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Biomedical subjects

J Uitto

Publications and source records attributed to J Uitto.

At least 19 recordsLinked to original sources

Tumor necrosis factor-alpha down-regulates human elastin gene expression. Evidence for the role of AP-1 in the suppression of promoter activity.

Cytokine modulation of elastin gene expression was examined by assay of elastin mRNA abundance and by transient transfections of cultured human skin fibroblasts and rat aortic smooth muscle cells with elastin promoter/reporter gene (chloramphenicol acetyltransferase, CAT) constructs. Incubation of cells with human recombinant tumor necrosis factor-alpha (TNF-alpha) markedly suppressed the elastin mRNA levels in a time- and dose-dependent manner by up to 91%. TNF-alpha also suppressed the expression of the elastin promoter/CAT construct by up to 70% in transiently transfected cells, indicating regulation at the transcriptional level. This suppression was temporally preceded by rapid and transient up-regulation of c-jun and c-fos genes. The down-regulatory effect of TNF-alpha on elastin promoter activity was abolished by co-transfections with a synthetic double-stranded AP-1 oligomer. Furthermore, co-transfection of the elastin promoter construct with c-jun and c-fos expression plasmids resulted in a marked decrease in the promoter activity. Elucidation of the cis-regulatory elements in the elastin promoter by 5' deletion construct analysis implicated a region -290 to -198 containing one AP-1 binding site. The functional role of this AP-1 site was further tested by gel retardation assays which indicated formation of a DNA-protein complex specific for TNF-alpha treated cells. This complex could be partially dissociated by a competing oligomer containing the consensus AP-1 binding site. These observations suggest that the inhibitory effects of TNF-alpha on elastin gene expression involve the transcription factor AP-1. Interferon-gamma also suppressed the elastin gene expression at the mRNA level by approximately 52%, but it had no effect on the elastin promoter activity, suggesting post-transcriptional mechanisms. These results indicate that mediators released from inflammatory cells can modulate elastin gene expression, and such modulation may play a role in diseases characterized by altered accumulation of elastic fibers in tissues.

Adult

Leukoregulin, a T cell-derived cytokine, induces IL-8 gene expression and secretion in human skin fibroblasts. Demonstration and secretion in human skin fibroblasts. Demonstration of enhanced NF-kappa B binding and NF-kappa B-driven promoter activity.

It was shown previously that leukoregulin (LR), a T cell-derived cytokine with unique antitumor properties, modulates fibroblast functions in vitro, including prostaglandin production, matrix synthesis, and protease gene expression. Here, we have focused on the ability of LR to modulate IL-8 gene expression in human dermal fibroblasts. Using a specific ELISA, we demonstrated a dose-dependent enhancement of IL-8 production by LR, accompanied by a parallel elevation of the corresponding mRNA levels, as measured by Northern hybridizations. Maximum accumulation of IL-8 mRNA was observed after 6 h of incubation with LR, and the elevation persisted over 24 h. Inhibition of protein synthesis by cycloheximide resulted in superinduction of IL-8 mRNAs by LR. Dexamethasone, all-trans-retinoic acid, and TGF-beta 1 failed to counteract the effect of LR on IL-8 gene expression. Transient cell transfections with an IL-8 promoter/CAT reporter gene construct showed a dose-dependent enhancement of the promoter activity by LR, suggesting transcriptional regulation. Gel shift assays with oligonucleotides containing the consensus NF-kappa B binding sequences of the IL-8 and Ig kappa light chain genes showed enhanced binding activity in nuclear extracts from cells incubated with LR. Transient transfection experiments using a NF-kappa B/SV2 promoter-CAT reporter gene construct showed enhanced CAT activity by LR. Taken together, these data suggest that LR may up-regulate IL-8 gene expression by activation of the binding of NF-kappa B to the corresponding cis-acting element in the IL-8 promoter. Our results demonstrate that LR, together with IL-1 and TNF-alpha, could participate in the recruitment of neutrophils to the sites of inflammation by induction of IL-8 production in fibroblasts.

Antineoplastic Agents

Leukoregulin down-regulates type I collagen mRNA levels and promoter activity in human dermal fibroblasts, and counteracts the up-regulation elicited by transforming growth factor-beta.

