, IFNgamma-induced inhibition of cdk2 and cyclin E-associated kinase activities is accompanied by a 4.5-fold or greater increase of p27Kip1 in cdk2 complexes. p27 may also have a role in the inhibition of cdk4/6 kinase activities, as p27 protein associated with these complexes was increase by 55-70% after IFNgamma. In mammary carcinoma cell lines which are resistant to growth inhibition by IFNgamma, p27 levels are not induced by IFNgamma nor is cdk2 kinase activity inhibited, despite high baseline levels of p27 in cdk2 complexes. However, exogenous expression of p27 in these cells induces growth arrest. In addition, purified p27 protein added to cdk2 complexes immunoprecipitated from carcinoma cells is able to inhibit the kinase activity in a dose dependent manner. Our results suggest that p27Kip1 has a role in mediating IFNgamma-induced terminal growth arrest. Resistance of mammary carcinomas to growth inhibition by IFNgamma does not appear to involve resistance of cdk2 complexes to the action of p27, but rather an inability to appropriately regulate the balance of cdk2, cyclin E and p27 levels.

Breast↗

p21(Waf1/Cip1) protects against p53-mediated apoptosis of human melanoma cells.

The tumor suppressive effect of p53 is believed to be rooted in its two primary functions: the implementation of cellular growth arrest and the execution of apoptotic cell death. While p53-regulated expression of the cyclin-dependent kinase inhibitor p21(Waf1/Cip1) appears to be central for the implementation of G1 arrest, the participation of p21(Waf1/Cip1) in p53-triggered cell death remains controversial. In the present study, overexpression of p53 in human melanoma SK-MEL-110 cells through use of an adenoviral expression vector (AdCMV.p53) was found to result in apoptosis, while similar infection of primary vascular smooth muscle cells (VSMC) instead resulted in a moderate inhibition of growth. Expression of p21(Waf1/Cip1) was strongly elevated in VSMC, but showed little change in SK-MEL-110 cells, although expression of another p53-regulated gene (GADD45) was comparable in both AdCMV.p53-infected cell types. Evidence that p21(Waf1/Cip1) expression may be required for surviving p53-induced cell death was further supported by the finding that p53 overexpression was highly toxic for p21-deficient mouse embryonal fibroblasts (p21-/- MEFs). In both SK-MEL-110 and p21-/- MEFs, adenovirus-driven ectopic expression of p21(Waf1/Cip1) resulted in a substantial protection against p53-induced apoptosis, indicating that p21(Waf1/Cip1) rescued cells from a path of programmed cell death to one of enhanced survival.

Animals↗

Mutations of the p16 gene product are rare in prostate cancer.

BACKGROUND: The p16 gene product is a negative regulator of cell cycle and has been shown to be deleted or mutated in a number of tumor cell lines and primary tumors. The role of p16 in prostate cancer is not defined. Prostate cancer tissues and cell lines were evaluated for p16 gene alterations. METHODS: Five metastatic prostate cancer cell lines were analyzed for p16 gene structure and its expression by Southern and Northern blot analyses. Forty-one DNA specimens from 18 microdissected primary tumor specimens, adjacent normal tissues, and cell lines were amplified by polymerase chain reaction for p16 protein coding and splice junction sequences. Mutations were analyzed by single strand conformation polymorphism and DNA sequencing. RESULTS: DU 145 cell line exhibited a missense mutation in codon 84 (GAC to TAC). With the exception of previously reported polymorphism, no mutation was detected in p16 coding or splice junction sequences in primary prostate cancer specimens. CONCLUSIONS: Inactivation of p16 gene by mutations in the protein coding sequence does not play a major role in the genesis of primary prostate cancer.

Blotting, Northern↗

Cancer gene therapy using a novel adeno-associated virus vector expressing human wild-type p53.

Previous studies have indicated that transfer of wild-type (wt) p53 cDNA into cancer cells can suppress the tumor phenotype in vitro and in vivo. In this study we examined the effects of wt p53 transduction in the human cancer cell line H-358 (that bears a homozygous deletion of p53) using a novel recombinant adeno-associated viral vector engineered to express wt p53 (rAAVp53). Western blot analysis demonstrated the expression of wt p53 in H-358 cells following infection with rAAVp53. Furthermore, rAAVp53 inhibited the growth of the neoplastic cells and also mediated cytotoxicity. Cell cycle analysis of rAAVp53-infected cells showed a significant increase in the percentage of cells arrested at the G1-S checkpoint. H-358 cells infected with rAAVp53 underwent apoptosis as demonstrated by the morphological appearance of DAPI-stained nuclei. Direct injection of rAAVp53 into H-358 tumors implanted subcutaneously in immunodeficient nu/nu mice inhibited tumor growth completely in three of the five animals tested. Mock-infected and rAAV control treated tumors showed no growth inhibition. In situ staining in nu/nu mice detected the presence of wild-type p53 protein in residual tumor cells following rAAVp53 administration. The impressive in vivo efficacy of the rAAVp53 suggests a bystander effect. We conclude that rAAV may be effective as a gene transfer vector in the delivery of p53 to cancer cells.

Animals↗

Sensitization of cis-platinum by a recombinant adenovirus vector expressing wild-type p53 gene in human ovarian carcinomas.

