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D G Kaufman

Publications and source records attributed to D G Kaufman.

At least 19 recordsLinked to original sources

Identification of chromosomal bands replicating early in the S phase of normal human fibroblasts.

Normal human fibroblasts (NHF1) were released from confluence arrest (G0) and replated in medium containing bromodeoxyuridine (BrdU) and aphidicolin. Despite severe reduction in the rate of DNA synthesis by aphidicolin, cells reentering the cell cycle incorporated BrdU at regions of the human genome that replicated very early in S phase. After removal of aphidicolin and BrdU from the tissue culture medium, cells were collected in mitosis. Q-banding with 4', 6-diamidino-2-phenylindole/actinomycin D was used to identify metaphase chromosomes. A monoclonal anti-BrdU antibody and a fluorescein isothiocyanate (FITC)-conjugated goat anti-mouse antibody were used to identify the BrdU-labeled sites. The criterion for scoring DNA replication sites was the detection of FITC fluorescence at homologous regions of both sister chromatids. Early replicating regions mapped within R-bands, but not all R-bands incorporated BrdU. Chromosomal bands 1p36.1, 8q24.1, 12q13, 15q15, 15q22, and 22q13 were labeled in 53% or more of the copies of these chromosomes in the data set, suggesting that these sites replicated very early in S phase. Chromosomal band 15q22 was the most frequently labeled site (64%), which indicates that it contains some of the earliest replicating sequences in normal human fibroblasts.

Aphidicolin

Tamoxifen alters the localization of F-actin and alpha 5/beta 1-integrin fibronectin receptors in human endometrial stromal cells and carcinoma cells.

We have investigated F-actin and the integrin fibronectin receptor as possible targets of tamoxifen (TAM) signaling in a cell-based model of the endometrium. Normal human endometrial stromal cells and RL95-2 human endometrial adenocarcinoma cells were treated for 1 h with TAM, a known antagonist of protein kinase C (PKC), or with staurosporine or HA1004, two broad-spectrum protein kinase antagonists capable of inhibiting PKC and PKA, respectively. We utilized fluorescein-phalloidin and confocal microscopy to visualize the cellular distribution of F-actin. Normal stromal cells and RL95-2 cells differed in the arrangement of F-actin in control cells and in their response to TAM. In control stromal cells, actin stress fibers were well organized throughout the cell, but in RL95-2 cells, they were disorganized and present mainly at the cell periphery. F-actin in RL95-2 cells treated with TAM (0.1 and 1.0 microM) or with staurosporine (0.7 and 7.0 nM) exhibited a reorganization into stress fibers consistent with a more stationary phenotype. In contrast, TAM- or staurosporine-treated normal stromal cells exhibited an increase in the amount of organized F-actin. Interestingly, in normal stromal cells treated with staurosporine but not TAM or HA1004, these F-actin fibers appeared to terminate in dense plaques proximal to the plasma membrane. The alpha 5/beta 1 integrin fibronectin receptor mediates between the extracellular matrix and the actin cytoskeleton. TAM induced clustering of the fibronectin receptor at the plasma membrane in normal stromal cells, but not in carcinoma cells. This study supports the importance of plasma membrane-cytoskeletal protein interactions in the response of normal and carcinoma cells to TAM.

Actins

Diethylstilbestrol-induced immortalization of human endometrial cells: alterations in p53 and estrogen receptor.

Carcinogenesis is a process requiring multiple steps. Immortalization is one step in this process and may be rate limiting. To further our understanding of estrogen-induced carcinogenesis, we evaluated diethylstilbestrol (DES)-induced immortalization of human endometrial stromal cells. This was achieved by assessing at the restrictive temperature the colony-forming efficiency of cells that were conditionally immortalized with a temperature-sensitive simian virus 40 large T antigen. Treatment with DES for 1 wk did not increase the immortalization frequency; however, cultures that were treated for 20 wk had a twofold increase in immortalization frequency, and continued treatment for a total of 44 wk produced a threefold increase in immortalization frequency that was dose dependent. DES-treated restrictive temperature variants (RTVs) but not spontaneous RTVs lost the temperature-sensitive phenotype. DES-RTVs also had a shorter doubling time than spontaneous RTVs did. p53 expression was increased in DES-RTVs, and its localization within the cell was altered. Conversely, expression of the estrogen receptor was decreased in DES-immortalized cells. These changes in gene expression often occur in estrogen-related malignancies, and our results are consistent with a causal role for estrogens in these p53 and the estrogen receptor alterations. Immortalization of human cells may be analogous to initiation of rodent cells, and our results suggest that estrogen-induced alterations in p53 or other genes that regulate life span could contribute to estrogen-induced initiation.

