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T Krieg

Publications and source records attributed to T Krieg.

At least 199 records · Page 11Linked to original sources

Collagenase gene expression in fibroblasts is regulated by a three-dimensional contact with collagen.

Collagenase activity in fibroblasts is regulated by cytokines and the interaction with the extracellular matrix. In this study we demonstrate that fibroblasts cultured within a three-dimensional collagen gel show a strong induction of collagenase gene expression. In addition to increased de novo synthesis most of the secreted enzyme was found to be activated leading to a high collagenolytic activity and complete degradation of collagen matrices after removal of fetal calf serum. Collagen I gene expression was found to be reduced under these conditions. These data suggest a specific modulation of cellular metabolism in response to contact with a three-dimensional collagenous matrix resulting in the divergent regulation of collagen and collagenase.

Adult↗

Down-regulation of alpha 3(VI) chain expression by gamma-interferon decreases synthesis and deposition of collagen type VI.

Treatment of cultured human skin fibroblasts with increasing doses of gamma-interferon produces a distinct reduction of steady-state levels of the alpha 3 chain of collagen VI mRNA by about 60% but not of the alpha 1 and alpha 2 chain mRNAs. A similar decrease was also observed for collagen I and III mRNA while fibronectin mRNA remained at the same level. The decrease in alpha 3(VI) mRNA is accompanied by a reduced synthesis of collagen VI and by a reduced deposition of both collagen VI and fibronectin in urea-insoluble form in the cell matrix. No other gamma-interferon effects were observed for fibronectin biosynthesis. Immunoprecipitation of metabolically labeled collagen VI demonstrated a strongly reduced synthesis (by 65-80%) of intracellular alpha 3(VI) chains with no decrease found for alpha 1(VI) and alpha 2(VI) chains. All three chains were, however, found to be reduced in the culture medium. Pepsin treatment of immunoprecipitated collagen VI showed similar chain ratios for material in the culture medium obtained in the absence or presence of gamma-interferon. It indicates that correctly assembled heterotrimers of the composition [alpha 1(VI) alpha 2(VI) alpha 3(VI)] are formed and secreted also in the absence of an equivalent alpha 3(VI) chain synthesis but at a reduced rate. The data support previous predictions from sequence analyses [Chu et al. (1988) J. Biol. Chem. 263, 18,601-18,606] that collagen VI molecules composed of all three constituent chains are more stable than other assembly alternatives.

Actins↗

Regulation of collagen VI expression in fibroblasts. Effects of cell density, cell-matrix interactions, and chemical transformation.

Collagen VI expression was studied in cultured human skin fibroblasts and mouse 3T3 cells using cDNA probes specific for alpha 1(VI), alpha 2(VI), and alpha 3(VI) chains. A 2-3-fold increase of these mRNAs was observed when fibroblasts were grown at increasing densities while only minimal changes occurred for the mRNA levels of collagens I and III, fibronectin, and beta-actin. Changes in mRNA correlated well with an increased production of corresponding proteins as determined by immunological assays. A comparable increase of alpha 1(VI) and alpha 2(VI) but not of alpha 3(VI) chain mRNAs was found for fibroblasts grown in a three-dimensional collagen gel after gel contraction. These conditions resulted, however, in a decrease of steady-state levels of collagens I and III and actin mRNAs. Transformation of 3T3 cells by phorbol ester did not change collagen VI mRNAs but caused a 3-5-fold reduction in mRNA levels for the other extracellular matrix proteins. These data strongly imply different regulatory mechanisms for the expression of collagen VI compared with collagens I and III and fibronectin. The differences may be correlated to changes in cell shape and reflect the requirement for collagen VI as a cell-binding protein.

Actins↗

An automatic analysis method for in situ hybridization using high-resolution image analysis.

Specific mRNA for alpha 1 (I) collagen has been detected on a cellular level by in situ hybridization using radioactively labelled alpha 1 (I) antisense RNA probes. We here present an automatic, quantitative, evaluation technique for the determination of grain densities using the high-resolution image analysis system IPS KONTRON. The reliability and objectivity of this method were evaluated by comparing the values of grains per cell obtained by conventional and automatic techniques following in situ hybridization with alpha 1 (I) collagen DNA probes in various specimens. The correlation coefficients between conventional and automatic analysis of grain densities were 0.97 for fibroblasts embedded into a three-dimensional collagen gel, 0.94 for dermal fibroblasts in skin obtained from a patient with progressive systemic scleroderma, and 0.90 for fibroblasts in a 2-week-old scar. All correlation coefficients were significant on the P less than 0.0001 level. This new analysis technique therefore allows a more rapid and reliable quantitative evaluation of in situ hybridization and may also be helpful in differentiating between various cell populations characterized by different biosynthetic capacities.