Leukoregulin (LR), a T-cell-derived growth factor, modulates fibroblast functions in vitro [Mauviel, Rédini, Hartmann, Loyau & Pujol (1991) J. Cell Biol. 113, 1455-1462]. In the present study, incubation of human dermal fibroblasts with LR (0.1-2 units/ml) resulted in decreases in the mRNA steady-state levels for alpha 1(I), alpha 2(I) and alpha 1(III), but not alpha 2(V), collagen genes. LR also down-regulated alpha 2(I) collagen promoter activity in transient cell transfections of control cells as well as those incubated with transforming growth factor-beta, a potent up-regulator of collagen type I gene expression. Thus LR is a strong inhibitor of type I collagen gene expression, acting at the level of transcription.

Antineoplastic Agents

Transcriptional activation of fibroblast collagenase gene expression by a novel lymphokine, leukoregulin.

Leukoregulin (LR) is a novel T-cell derived cytokine with unique anti-tumor properties. We have recently demonstrated that LR is also able to modulate the biosynthetic repertoire of normal human skin fibroblasts in culture (Mauviel, A., Rédini, F., Hartmann, D.J., Pujol, J.-P., and Evans, C.H. (1991) J. Cell Biol. 113, 1455-1462). In this study, we have examined in detail the effects of LR on collagenase gene expression in human skin fibroblast cultures. The results indicated time- and dose-dependent induction of collagenase mRNA steady-state levels, the maximum elevation being approximately 35-fold. In contrast, the mRNA levels for tissue inhibitor of metalloproteases remained unchanged in the same RNA preparations. The enhancement of collagenase mRNA levels was shown to be dependent on protein synthesis, and it could be counteracted by dexamethasone or all-trans-retinoic acid. Transient transfections of cultured fibroblasts with a human collagenase promoter/reporter gene construct indicated up-regulation of the promoter activity, which could be blocked by dexamethasone and all-trans-retinoic acid. The observation suggested regulation at the transcriptional level of collagenase gene expression. LR was also shown to induce the mRNA levels for junB, suggesting possible involvement of the AP-1 complex in the regulation. The ability of LR to selectively induce collagenase gene expression in skin fibroblasts suggests that this cytokine may significantly contribute to the degradation of the extracellular matrix in physiological situations, such as tissue development and repair, and in diseases characterized by excessive degradation and turnover of collagen.

3T3 Cells

The cause and pathogenesis of the eosinophilia-myalgia syndrome.

OBJECTIVE: To review recent advances in the understanding of the cause and pathogenesis of the eosinophilia-myalgia syndrome associated with ingestion of L-tryptophan. DATA SOURCES: Studies published from 1989 to 1991 were identified using a MEDLINE literature search. Additional references were selected from the bibliographies of identified articles. DATA SYNTHESIS: The eosinophilia-myalgia syndrome was epidemiologically associated with ingestion of L-tryptophan-containing preparations. Analysis of case-associated lots of L-tryptophan has revealed several chemical impurities. One of these, labeled "peak E," is an unusual dimeric form of L-tryptophan (1,1'-ethylidenebis[tryptophan]), and its presence is associated with the eosinophilia-myalgia syndrome (P = 0.022). Evidence of abnormal metabolism of tryptophan has been found in some patients with the syndrome. Eosinophil activation and the release of major basic protein and other eosinophil-derived toxic proteins into the extracellular space is a striking feature in the eosinophilia-myalgia syndrome and implicates eosinophils or their products in the pathogenesis. Mononuclear cell activation and infiltration of various affected tissues as well as fibrosis of the integument and of the connective tissue components of blood vessels, nerves, and muscles are additional frequent findings. CONCLUSIONS: Current evidence suggests that the epidemic of the eosinophilia-myalgia syndrome was caused by contaminated L-tryptophan preparations originating from a single manufacturer. Peak E or other, as yet unidentified, contaminants may trigger activation of eosinophils and inflammatory cells and increase biosynthesis of connective tissue components, resulting in the clinical and pathologic manifestations of the eosinophilia-myalgia syndrome. Further studies of the interaction of eosinophils, inflammatory cells, and fibroblasts may increase the understanding of the pathogenesis of the eosinophilia-myalgia syndrome. The insights gained from the epidemic may be applicable to more common idiopathic diseases associated with eosinophilia and fibrosis.