Mutations of the tumor suppressor wild-type p53 gene have been implicated in the development of resistance to anticancer drugs. We have examined the role of wild-type p53 in resistance to cis-diamminedichloroplatinum (II) (CDDP) in human ovarian cancer cells using a recombinant adenovirus containing human wild-type p53 cDNA (Adwtp53). In this study we used the human ovarian A2780 tumor cells (wtp53), which are sensitive to CDDP and A2780/CP tumor cells (nonfunctional/mutant p53) and are resistant to CDDP. Studies show that introduction of wtp53 protein via adenovirus gene transfer into A2780/CP cells significantly sensitized these cells to CDDP cytotoxicity, indicating wtp53 was involved in resistance to CDDP. We found that introduction of wtp53 protein also resulted in growth arrest of A2780/CP tumor cells whereas the parent A2780 cells were significantly less sensitive to Adwtp53. This synthesis of wtp53 protein induced by Adwtp53 in A2780/CP cells resulted in a significant increase in the expression of Bax protein without significantly effecting the expression of bcl2 protein, and induced a dose-dependent increase in the nucleosomal DNA fragmentation. The presence of CDDP further enhanced this apoptosis, causing a 30-fold sensitization of A2780/CP cells to CDDP. These results indicate that mutation of p53 protein in A2780/CP ovarian tumor cells resulted in the resistance to CDDP and that combination of wtp53 gene and CDDP may result in sensitization of mutant p53-containing tumors to chemogenetherapy.

Adenoviridae↗

Adenoviral vectors efficiently target cell lines derived from selected lymphocytic malignancies, including anaplastic large cell lymphoma and Hodgkin's disease.

We have hypothesized that adenoviral vectors might mediate gene transfer into cell lines derived from human lymphocytic malignancies, such as lymphoma, lymphocytic leukemia, and myeloma. A panel of 33 cell lines was studied for their ability to be transduced by an adenoviral (AD) vector encoding the Escherichia coli beta-galactosidase gene (AD-betagal). A cytochemical assay and a flow cytometry assay both demonstrated that a subset of lymphocytic cell lines can be efficiently transduced by adenoviral vectors. In particular, three of three anaplastic large cell lymphoma lines, two of two Hodgkin's disease cell lines, two of seven Burkitt's lymphoma cell lines, and three of five myeloma cell lines exhibited efficient gene transfer. The ability of an AD vector expressing the thymidine kinase (tk) gene from herpes simplex virus-1 (AD-tk) followed by ganciclovir (GCV) to kill 11 of these lymphocytic cell lines was studied. In eight of the cell lines tested, more than 68% of the cells were killed by AD-tk/GCV. Similar results were obtained using an adenoviral vector expressing the wild-type p53 tumor suppressor gene (AD-p53). Thus, AD-tk/GCV and AD-p53 both demonstrated efficient killing of these cell lines. These data document that adenoviral vectors are valuable reagents for the introduction of genes into selected lymphocytic cell lines. These data also suggest that adenoviral vectors might be useful for gene therapy of subsets of lymphocytic malignancy.

Adenoviridae↗

New paradigm for lymphocyte granule-mediated cytotoxicity. Target cells bind and internalize granzyme B, but an endosomolytic agent is necessary for cytosolic delivery and subsequent apoptosis.

Lymphocyte granule-mediated apoptosis is postulated to entail the formation of membrane pores by perforin. Then soluble granzyme reaches the cytosol either through these pores or by reparative pinocytosis. We demonstrate here that Jurkat cells bind and internalize granzyme B via high affinity binding sites without toxic consequence. Apoptosis occurs, however, if sublytic perforin is added to targets washed free of soluble granzyme B. We suggest that granule-mediated apoptosis mimics viral strategies for cellular entry. Accordingly, co-internalization of granzyme B with adenovirus, a virus that escapes endosomes to reach the cytosol, also induced apoptosis. Poly(ADP-ribose) polymerase cleavage and processing of CPP32, ICE-LAP3, and Mch2 were detected at 30 min, while cytosolic acidification and DNA fragmentation occurred at 60 min. Annexin V binding and membrane permeabilization arose at 4 h. The concurrent activation of the Ced-3 proteases differed from the rate at which each cysteine protease is cleaved in vitro by granzyme B. Thus, granzyme B may not directly process these proteases in whole cells but rather may function by activating a more proximal enzyme. These results indicate that adenovirus-mediated delivery of granzyme B is suitable for elucidating biochemical events that accompany granule-mediated apoptosis.

Apoptosis↗

Adenovirus-mediated gene transfer to human breast tumor cells: an approach for cancer gene therapy and bone marrow purging.

To examine the potential use of adenovirus vectors in cancer gene therapy as a mechanism for purging bone marrow cells of possible breast cancer contaminants, we compared the infection efficiency of adenovirus and the transfection efficiency of plasmid DNA in the presence of adenovirus in human breast cancer and bone marrow cells. Following infection of breast cancer cells with an adenovirus expressing beta-galactosidase gene, high levels of beta-galactoside activity were observed. No beta-galactosidase activity was observed in low-density human bone marrow cells. A replication-deficient adenovirus mutant dl312 enhanced the transfection efficiency of a plasmid DNA-expressing beta-galactosidase gene into breast cancer cells, and addition of a liposome, lipofectamine, further enhanced the transfection efficiency. In contrast, human bone marrow cells treated under the same conditions expressed very low levels of transfected beta-galactosidase DNA. Transfection of cells with plasmid DNA expressing a truncated but fully active Pseudomonas exotoxin gene in the presence of dl312 and lipofectamine resulted in marked breast cancer cell killing, whereas colony-forming unit granulocyte-macrophage (CFU-GM) were relatively resistant to these treatments. A recombinant adenovirus expressing human wild-type p53 protein (AdWTp53) was also highly cytotoxic to breast tumor cells. Infection of breast cancer cells with AdWTp53 (100 plaque-forming units/cell) resulted in 100% loss of the clonogenicity of breast tumor cells. However, colony formation from CFU-GM was relatively resistant to the cytotoxic effects of AdWTp53 alone or in the presence of pULI100 plasmid and lipofectamine. On the basis of these results, it is proposed that human adenoviruses are potentially useful for cancer gene therapy and bone marrow purging.

ADP Ribose Transferases↗