Autoradiography↗

In situ hybridization--a useful tool for studies on collagen gene expression in cell culture as well as in normal and altered tissue.

We report the application of antisense RNA probes for in situ hybridization to identify collagen type I and type III mRNA synthesizing fibroblasts under in vitro and in vivo conditions in normal and wounded human skin. Non-specific hybridization was excluded by specific distribution patterns of alpha 1(I)- and alpha 1(III) probes in mouse fetuses. In addition, the specificity of hybridization was checked by sense probes, radioactively labelled transcripts of Gemini vectors and a keratin probe. In normal skin weakly activated fibroblasts were sparsely scattered within the dermis, while in wound healing processes mRNA both for alpha 1(I) and for alpha 1(III) was dramatically increased, thus suggesting that collagen synthesis is at least partly regulated at a pretranslational level. In addition, the intensity of the labelling, as defined by image analysis and the distribution pattern of collagen mRNA synthesizing cells, provide strong evidence that wound healing by primary intention starts within the deep dermis.

Adult↗

Synergistic effect of tumor necrosis factor-alpha and interferon-gamma on collagen synthesis of human skin fibroblasts in vitro.

The effect of tumor necrosis factor-alpha (TNF alpha) and interferon-gamma (IFN gamma) on collagen metabolism by human diploid fibroblasts in confluent monolayer culture was examined. Recombinant TNF alpha reduced collagen mRNA levels 2-fold and stimulated collagenase mRNA levels 5-fold, while recombinant IFN gamma affected only collagen mRNA levels. The combination of TNF alpha (10 ng/ml) and IFN gamma (100 ng/ml) resulted in a much stronger (about 30-fold) reduction of collagen mRNA levels indicating that the two cytokines act synergistically. In contrast no such synergism was observed with respect to collagenase mRNA levels. The effect of TNF alpha and IFN gamma on collagen metabolism reported here indicates a complex interaction of different cytokines in the control of tissue remodeling that occurs during inflammation, repair, or atrophy.

Adult↗

Structure of basement membranes in malignant melanoma and nevocytic nevi.

Basement membranes found around tumor cells in nevocytic nevi, Spitz's nevi, and malignant melanomas were analyzed by electron microscopy and antibody staining for several basement membrane proteins. Nevocytic nevi and Spitz's nevi showed a distinct, occasionally discontinuous lamina densa regardless of whether they were located in junctional zones of the epidermis or within the dermis. All basement membranes around nests of aggregated nevus cells, however, lacked anchoring fibrils. This correlated with the absence of type VII collagen. In contrast, type IV collagen, laminin, and nidogen were present at the periphery of the nevus cell clusters in agreement with the presence of an intact lamina densa. Aggregated tumor cells in malignant melanomas were bordered by a lamina densa when located in a junctional position and lacked this structure when they had migrated into the dermis. This process was accompanied by a drastically reduced staining for collagen type IV and nidogen, whereas laminin was still detectable. Anchoring fibrils and their molecular correlate, type VII collagen, were consistently absent. These observations demonstrate major alterations in the composition of basement membranes around malignant melanomas, which can be an important factor for the invasive growth and formation of metastases of these tumors.

Antibodies↗

Antibodies to Ro/SSA detected by ELISA: correlation with clinical features in systemic scleroderma.

Anti-Ro/SSA antibodies were determined by a newly developed enzyme-linked immunosorbent assay in serum specimens from 114 patients with systemic scleroderma in order to examine the relationship between Ro/SSA antibodies and clinical subsets of scleroderma. Sera of 42 patients (37%) were positive for Ro/SSA antibodies. Clinical investigations, including Schirmer's test and enzymatic profiles, demonstrated that 60% (16 of 27) of scleroderma patients with sicca syndrome and 63% (10 of 16) with polymyositis (PM) were Ro/SSA positive. In these patients there was a significant association between Ro/SSA antibodies and rheumatoid factor. HLA-antigens DR2, DR3 and B8 showed an increased frequency in anti-Ro/SSA positive patients.