Base Sequence

Basement membrane induced differentiation of HEC-1B(L) endometrial adenocarcinoma cells affects both morphology and gene expression.

In vitro studies of endometrial carcinogenesis have been hampered by dedifferentiation of the cells in culture. Using the endometrial carcinoma cell line HEC-1B(L), we aimed to establish and characterize culture conditions that preserve a more differentiated state of the tumor cells. HEC-1B(L) cells grown in a serum-free defined medium on plastic (PL/SFDM) on top of a reconstituted basement membrane (Matrigel, MG/SFDM) or in a thick layer of Matrigel showed pronounced morphological differentiation as compared with HEC-1B(L) cells cultured on plastic in a medium containing serum (PL/10% FCS). Features of differentiation included cuboidal to columnar cell shape and an increase of rough endoplastic reticulum in Matrigel cultures. Gene expression of HEC-1B(L) cells was studied by metabolic [35S]methionine labeling and SDS-gel electrophoresis. HEC-1B(L) cells cultured in the presence of Matrigel showed two additional secretory proteins approximately 31 kD and 77 kD in size. rt-PCR was used to screen cell cultures for the presence of estrogen receptor, progesterone receptor, and lactoferrin-mRNA, genes typically expressed by normal endometrial epithelium. We found no expression of the estrogen receptor or progesterone receptor. Lactoferrin-mRNA was present under all culture conditions tested. Our results suggest a regulatory role of the extracellular matrix for the differentiation of the HEC-1B(L) cell line.

Adenocarcinoma

Tumor cell invasion of basement membrane in vitro is regulated by amino acids.

Because most cancer deaths result from disseminated disease, understanding the regulation of tumor invasion and metastasis is a central theme in tumor cell biology. Interactions between extracellular matrices (ECM) and cellular microenvironment play a crucial role in this process. We have tested selected amino acids and polyamines for their ability to regulate RL95-2 cell invasion through both intact human amniotic basement membrane and a novel human ECM (Amgel). Three major systems for neutral amino acid transport, systems L, A, and ASC, are operational in these neoplastic cells. Amino acids entering the cell via transport system A or N, i.e., (methyl amino)-isobutyrate (MeAIB) or Asn, markedly enhanced invasiveness of these human adenocarcinoma cells as measured by a standard 72-hr amnion or Amgel invasion assay. Addition of 2-amino-2-norborane carboxylic acid (BCH; 1 mM), a model substrate of the L transport system, caused a significant decrease in invasive activity when tested in the Amgel assay. Interestingly, Val lowers steady-state levels of MeAIB uptake and blocks the increase in cell invasion elicited by MeAIB. At the same time, these amino acids do not influence cell proliferation activity. Neither the charged amino acid Lys or Asp (not transported by A/N/L systems) nor the polyamines putrescine, spermidine, or spermine modulate invasiveness under similar experimental conditions. Moreover, the observed time-dependent stimulation of system A activity (cellular influx of MeAIB) by substrate depletion is prevented by the addition of actinomycin D (5 microM) or cycloheximide (100 microM), suggesting the involvement of de novo RNA and protein synthesis events in these processes. MeAIB treatment of tumor cells selectively increased the activities of key invasion-associated type IV collagenases/gelatinases. These results indicate that in the absence of defined regulators (growth factors or hormones), certain amino acids may contribute to the epigenetic control of human tumor cell invasion and, by extension, metastasis. We propose that amino acids, acting via specific signaling pathways, modulate phenotypic cell behavior by modulating the levels of key regulatory enzymatic proteins.