Drug Contamination

Elevated expression of beta 1 and beta 2 integrins, intercellular adhesion molecule 1, and endothelial leukocyte adhesion molecule 1 in the skin of patients with systemic sclerosis of recent onset.

OBJECTIVE: To investigate the possible role of integrins and cell adhesion molecules in the pathogenesis of the mononuclear cell infiltration and fibrosis of skin that occurs in systemic sclerosis (SSc). METHODS: The presence and topographic distribution of beta 1, beta 2, and beta 4 integrins, as well as of endothelial leukocyte adhesion molecule 1 (ELAM-1) and intercellular adhesion molecule 1 (ICAM-1), was examined immunohistochemically in affected skin from 8 patients with rapidly progressive SSc of recent onset. The expression of the beta 1 integrin gene was also investigated by in situ hybridization with a human sequence-specific complementary DNA. RESULTS: The presence of beta 1 integrin epitopes and the corresponding messenger RNA within inflammatory cells surrounding small vessels was demonstrated in SSc skin but not in normal skin. Lymphocytes positive for beta 2 integrin were also found only in SSc skin, and they appeared in close proximity to small blood vessels and collagen bundles. Immunostaining for beta 4 integrin epitopes revealed no differences between normal and SSc skin. ELAM-1 and ICAM-1 monoclonal antibodies, which identify epitopes indicative of endothelial cell activation, stained endothelial cells in SSc skin but not normal skin. CONCLUSION: These observations suggest that the complex interactions of beta 1 and beta 2 integrins, as well as ELAM-1 and ICAM-1, may be intimately involved in the pathogenesis of SSc, perhaps by mediating the homing and targeting of pathogenetic lymphocytes to the affected tissues.

Antibodies, Monoclonal

Leukoregulin, a T-cell derived cytokine, upregulates stromelysin-1 gene expression in human dermal fibroblasts: evidence for the role of AP-1 in transcriptional activation.

Leukoregulin (LR), a product of activated T-cells, has been recently shown to modulate the metabolism of extracellular matrix components in human skin fibroblast cultures (Mauviel et al., J Cell Biol 113:1455-1462, 1991). In this study we focused our attention on the effects of LR on the expression of stromelysin-1 gene. This matrix metalloprotease has a broad spectrum of degradative activity and it is also required for maximal activation of interstitial collagenase. Incubation of skin fibroblast cultures with LR resulted in a dose- and time-dependent elevation of stromelysin-1 mRNA levels, the maximum enhancement being up to approximately sevenfold. This effect was abolished by cycloheximide, suggesting a requirement for ongoing protein synthesis. Transient cell transfections with a promoter/reporter gene construct containing 1.3 kb of 5' flanking DNA of the human stromelysin-1 gene linked to the chloramphenicol acetyl transferase (CAT) gene, indicated enhancement of promoter activity by LR. This enhancement was abolished by a single base substitution in the AP-1 binding site of the promoter. Furthermore, gel mobility shift assays demonstrated enhanced AP-1 binding activity in nuclear extracts from cells incubated with LR. However, LR did not alter the activity of a construct containing three AP-1 sequences in front of the thymidine kinase promoter linked to the CAT gene. These results collectively suggest that activation of stromelysin-1 gene expression by LR is mediated by AP-1 regulatory elements which are necessary, but not sufficient, for gene response.

Base Sequence

Differential extracellular matrix gene expression by fibroblasts during their proliferative life span in vitro and at senescence.

Increasing evidence supports the idea that the finite proliferative life span of normal fibroblasts is a differentiation-like phenomenon. If this were correct, an ordered sequence of differential gene expression should be associated with the in vitro progression of cells from low passage to high passage (senescence). To define the pattern of expression of fibroblast differentiation-associated genes during this in vitro progression, we have determined the temporal pattern of expression of extracellular matrix (ECM) genes in Syrian hamster dermal fibroblasts as a function of passage level and percentage of proliferative life span in vitro. Steady-state mRNA levels were determined by Northern and dot blot analyses of total cellular RNA hybridized with cDNA probes specific for fibronectin, procollagen alpha 1III, and procollagen alpha 1I. Cells were analyzed at 24 hr postconfluence to minimize the presence of actively proliferating cells, and because maximal levels of fibronectin, alpha 1III, and alpha 1I mRNAs were observed 24 hr postconfluence. Unique, multiphasic patterns of expression of each of these ECM components were observed as the cells progressed from low passage to high passage. As the cells reached midhigh passage, fibronectin mRNA levels increased. This midpassage increase in fibronectin was followed by an increase in the level of alpha 1III mRNA as the cells reached the end of their in vitro proliferative life span, and then alpha 1I when the cells entered the postmitotic senescent phase, at which time the level of fibronectin mRNA also declined. A similar overlapping cascade pattern of up-regulation of these genes is seen during development and wound repair. This suggests that as cultured fibroblasts reach the end of their proliferative life span, they reinitiate a gene expression program used in tissue development and repair.