Antibodies, Antinuclear↗

Biological and pharmacological modulations of fibroblast functions.

During recent years, considerable progress in the field of connective-tissue research has brought about detailed information on the behaviour of fibroblastic cells under culture conditions and in in vivo situations. Well-characterized biological functions of fibroblasts include cell migration, cell attachment, cell proliferation and biosynthesis as well as degradation of multiple connective-tissue components. An exact control of these functions is essential in physiological processes of tissue development and repair, while, on the other hand, fibrotic diseases or poor wound healing are associated with functional deviances of fibroblasts. Therefore, the modulation of fibroblast functions has become the focus of ongoing research aiming to expand the pathophysiological understanding and therapeutic options in connective-tissue diseases. Discussing scientific approaches to investigate various fibroblast functions, this review surveys biological and pharmacological factors which affect the behaviour of fibroblasts.

Animals↗

Localization of collagen alpha 1(I) gene expression during wound healing by in situ hybridization.

The cellular localization of collagen alpha 1(I) chain gene expression during wound healing in rats was investigated using in situ hybridization. Activation of collagen gene expression was first found within fibroblastic cells around the deep layers of the granulation tissue as early as 16 h post wounding. Heavily labeled cells were also detected near the intact wound edge and around hair follicles. At day 6 intense alpha 1(I) collagen gene expression was found within most cells of the granulation tissue and after day 8 most of the activity was localized to cells directly underneath the epidermis. 26 d after the induction of the wounds hardly any alpha 1(I) collagen gene expression could be demonstrated, which indicates a close, time-dependent control of collagen synthesis during repair processes.

Animals↗

Involvement of protein kinase C in signal transduction during fibroblast chemotaxis to platelet-derived growth factor and a fragment of fibronectin.

The involvement of protein kinase C in chemotaxis of normal dermal fibroblasts to a mitogenic and a non-mitogenic attractant was investigated. Neomycin, an inhibitor of phosphoinositide metabolism, H7, staurosporine, and sphingosine, inhibitors of protein kinase C, as well as amiloride, an inhibitor of the Na+/H+-antiport, all abrogated chemotaxis of fibroblasts to platelet-derived growth factor and to a chemotactically active fragment of fibronectin. Down-regulation of protein kinase C by phorbol ester likewise diminished the capacity of fibroblasts to move directionally to these attractants. Therefore, all three of these signal transduction steps are required for the chemotactic response of this type of cells.

Cells, Cultured↗

Regulatory mechanisms of fibroblast activity.

Fibroblasts are mesenchymal cells present in most organs which play a crucial role in repair processes but are also involved in the development of fibrosis. Although fibroblasts have been grown in culture for many years, their multiple functions including migration, chemotaxis, protein synthesis and others have only recently been investigated in detail. These studies demonstrated that cellular responses of fibroblasts can be elicited by matrix-mediated signals as well as by cytokines released from inflammatory or other differentiated cells. The aim of the present paper is to review the influence of such signals and to discuss their role in disease processes, particularly in fibrosis, keloids or scleroderma.

Cell Movement↗

[The basement membrane and its significance in congenital and acquired diseases of the skin].

Basal membranes are an ubiquitous component of all human organs and fulfil a large variety of functions. They separate epithelial from mesenchymal tissue and control the passage of substances, of inflammatory as well as tumor cells. They form the extracellular cytoskeleton, regulate growth processes, and play an important part in wound healing. Ultrastructurally, the lamina densa can be distinguished from the lamina lucida. Anchoring fibrils connect the basal membrane of the dermoepidermal junction with the underlying dermis, while anchoring plates connect it with the epidermal cells. During the last few years, various components of the basal membrane have been biochemically analyzed. Different proteins were characterized, and their corresponding morphological structure could be identified. The growing knowledge regarding the structure and composition of the dermo-epidermal junction has led to a better understanding of many diseases involving this structure, in particular inborn and acquired bullous diseases, but also that of the role of the basal membrane in metastasis and tumor invasions. The characterization of antigens in bullous diseases with circulating antibodies has led to exact diagnostic criteria concerning the often overlapping disorders and allows, e.g., the differentiation between bullous pemphigoid and epidermolysis bullosa acquisita.

Basement Membrane↗

Cloning and complete amino acid sequences of human and murine basement membrane protein BM-40 (SPARC, osteonectin).