Amino Acid Transport Systems

The intracellular IL-1 receptor antagonist alters IL-1-inducible gene expression without blocking exogenous signaling by IL-1 beta.

The epithelium-associated tissue distribution of the intracellular IL-1R antagonist (icIL-1Ra) suggests that it functions as a novel regulatory molecule for IL-1 in somatic tissues. We examined the role of the icIL-1Ra in IL-1 beta-induced responses in human ovarian cancer cells because ovarian surface epithelium expresses transcripts for the icIL-1Ra, and the majority of ovarian cancers arise from these cells. Several human ovarian and cervical cancer cell lines spontaneously express the icIL-1Ra. icIL-1Ra-expressing cells did not have altered growth characteristics or altered short term responses to IL-1 compared with icIL-1Ra-nonexpressing cells. While a 90-min exposure to IL-1 beta resulted in increased steady state cytokine mRNA levels in all cells, icIL-1Ra-positive cells were incapable of maintaining IL-1-beta-induced expression of GRO mRNA. This did not result from decreased transcriptional activity of the GRO gene, but reflected differences in mRNA stability and/or degradation. To determine whether the icIL-1Ra altered mRNA stability, we used a retroviral expression vector to express the icIL-1Ra in an icIL-1Ra-negative cell line. The resulting cells displayed a profile of IL-1 beta-induced genes analogous to that found in cells spontaneously expressing icIL-1Ra. These data show for the first time an intrinsic biologic activity for the icIL-1Ra. The capacity to selectively alter IL-1-induced gene expression suggests that this version of the IL-1Ra is a unique intracellular inhibitor that attenuates IL-1 responses at a point downstream of the initial IL-1/IL-1 receptor interaction.

Female

Estrogen-induced anchorage-independence in human endometrial stromal cells.

Estrogens are important etiologic agents for most gynecologic malignancies, and chronic exposure to estrogen that is unopposed by progestins conveys the greatest risk. Treatments with estrogen facilitate the process of malignant transformation in rodents, but relatively few studies of estrogen-induced carcinogenesis have been performed using human cells. Most malignancies in estrogen-responsive tissues arise from epithelial cells, but an increasing body of evidence emphasizes the role of stromal cells as mediators of the effects of estrogens on epithelial cells. Our studies were designed to assess estrogens as carcinogens for human endometrial stromal cells and to provide a basis for studies of the role of stroma in estrogen-induced carcinogenesis in humans. Acute treatments with the estrogens diethylstilbestrol (DES), 17 beta-estradiol (E2) and beta-dienestrol enhance anchorage-independent proliferation (AIP) of SV40-immortalized human endometrial stromal cells in the rank order of DES > E2 > beta-dienestrol. The anti-estrogenic compound tamoxifen inhibits DES-induced AIP. The magnitude of DES-induced AIP increases with prolonged duration of treatment. After 11 months of chronic treatment with 0.1 nM DES, AIP was 20-fold higher than in vehicle-treated control cultures. Expression of the estrogen receptor was altered by treatments with DES in parallel with increased capacity for AIP. These conditionally immortal human endometrial stromal cells appear to be a good model for estrogen-induced transformation of human cells.

Base Sequence

Human endometrial carcinoma cells release factors which inhibit the growth of normal epithelial cells in culture.

Autocrine and paracrine interactions between cells are important homeostatic mediators in normal tissues. Alterations to growth factor signalling pathways are likely to play a role in multistep carcinogenesis. In this study normal human endometrial epithelial cells (NHEC) after 3 days in culture were treated with serum-free medium conditioned for 24 h by log phase or confluent cultures of established RL95-2, HEC1A, or AN3CA endometrial carcinoma (EC) cell lines. By day 4, NHEC treated with either log phase or confluent conditioned medium (CM) showed a significant decrease (approximately 50-90% of control) in [3H]thymidine ([3H]TdR) incorporation. DNA synthesis was inhibited more by confluent than by log phase CM. By day 7, NHEC treated with CM exhibited fewer colonies per culture, fewer cells per colony, and an increased percentage of single cells. Several growth-regulatory gene products found in the nucleus or at the cell membrane have been shown to be expressed differently in normal and transformed cells. We selected the p53 and c-Ha-ras p21 proteins to further investigate the mechanism of alteration of proliferation in cells treated with carcinoma CM. Thus, by day 7, the percentage of NHEC with nuclear localization of wild type p53 (wt p53) was elevated by treatment with CM. In contrast, CM-treated EC cells continued to proliferate, and showed a decrease in the percentage of cells expressing nuclear wt p53 and an increase in the cytoplasmic expression of c-Ha-ras p21. Our studies show that EC cell lines release factors which inhibit the proliferation of NHEC, thus favoring the proliferation of EC cells.