Aging

The large non-collagenous domain (NC-1) of type VII collagen is amino-terminal and chimeric. Homology to cartilage matrix protein, the type III domains of fibronectin and the A domains of von Willebrand factor.

Type VII collagen, the major component of anchoring fibrils, consists of a central collagenous triple-helical segment flanked by non-collagenous domains, NC-1 and NC-2. In this study, we examined the domain organization of human type VII collagen through analysis of deduced amino acid sequences derived from cloned complementary and genomic DNAs, as compared to peptide segments derived from amniotic membrane type VII collagen. The results revealed that the peptide segments derived from the NC-1 domain of type VII collagen could be assigned to the 5' portion of the composite cDNA, indicating that NC-1 resides at the amino terminal end of the molecule. Several sub-domains with homology to adhesive molecules were also identified within NC-1. These protein domains may confer adhesive properties to NC-1, thereby facilitating the binding of type VII collagen to the lamina densa in the cutaneous basement membrane and the anchoring plaques within the dermis.

Amino Acid Sequence

Differential expression of laminin isoforms and beta 4 integrin epitopes in the basement membrane zone of normal human skin and basal cell carcinomas.

The basement membrane zone biology of normal human skin and basal cell carcinomas was explored by indirect immunofluorescence with monoclonal antibodies recognizing five subunit polypeptides of three different laminin isoforms as well as the beta 4 integrin epitopes. The laminin antibodies were specific for A, B1, and B2 chains of classic laminin, for the M chain of merosin, or for the S chain in S-laminin. Immunostaining of normal human skin revealed a strong signal with antibodies for A, B1, and B2 chain epitopes. A weak immunosignal was detected with an anti-M chain antibody, whereas the S-chain epitopes were undetectable, even following pretreatment of sections with hyaluronidase. Thus, the laminin at the epidermal-dermal junction of normal human skin is primarily of the classic type, with some merosin molecules being present. The staining of six nodular basal cell carcinomas revealed the presence of A, B1, and B2 chain epitopes in a linear pattern, but, in contrast to normal skin, the antibody recognizing M-chain epitopes yielded a strong immunosignal, and S-chain epitopes could also be readily detected. Staining for beta 4 integrins, potential receptors for laminin, revealed a strong staining reaction in normal skin as well as in the superficial portions of the basal cell carcinoma. However, the immunofluorescence pattern in the deeper portions of the lesions was scattered and interrupted. Thus, altered composition of the basement membrane of nodular basal cell carcinomas with respect to laminin isoforms and their interactions with putative cell-surface receptors, the beta 4 integrins, may change the containment of the tumor islands, contributing to the local aggressive behavior of basal cell carcinomas.

Basement Membrane

Regulation of ornithine decarboxylase gene expression, polyamine levels, and DNA synthetic rates by all-trans-retinoic acid in cultured human keratinocytes.

