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L Eckmann

Publications and source records attributed to L Eckmann.

At least 55 records · Page 3Linked to original sources

Expression of Salmonella typhimurium rpoS and rpoS-dependent genes in the intracellular environment of eukaryotic cells.

Adaptation to the intracellular environment of host cells is crucial for the pathogenesis of Salmonella infections. The alternative sigma factor RpoS is a global regulator of gene expression during starvation and stress conditions and is required for virulence in Salmonella spp. We have used lacZ reporter fusions to rpoS and rpoS-dependent genes to study rpoS regulation after entry of Salmonella typhimurium into macrophages and epithelial cells. The results demonstrate that expression of an rpoS::lacZ translational fusion increases rapidly in S. typhimurium after phagocytosis. Activity of RpoS also increases after bacterial entry into both macrophages and epithelial cells, as demonstrated by the induction of the rpoS-regulated genes katE and spvB. A control rpoS-independent promoter for neomycin resistance does not show significant induction after cell entry. These results demonstrate that the regulatory system mediated by RpoS in S. typhimurium is activated by the intracellular environment of eukaryotic cells.

Animals↗

Intestinal epithelial cells as watchdogs for the natural immune system.

Intestinal epithelial cells secrete a spectrum of chemoattractant and proinflammatory cytokines after invasion by bacteria. We suggest the novel concept that epithelial cells not only act as a mechanical barrier to invasive bacteria, but that they also signal the presence of invasive pathogens to the mucosal immune and inflammatory cells.

Animals↗

A distinct array of proinflammatory cytokines is expressed in human colon epithelial cells in response to bacterial invasion.

Pathogenic bacteria that penetrate the intestinal epithelial barrier stimulate an inflammatory response in the adjacent intestinal mucosa. The present studies asked whether colon epithelial cells can provide signals that are important for the initiation and amplification of an acute mucosal inflammatory response. Infection of monolayers of human colon epithelial cell lines (T84, HT29, Caco-2) with invasive strains of bacteria (Salmonella dublin, Shigella dysenteriae, Yersinia enterocolitica, Listeria monocytogenes, enteroinvasive Escherichia coli) resulted in the coordinate expression and upregulation of a specific array of four proinflammatory cytokines, IL-8, monocyte chemotactic protein-1, GM-CSF, and TNF alpha, as assessed by mRNA levels and cytokine secretion. Expression of the same cytokines was upregulated after TNF alpha or IL-1 stimulation of these cells. In contrast, cytokine gene expression was not altered after infection of colon epithelial cells with noninvasive bacteria or the noninvasive protozoan parasite, G. lamblia. Notably, none of the cell lines expressed mRNA for IL-2, IL-4, IL-5, IL-6, IL-12p40, IFN-gamma, or significant levels of IL-1 or IL-10 in response to the identical stimuli. The coordinate expression of IL-8, MCP-1, GM-CSF and TNF alpha appears to be a general property of human colon epithelial cells since an identical array of cytokines, as well as IL-6, also was expressed by freshly isolated human colon epithelial cells. Since the cytokines expressed in response to bacterial invasion or other proinflammatory agonists have a well documented role in chemotaxis and activation of inflammatory cells, colon epithelial cells appear to be programmed to provide a set of signals for the activation of the mucosal inflammatory response in the earliest phases after microbial invasion.

Animals↗

Entamoeba histolytica trophozoites induce an inflammatory cytokine response by cultured human cells through the paracrine action of cytolytically released interleukin-1 alpha.

Infection with the protozoan parasite Entamoeba histolytica results in a high mortality worldwide. To initiate infection, E. histolytica trophozoites in the bowel lumen penetrate the epithelium, and cause extensive lysis of host cells. The acute amebic lesions in animal models are characterized by infiltration with inflammatory cells, particularly neutrophils. The acute host response is likely important for determining whether the infection will spread systemically, but little is known regarding the signals which initiate an acute inflammatory response to E. histolytica. In the studies reported herein, we used an in vitro model system to define the proinflammatory signals produced by epithelial and other host cells in response to infection with E. histolytica trophozoites. Coculture of human epithelial and stromal cells and cell lines with trophozoites is shown to increase expression and secretion of an array of chemoattractant and proinflammatory cytokines, including IL-8, GRO alpha, GM-CSF, IL-1 alpha, and IL-6. Moreover, high-level secretion of those cytokines is regulated by the paracrine action of cytolytically released IL-1 alpha. A second mechanism for trophozoite-induced IL-8 production involves trophozoite-target cell contact via a galactose-inhibitable amebic adherence protein, and appears to be mediated through increased intracellular calcium levels. These studies define novel mechanisms through which acute inflammation can be initiated in the host in response to a cytolytic pathogen, such as E. histolytica.