Adenocarcinoma

Transforming growth factor-beta 1 mediates communication between human endometrial carcinoma cells and stromal cells.

The role of transforming growth factor-beta 1 (TGF-beta 1) in communication between human endometrial carcinoma (EC) cells and normal endometrial stromal cells (NSC) was investigated using a cell culture model. Serum-free conditioned medium (CMe) from EC cells (RL95-2, HEC1A) inhibited the proliferation (cells per colony < 50% of control; mitotic index 25-50% of control) of NSC. In contrast, NSC-conditioned medium (CMn) stimulated the proliferation of EC cells, but inhibited the growth of NSC. The proliferation of EC cells was stimulated by the range of dilutions of CMe which inhibited the proliferation of NSC. Using confocal microscopy and a monoclonal antibody, TGF-beta 1, a known product of differentiation in the female reproductive tract, was localized to the cytoplasm of NSC and EC cells. Using a protein slot-blot chemiluminescence method, secreted TGF-beta 1 was detected in serum-free medium conditioned by the growth of NSC and EC cells. TGF-beta 1 antibody-neutralized CMe or CMn stimulated the proliferation of both NSC and EC cells. This study suggests that endometrial carcinoma-stromal cell interactions involve autocrine-paracrine signaling pathways, and that TGF-beta 1 protein is one mediator of such interactions.

Autopsy

Phenobarbital modulates the type of cell death by rat hepatocytes during deprivation of serum in vitro.

An immortal line of chemically altered rat hepatocytes was used to study the effects of the liver tumor promoter, phenobarbital (PB), on hepatocyte growth and viability in vitro. When the serum concentration in medium was changed from 10% to 0.5%, cell proliferation decreased and hepatocytes died. Death of the hepatocytes occurred after 2 days in low-serum medium. PB appeared to control the type of cell death that occurred. In the absence of PB in low-serum medium, most dead cells had morphological changes that are characteristic of necrosis as determined by both light and electron microscopy. In the presence of PB, the dead cells had alterations typical of apoptosis. Biochemical features of cell death in low-serum medium were also analyzed. DNA isolated from cells in low serum with PB showed nucleosome-length fragments after gel electrophoresis, whereas DNA from cells in low serum without PB appeared as randomly degraded fragments. Although proliferation of hepatocytes in low-serum decreased by 75%, the appearance of apoptosis in the presence of PB was associated with increased expression of the c-myc gene. Based on these observations, we conclude that PB can modulate the type of cell death that occurs after serum deprivation in this line of immortal rat hepatocytes. PB seemed to prevent necrotic cell death in low serum, and cells died through a gene-directed pathway of apoptosis.

Animals

Derivation of phenobarbital-responsive immortal rat hepatocytes.

Two lines of rat hepatocytes, designated 6/15 and 6/27, were obtained from carcinogen-treated livers by cultivation in medium containing the liver tumor promoter, phenobarbital (PB). Both lines appeared to be PB-responsive and to have an unlimited in vitro proliferative lifespan, i.e., immortality. The ability of pure 6/27 hepatocytes to form colonies from single cells was strictly dependent upon PB; it was reduced by 97 to 99% in the absence of PB. These hepatocytes were not tumorigenic. For 6/27 hepatocytes in early passages where cultures contained fibroblast contaminants and later when they were a pure culture, PB was able to enhance colony growth from single cells and facilitated population expansion by sustaining DNA synthesis and by inhibiting cell lysis. The 6/15 line displayed PB-dependent colony formation and was not tumorigenic at early passages. At later passages 6/15 hepatocytes were less dependent on PB for colony formation, and they formed hepatocellular carcinoma when transplanted into livers of syngeneic rats. The demonstration that PB sustained the proliferation and viability of hepatocytes with enhanced growth capacity and indefinite proliferative lifespan suggests that PB may be necessary for progression of these chemically initiated hepatocytes to immortal and tumorigenic lines in vitro.