Regulation of ornithine decarboxylase (ODC) gene expression and cell growth by all-trans-retinoic acid in the presence and absence of exogenous putrescine were examined in normal keratinocyte cultures maintained in serum-free medium containing 0.15 mM Ca++. Putrescine and the higher polyamines are negative feedback regulators of ODC synthesis and are essential for cell growth. Human keratinocytes were incubated with and without 1 microM putrescine and the effects of 5 x 10(-7) M retinoic acid on ODC mRNA levels, ODC activity, polyamine levels, and DNA synthetic rates were determined. Northern blot analysis of total RNA isolated from breast reduction keratinocytes treated with retinoic acid up to 24 h showed a time-dependent suppression of ODC mRNA levels that was unaffected by putrescine. ODC activity was suppressed more rapidly in keratinocytes grown in the absence of putrescine; however, at 24 h, ODC activity was suppressed to an equal extent under both culture conditions. The effect of retinoic acid on polyamine levels was determined in the absence of exogenous putrescine. Retinoic acid treatment markedly suppressed putrescine and N1-acetylspermidine levels, whereas spermidine and spermine levels were relatively unaffected. The effect of retinoic acid on DNA synthetic rates, as measured by 3H-thymidine incorporation, was variable. Retinoic acid either stimulated or had little effect on keratinocyte DNA synthetic rates in cells derived from breast reductions and cultured in the absence of putrescine; these effects were not opposed by the presence of exogenous putrescine. In contrast, DNA synthesis in keratinocytes derived from neonatal foreskins was consistently suppressed by retinoic acid, independent of the polyamine status. Our data, therefore, suggest that the effect of retinoic acid on cell growth, as indicated by DNA synthetic rates, does not necessarily parallel its effect on ODC activity and mRNA levels.

Biogenic Polyamines

Transforming growth factor-beta up-regulates the expression of the genes for beta 4 integrin and bullous pemphigoid antigens (BPAG1 and BPAG2) in normal and transformed human keratinocytes.

Three distinct proteins, namely, beta 4 integrins, and the 230-kDa (BPAG1) and 180-kDa (BPAG2) bullous and pemphigoid antigens, have been shown to co-localize with hemidesmosomes at the dermal-epidermal basement membrane zone. In this study, we examined the expression of the corresponding genes in cultures of normal and transformed human epidermal keratinocytes. The expression of these genes was detected by Northern and in situ hybridizations, and the expression of beta 4 integrins was also demonstrated by indirect immunofluorescence. The results indicated clearly detectable expression of all three genes in normal keratinocytes, whereas extremely low or undetectable levels of expression were noted in two transformed cell lines. Addition of TGF-beta 1 or TGF-beta 2 (10 ng/ml) up-regulated mRNA levels for all three proteins (up to 4.6 times). The increase by TGF-beta 1 was particularly striking in keratinocyte cultures incubated in the presence of low (0.15 mM) Ca++, and somewhat less pronounced in the presence of high (1.2 mM) Ca++. The increase in beta 4 integrin synthesis was also documented by enhanced immunosignal of the corresponding epitopes. These results indicate that the three hemidesmosomal genes studied here are all responsive to TGF-beta. These observations, together with previous data on the effects of TGF-beta on other components of the skin, suggest that this cytokine may play a role in the development and repair of the cutaneous basement membrane zone.

Adult

Cloning of partial cDNA for mouse 180-kDa bullous pemphigoid antigen (BPAG2), a highly conserved collagenous protein of the cutaneous basement membrane zone.

One-hundred-eighty kilodalton bullous pemphigoid antigen (BPAG2) is recognized by autoantibodies in the sera of patients with blistering skin diseases, bullous pemphigoid (BP), and herpes gestationis (HG). In this study, we have screened a mouse epidermal keratinocyte cDNA library with a 1.0-kb human BPAG2 cDNA, which has been shown to correspond to two collagenous domains (Giudice et al: J Clin Invest 87:734-738, 1991). Screening of the mouse library identified two cDNA clones, the larger one being 1.8 kb in size. Comparison of the mouse amino acid sequences, as deduced from cDNA, with the corresponding human sequences revealed 86% homology. Furthermore, Northern hybridizations of mouse epidermal RNA with these cDNA revealed the presence of an mRNA transcript of approximately 6 kb, the size of the human BPAG2 mRNA. Elucidation of the deduced amino-acid sequences revealed the presence of definitely one and possibly two putative membrane-associated segments, suggesting that the 180-kDa BP antigen is a transmembrane protein. The sequence analysis also identified a 7-amino-acid segment that was predicted by computer analysis to be antigenic. Elucidation of the divergence between the mouse and previously published human and chicken BPAG2 sequences indicated that this protein segment was relatively well conserved. These data suggest, therefore, that the 180-kDa bullous pemphigoid antigen associated with hemidesmosomes is a well-conserved transmembrane protein that may play a critical role in the attachment of epidermis to the underlying basement membrane.

Amino Acid Sequence