Animals↗

Perturbations of multiple hemopoietic lineages in retrovirus-induced murine malignant histiocytosis.

A fatal systemic proliferation of malignant histiocytes resembling human malignant histiocytosis was induced in susceptible mice following infection with the murine retrovirus malignant histiocytosis sarcoma virus (MHSV). It is shown that MHSV additionally caused profound alterations of erythropoiesis, granulocytopoiesis and thrombocytopoiesis, and in the hemopoietic stem cell compartment. In the erythroid lineage, MHSV induced a normocytic peripheral anemia, which was paralleled by an unphysiologic, multifocal clonal expansion of erythroid blasts in the spleen. These cells were not transformed and appeared to have a maturation defect since blood reticulocytes did not increase above control values. Moreover, MHSV exerted cytopathic effects on neutrophilic granulocytes and megakaryocytes, since their numbers transiently decreased in the spleen, and agranulocytosis and thrombocytopenia was observed in the blood. Nonetheless, regeneration was found in both lineages at later stages of the infection, which was accompanied by a terminal granulocytosis. The number of lineage-committed and multipotential colony-forming cells in the CFU-S assay increased transiently, but decreased to very low levels in the final stages of the disease. Thus, the studies demonstrate that the same etiologic agent, MHSV, had different effects on hemopoietic cells, which included malignant transformation, hyperproliferative and cytopathic effects.

Anemia↗

Increased transcription and coordinate stabilization of mRNAs for secreted immunoglobulin alpha heavy chain and kappa light chain following stimulation of immunoglobulin A expressing B cells.

Immunoglobulin A (IgA) plays a key role in host protection at mucosal surfaces, yet little is known regarding the molecular mechanisms that govern the expression of this isotype. The studies herein investigated mechanisms that control IgA secretion in response to stimulation with interleukin-4 and interleukin-5, cytokines which are known to regulate IgA responses, and to bacterial lipopolysaccharide. Two mechanisms were shown to govern agonist induced IgA expression in a murine IgA expressing B cell line. In the initial period after stimulation, increased mRNA levels for the secreted form of alpha heavy chain (alpha s), and kappa light chain were paralleled by a transient increase in transcription rates of the corresponding genes. However, with prolonged agonist stimulation, gene transcription rates decreased to near control levels, and increased mRNA levels were associated with a coordinate increase in alpha s and kappa mRNA stability. In striking contrast, these agonists did not affect levels or stability of mRNA for the membrane form of alpha heavy chain (alpha m). Alpha s mRNAs contained multiple poly(A) addition sites located 13-32 nucleotides downstream of a single AAUAAA sequence. Nonetheless, the differential usage of these sites as a mechanism for controlling alpha s mRNA stability could be excluded, since the relative abundance of these different alpha s mRNAs did not differ significantly after agonist stimulation. These data, taken together, suggest that sequences within 107 nucleotides of the 3' end of alpha s mRNA, which are absent in alpha M mRNA, are required for the regulation of alpha s mRNA stability, possibly by acting as targets for regulated trans-acting cellular factors.

Animals↗

Colonic epithelial cell lines as a source of interleukin-8: stimulation by inflammatory cytokines and bacterial lipopolysaccharide.

Cytokines produced by intestinal epithelial cells may function as signals to neighbouring immune and inflammatory cells. We investigated production of the neutrophil and T-lymphocyte chemotactic cytokine interleukin-8 (IL-8) by intestinal epithelial cells using four colonic adenocarcinoma cell lines, T84, CaCo-2, HT29 and SW620, as a model system. These cell lines secreted substantial amounts of IL-8 if stimulated with IL-1 beta, tumour necrosis factor-alpha (TNF-alpha) or interferon-gamma (IFN-gamma), except CaCo-2 cells, which responded only to IL-1 beta. Bacterial lipopolysaccharide (LPS) was also an efficient stimulus of IL-8 release in SW620 and HT29 cells, whereas T84 and CaCo-2 cells were completely unresponsive to LPS, IL-8 secretion was greater at 4 hr after stimulation and was accompanied by induction of IL-8 messenger RNA. In T84 cells IFN-gamma and epidermal growth factor (EGF) stimulated IL-8 secretion synergistically with TNF-alpha, whereas in SW620 cells this synergism occurred only between IFN-gamma and TNF-alpha. IL-4, IL-10 and transforming growth factor-beta (TGF-beta), which can down-regulate IL-8 production in macrophages, had no effect on IL-8 generation by our cell lines. Adenocarcinoma cell culture supernatants also induced rapid transients of intracellular calcium in neutrophils. Depending on cell line and stimulus, supernatant bioactivity was completely or partially abrogated by neutralizing antibodies to IL-8, indicating that the cell lines investigated also generate other neutrophil-activating factors. IL-8 and possibly other chemokines generated by colonic adenocarcinomas may help to attract tumour-infiltrating leucocytes. Possibly, normal intestinal epithelial cells also have the potential to secrete this potent chemoattractant and thus might contribute to inflammatory responses of the intestinal mucosa, for example in inflammatory bowel disease.