Amino acid sequences of 285 and 286 residues, respectively, were deduced for mouse and human BM-40 from cDNA clones isolated from expression libraries. The sequences showed 92% identity and were also essentially identical to those of bone osteonectin and of the parietal endoderm protein SPARC. About 60% of the mouse BM-40 sequence was confirmed by Edman degradation. Two of the seven disulfide bonds were localized which apparently separate two distinct domains of mouse BM-40.

Amino Acid Sequence↗

Influence of corticosteroids on chemotactic response and collagen metabolism of human skin fibroblasts.

Following chronic administration of corticosteroids in vivo, a number of complications occur, which mainly involve the metabolism of connective tissue cells. Therefore, several attempts have been made to develop corticosteroids, which show less pronounced side effects. Fibroblasts were kept in monolayer cultures and were exposed to corticosteroids demonstrating similar anti-inflammatory activity (prednicarbate, desoximetasone). Chemotaxis of fibroblasts was studied over 4 hr, protein and collagen synthesis were estimated using proteinchemical methods and also by dot blot hybridization. Corticosteroids used in a high dosage (10 microM) affected all biosynthetic capacities of the investigated fibroblasts. Protein synthesis and production of collagen types I and III were reduced and a similar decrease of mRNA levels for collagen type I could be found indicating an influence on the pretranslational control. In the same concentrations desoximetasone was much more active than prednicarbate. Fibroblast migration was dosage dependently inhibited from 10(-9) M to 10(-5) M for desoximetasone, while incubation with prednicarbate did not cause a reduction of the chemotactic response at concentrations lower than 10(-7) M. These data suggest that modifications of corticosteroids might result in a dissociation of some of their biological activities and can specifically influence their effects on biosynthetic capacities of fibroblasts.

Adrenal Cortex Hormones↗

[In situ hybridization--an expansion of dermatologic histopathology].

By means of in-situ-hybridization, we are able to detect specifically the mRNAs of defined proteins at a cellular level in frozen sections. This technique not only makes it possible to characterize the biosynthesis of defined proteins at a pretranslational level but can also identify activated cells in their histological surroundings. We employed this technique in order to detect collagen mRNAs in fibrotic diseases of the skin. Using cDNA clones for collagen type I, we proved that in early stages of scleroderma the fibrosis starts in the deep dermis and the subcutaneous fatty tissue. In addition, the regulation of the collagen synthesis seems to be disturbed at a pretranslational level and accompanied by dramatically increased levels of collagen mRNA in fibroblasts. This technique offers objective parameters for collagen mRNA and may be especially useful to estimate the activity of fibrotic diseases in individual patients as well as during therapeutical trials.

Base Sequence↗

Collagen-type synthesis in human-hair papilla cells in culture.

Hair-papilla derived cells were grown in monolayer culture and revealed the typical morphology and growth pattern which was similar but not identical to control fibroblasts. Hair-papilla cells were found to produce considerable amounts of collagen type I and type III and fibronectin. Type IV collagen production could not be detected. The ratio of collagen type III and type I clearly differed from the pattern observed in normal fibroblasts, being much higher in hair-papilla cells, where type III accounted for more than 20% of total collagen synthesis. These data show that hair-papilla derived cells have biosynthetic capacities similar to those of human skin fibroblasts as well as characteristic differences, indicating that they represent a specialized fibroblast subpopulation.

Adult↗

Regulation of collagen synthesis in fibroblasts within a three-dimensional collagen gel.

Fibroblasts cultivated within a three-dimensional collagen gel display an elongated, spindle-like morphology, reduce their proliferation rate, contact the gel to a very dense tissue, and modify their metabolic activity as compared to monolayer cultures. Collagen synthesis measured as protein-bound hydroxyproline is reduced to 5% of the values found in monolayer culture. The reduction involving type I and type III collagen is due to decreased de novo synthesis and not to enhanced degradation. Dot blot hybridization, Northern blot analysis, and in situ hybridization using collagen I- and III-specific cDNA probes demonstrate that reduced biosynthesis rates are reflected by a marked reduction of pro alpha 1 (I), pro alpha 2 (I), and pro alpha 1 (III) collagen mRNA indicating pretranslational regulation. A similar reduction was observed for actin mRNA whereas levels of tubulin mRNA were similar for fibroblasts in monolayer culture or cultivated within the three-dimensional collagen gels. The data suggest a specific reprogramming of various cellular activities in response to contact with the reconstituted extracellular matrix.

Blotting, Northern↗