Animals

Management of prostatic abscess in patients with human immunodeficiency syndrome.

OBJECTIVE: To review and assess the management and evaluation of prostatic abscess in patients with the acquired immunodeficiency syndrome (human immunodeficiency virus [HIV]). METHODS: Retrospectively reviewed 7 cases of prostatic abscess in HIV-positive patients treated at our institution. RESULTS: All 7 patients presented with fever and irritative voiding symptoms. Only 1 patient had a positive initial urine culture; 3 of 5 operative cases only had positive intraoperative culture. Organisms cultured were Staphylococcus aureus, enterococcus. Mycobacterium tuberculosis, and Mycobacterium avium. CONCLUSIONS: Transrectal ultrasonography is the imaging modality of choice for diagnosing this condition; it also directs the appropriate surgical approach. Transurethral unroofing should be attempted whenever significant extension outside the prostate is not found. Intraoperative cultures for aerobes, anaerobes, fungi, and mycobacteria must be obtained.

AIDS-Related Opportunistic Infections

In vitro interactions of endometrial stromal and epithelial cells in Matrigel: reorganization of the extracellular matrix.

Fragments of human endometrial glands and dispersed endometrial stromal cells were cultured together in a thick layer of reconstituted basement membrane (Matrigel). Epithelial cells kept their glandular morphology whereas stromal cells grew into round clusters of mainly fusiform cells. Transmission electron micrographs showed collagen fibers between stromal cells as well as in surrounding extracellular matrix after 2.5 weeks. A well-defined basement membrane was found when epithelial and stromal cells were in close proximity to each other. Beneath the lamina densa there was a loose network of collagen fibers or a dense fibrillar network arranged parallel to the cell layers. Epithelial cells showed hemidesmosomes at their basal surface where they were close to stromal cells.

Cell Communication

Association of putative origins of replication with the nuclear matrix in normal human fibroblasts.

Several metabolic processes, such as DNA organization and replication, transcription, and RNA processing are closely associated with the nuclear matrix. Nuclear matrix attachment regions are nucleotide sequences holding DNA tightly complexed with the nuclear scaffold and are resistant to extractions with detergents and high salt solutions. The role of matrix attachment regions in DNA replication has not been completely clarified, but they have been identified in close association with origins of replication in mammalian cells. We isolated nuclear matrix-associated DNA from normal human fibroblasts synchronized to different phases of the cell cycle and cloned compatible fragments into pUC19. We tested the homology of a fraction of the available clones to DNA replicated at the beginning of the S phase in human fibroblasts. We confirmed that nuclear matrix-associated DNA isolated from cells in G0 and G1 phases of the cell cycle contains sequences that are among the earliest replicated regions in the human genome. This finding supports the hypothesis that matrix attachment regions in human DNA are located in close proximity to origins of DNA replication.

Cells, Cultured

Development of a novel human extracellular matrix for quantitation of the invasiveness of human cells.