Colon↗

Differential cytokine expression by human intestinal epithelial cell lines: regulated expression of interleukin 8.

BACKGROUND: To characterize the role of intestinal epithelial cells in mucosal host defense, we have examined constitutive cytokine expression and regulated expression of interleukin (IL)-8 by human colonic epithelial cells. METHODS: Cytokine expression by the human colonic epithelial cell lines, T84, Caco-2, SW620, and HT29 was assessed by using polymerase chain reaction amplification of reverse-transcribed RNA. Regulated IL-8 expression was analyzed by nuclear run-off assays, Northern blot analysis, and enzyme-linked immunosorbent assay. RESULTS: The cell lines constitutively expressed messenger RNA (mRNA) for IL-8 and transforming growth factor beta 1. In addition, some cell lines expressed mRNA for IL-1 alpha, IL-1 beta, IL-10 and tumor necrosis factor alpha (TNF alpha). None of the cell lines expressed mRNA for IL-2, IL-4, IL-5, IL-6, or interferon gamma. Cell lines secreted IL-8 either constitutively or after stimulation with the physiological agonists TNF alpha, IL-1 beta, or lipopolysaccharide. Increased IL-8 secretion after TNF alpha stimulation of T84 cells was accompanied by increased IL-8 mRNA levels and an increased transcription rate of the IL-8 gene. IL-8 was preferentially secreted at the basolateral surface of polarized T84 cells. In further studies, freshly isolated human colon epithelial cells also secreted IL-8. CONCLUSIONS: These results support the notion of bidirectional communication between intestinal epithelial cells and mucosal immune and inflammatory cells.

Base Sequence↗

Epithelial cells secrete the chemokine interleukin-8 in response to bacterial entry.

Bacterial invasion of mucosal surfaces results in a rapid influx of polymorphonuclear leukocytes. The chemotactic stimulus responsible for this response is not known. Since epithelial cells are among the first cells entered by many enteric pathogens, we investigated the ability of epithelial cells to provide an early signal for the mucosal inflammatory response through the release of chemotactic cytokines. As shown herein, the chemokine interleukin-8 (IL-8), a potent chemoattractant and activator of polymorphonuclear leukocytes, was secreted by intestinal and cervical epithelial cells in response to bacterial entry. Moreover, a variety of different bacteria, including those that remain inside phagosomal vacuoles, e.g., Salmonella spp., and those that enter the cytoplasm, e.g., Listeria monocytogenes, stimulated this response. Increased IL-8 mRNA levels could be detected within 90 min after infection. Neither bacterial lipopolysaccharide nor noninvasive bacteria, including Escherichia coli and Enterococcus faecium, induced an IL-8 response. Moreover, tumor necrosis factor alpha, which is known to be expressed by some epithelial cells, was not detected in the culture supernatants after bacterial entry, and addition of anti-tumor necrosis factor alpha antibodies had no effect on the IL-8 response following bacterial entry. These data suggest the novel concept that epithelial cells serve as an early signaling system to host immune and inflammatory cells in the underlying mucosa following bacterial entry.

Bacterial Physiological Phenomena↗

Expression of the Salmonella virulence plasmid gene spvB in cultured macrophages and nonphagocytic cells.

Certain serotypes of salmonellae carry virulence plasmids that greatly enhance the pathogenicity of these bacteria in experimentally infected mice. This phenotype is largely attributable to the 8-kb spv regulon. However, spv genes are not expressed while bacteria grow in vitro. We now show that spvB, which is required for virulence, is expressed rapidly after Salmonella dublin is ingested by cultured J774 and murine peritoneal macrophages and that expression is not affected by the alkalinization of intracellular vesicles. The level of induction of spvB is reduced when macrophages are pretreated with gamma interferon. spvB is also expressed in human and canine epithelial cell lines and a human hepatoma cell line. In all cases, spvB expression is dependent on the spvR gene, just as it is in stationary-phase cultures in vitro. These data suggest that spv virulence genes are expressed by intracellular salmonellae in vivo in response to a signal that is common to the intracellular compartments of cells that are invaded by salmonellae.

Animals↗

Cytokine-induced differentiation of IgA B cells: studies using an IgA expressing B-cell lymphoma.

Cytokines such as interleukin-5 (IL-5) and transforming growth factor beta 1 (TGF beta 1) increase IgA production by heterogeneous populations of lipopolysaccharide (LPS)-activated murine B cells. We have used IgA expressing murine B-lymphoma cells CH12.LX.C4.4F10 (4F10) to define the activity of these and other cytokines on IgA secretion at the single-cell level, membrane IgA expression, IgA polymerization and cell growth. IL-5 as well as LPS significantly increases IgA secretion of 4F10 cells, whereas TGF beta 1, a cytokine known to stimulate isotype switching to IgA among surface IgM-bearing B cells, inhibits IgA secretion. When tested alone, IL-1 beta, IL-2, IL-4, IL-6 and interferon-gamma (IFN-gamma) do not significantly alter IgA secretion. However, there is a synergistic increase in IgA secretion when 4F10 cells are co-stimulated with IL-5 and IL-4, while IFN-gamma inhibits IL-5-stimulated up-regulation of IgA secretion. In parallel with increased IgA secretion after cytokine stimulation, 4F10 cells display less membrane IgA. Increased J-chain steady-state mRNA levels after IL-5 or LPS stimulation are paralleled by increased mRNA levels for secreted IgA, but are not accompanied by alterations in the ratio of monomeric to polymeric IgA. IL-5 and LPS initially stimulated but later inhibited 4F10 cell proliferation suggesting an inverse relationship between proliferation and differentiation in this cell line. 4F10 cells are a useful model for the characterization of discrete aspects of IgA B-cell differentiation, since the secretory and membrane Ig and proliferative responses of this IgA B-cell line to cytokines and LPS appear to parallel those of freshly isolated murine B cells.

Animals↗

Synergistic interactions allow colony formation in vitro by murine haemopoietic stem cells.

A clonogenic assay for cells that give rise to macroscopic colonies in agar or methyl cellulose cultures using untreated, normal murine bone marrow as a source of stem cells is described. We have characterized the clonogenic cell, which has been designated CFU-A, by comparing its properties with those of multipotential stem cells (assayed as CFU-S) and lineage-restricted progenitor cells (assayed as GM-CFC). The investigations have included assessment of proliferative status and response to CFU-S proliferation regulators, response to 5-fluorouracil, buoyant cell density, radial distribution in the femur and response to ionizing radiation. We conclude that the CFU-A has properties in common with CFU-S that differ from those of GM-CFC. The data are consistent with the CFU-A assay detecting part of the multipotential stem cell population also detected by spleen colony formation.

Animals↗

[Hematopoietic stem cells (CFU-S) in retrovirus-induced murine malignant histiocytosis].

The murine malignant histiocytosis sarcoma virus (MHSV) is a replication-defective murine retrovirus which contains a ras-oncogen. Upon intravenous infection of normal adult NIH-mice a rapidly fatal systemic proliferation of transformed mononuclear phagocytes develops. We have investigated the involvement of other mature hematopoietic lineages and of hematopoietic stem cells during the course of the disease. The erythroid lineage is affected by a profound anemia which is temporarily accompanied by an increase of erythroid precursors in bone marrow and spleen and a final ablation of erythroid stem cells. A granulopenia occurs with a concurrent decrease of granulocytic precursors and stem cells. The platelets fall to very low levels early during the disease despite of an increase of megakaryocytes and megakaryocytic stem cells. Multipotential stem cells show temporarily a slight increase followed by an almost total terminal ablation. The results show that MHSV has distinct effects on other hematopoietic lineages apart from its transforming properties.

Animals↗

A novel in vitro assay for murine haematopoietic stem cells.

Study of the biology of haematopoietic stem cells is crucially dependent on the availability of suitable in vitro assays. Existing assays have suffered from the fact that they detect small subcompartments of the total stem cell compartment. This limits experiments where it is required to assay a high proportion of stem cells, e.g. the enumeration of stem cell numbers under varying conditions or the identification and purification of stem cell regulators. We describe an in vitro assay which shows macroscopic colony formation and limited self-renewal capacity in vitro. The detected cell (CFU-A) has a low cycling status in normal bone marrow (NBM) and responds to known stem cell regulators. The incidence (100-200 per 10(5) in NBM), the proliferative characteristics under stress and some of the physical properties are similar to stem cells detected by colony formation after transplantation into lethally irradiated recipients (CFU-S). These data indicate that our assay detects a high proportion of haematopoietic stem cells in vitro. This will facilitate experiments on stem cell behaviour which have previously been difficult to conduct.

Animals↗

The effect of stem cell proliferation regulators demonstrated with an in vitro assay.

Spleen colony formation after transplantation of bone marrow cells into irradiated mice has been used as an assay for hematopoietic stem cells (CFU-S), but has serious limitations intrinsic to an in vivo assay. In this report we describe experiments using an in vitro clonogenic assay that is especially suitable for studies of stem cell regulation as defined growth factors and normal untreated bone marrow can be used. We have demonstrated that the colony-forming cells have proliferative properties in common with CFU-S and respond to specific proliferation regulators previously detected using the spleen colony assay.

Animals↗