During the crucial stages of tumor cell invasion and metastasis, neoplastic cells must traverse extracellular matrices for their migration to distant sites. Because basement membranes (BM) serve as a critical barrier to such passages, most previous in vitro assay models have utilized either an intact BM or a reconstituted rodent or avian BM-matrix to study this process. We have created a gel-like extracellular matrix derived from human amnions which contained type IV collagen, laminin, entactin, tenascin and heparan sulfate proteoglycan. This matrix, which we called Amgel, was used to study selected steps of invasion including cell attachment to matrix, degradation of it by proteolytic enzymes and movement of human tumor cells through matrix defects. An efficient tumor invasion assay system was developed utilizing filter-supported uniform coatings of this matrix in chambers. Human tumor cells (HT-1080 fibrosarcoma and RL-95 adenocarcinoma), when seeded onto Amgel-coated membranes, attached to matrix within 2 h and initiated a time-dependent migration and invasion process, as verified by biochemical analysis and both light and electron microscopy. In an optimized invasion assay 12-15% of tumor cells completely traversed the matrix during a 72-h period with > 90% viability. In contrast to these highly-invasive cells, normal human foreskin fibroblasts and normal human endometrial stromal cells exhibited minimal migration/matrix penetration during the same time period. When the Amgel-selected tumor cells (i.e. those penetrating the barrier) were isolated, subcultured, and re-exposed to Amgel, they had heightened invasiveness (2-3-fold) as compared to the parental cells. Thus, this improved 'all human' system for quantitating the invasive ability of tumor cells may provide a valuable tool in dissecting out the mechanistic underpinnings of human metastasis. In addition, this assay has the ability to screen agents which have potential anti-invasive and by extension anti-metastatic, activity or chemotactic properties.

Basement Membrane

Conditional immortalization of human endometrial stromal cells with a temperature-sensitive simian virus 40.

The study of immortalization and other alterations associated with neoplastic transformation of endometrial stromal cells is important to understanding the development of uterine sarcomas and mixed tumors. Because stromal cells are important regulators of associated epithelial cells, alterations in the regulation of stromal cell proliferation that influence epithelial cells may also contribute to the development of endometrial carcinomas. To study immortalization and associated phenotypic and genetic alterations of human endometrial stromal cells, cultures were transfected with a plasmid containing an ori-, temperature-sensitive mutant SV40, A209 (tsSV40). Morphologically transformed colonies were selected and propagated at the permissive temperature until they entered 'crisis'. In contrast to human fibroblasts, every clone tested was immortalization competent. The frequency of immortalization was approximately 1 x 10(-6). One uncloned and six cloned cell lines escaped from crisis and appear to be immortal. Two clones, M4 and B10T1, were selected for further study. Immortalization is conditional; proliferative arrest occurs at the restrictive temperature for large T antigen function. Furthermore, withdrawal of the large T antigen results in expression of the senescent phenotype of enlarged, flattened cells. Colony-forming efficiency at the restrictive temperature was undetectable. Immortalization is also associated with several genetic alterations. The DNA content of tsSV40 transfected cells was either diploid or tetraploid in the precrisis stage of proliferation, but became aneuploid upon immortalization. Several structural rearrangements of chromosomes were detected in the immortalized stromal cells which differ from those found in SV40 immortalized fibroblasts. Although their capacity for anchorage-independent proliferation (AIP) is variable, tsSV40-immortalized endometrial stromal cells have a higher capacity for AIP than their tsSV40-transfected progenitor cells in the period of proliferation prior to 'crisis'.

Antigens, Polyomavirus Transforming

Cell cycle control, DNA repair and initiation of carcinogenesis.

We hypothesize that degradation of controls that normally act to inhibit cell proliferation is an early step in carcinogenesis. This alteration gives rise to initiated clones that display a selective growth advantage over normal cells when subjected to appropriate growth-promoting influences. In cell culture, such initiated cells also may display a selective growth advantage that lets them proliferate under conditions in which normal cell growth ceases. Cells with these properties have been designated enhanced-growth variants (EGVs)2 (1) or extended life span variants (ELVs) (2). We propose that the EGV/ELV phenotypes in vitro and initiation of carcinogenesis in vivo are consequences of genetic changes in pathways that regulate the passage of cells through the cell cycle. These regulatory pathways normally delay or arrest cell cycle progression in response to homeostatic regulators and DNA damage. DNA damage induced by a variety of genotoxic agents triggers delays in cycle progression at three steps of the cell cycle. Two of these involve delays in progression from G1 into S phase and G2 into mitosis. The third occurs within S phase cells and involves reduction in the rate of initiation of DNA synthesis in replicon clusters. If these cycle delay responses fail, damaged DNA may be replicated before it is adequately repaired. This would enhance production of additional genetic alterations. Thus, mutations in genes that normally exert a negative control over cell cycle progression may give cells a growth advantage and make the cells more genetically unstable.

Animals