The role of interleukin-6 as the hepatocyte stimulating factor in the network of inflammatory cytokines.
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Biomedical subjects
Publications and source records attributed to A Koj.
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Supernatants from endotoxin-stimulated human leukemic cells and human recombinant interferon-beta 2 similarly enhance synthesis of alpha 1-antichymotrypsin and haptoglobin but suppress synthesis of albumin in cultured Hep G2 cells. Human recombinant tumor necrosis factor only slightly affects production of alpha 1-antichymotrypsin and albumin in a similar manner as leukocyte cytokines. In distinction, recombinant human interferon-gamma profoundly inhibits synthesis of alpha 1-antichymotrypsin, and especially of haptoglobin, but stimulates production of alpha 2-macroglobulin thus modulating the acute phase response of these cells.
Dexamethasone and insulin stimulate production of several plasma proteins in primary cultures of adult rat hepatocytes but inhibit their production in primary cultures of Morris hepatoma cell line 7777W. The acute phase response elicited in cultured cells by crude cytokines from activated rat peritoneal macrophages is considerably higher in hepatocytes in the presence of hormones, and especially of dexamethasone. In hepatoma cells the hormones enhance the cytokine-induced formation of fibrinogen and cysteine proteinase inhibitor but are without significant effect on suppression of albumin and alpha-fetoprotein synthesis by macrophage supernatants.
The acute phase cytokines: interleukin 1, tumor necrosis factor alpha (cachectin) and beta (lymphotoxin), hepatocyte stimulating factor and several interferons, all belong to the family of endotoxin-inducible, low molecular weight proteins. Their synthesis in macrophages, fibroblasts, lymphocytes, epithelial and some tumor cells is enhanced by the same cytokines, often in the autocrine manner, and suppressed by dexamethasone. The principal hepatocyte stimulating factor (HSF) regulating synthesis of acute phase proteins is probably identical with IFN-beta 2/BSF-2/IL-6, but other inflammatory cytokines (IL-1, TNF alpha, IFN-gamma) are able to induce distinct sets of acute phase proteins, or to modulate the final response pattern. The effect of hrIFN-gamma on production of acute phase proteins by human hepatoma Hep G2 cells is discussed in detail. It is concluded that the cascades of inflammatory cytokines in different tissues represent amplification and regulatory pathways controlling the development of acute phase response in vivo.
Isolated Morris hepatoma cells (line 7777) or adult rat hepatocytes were cultured for 3 days and daily production of four plasma proteins was estimated in the cell media by rocket immunoelectrophoresis with monospecific antisera. Addition of cytokines from rat peritoneal macrophages to cultured hepatocytes or hepatoma cells augmented accumulation in the medium of two positive acute phase proteins: fibrinogen (FIB) and cysteine proteinase inhibitor (CPI). At the same time synthesis of alpha-fetoprotein (AFP) was inhibited in hepatoma cells but remained undetectable in hepatocytes. Rat macrophage cytokines typically depressed synthesis of albumin (ALB) in cultured rat hepatocytes but increased production of this protein by hepatoma cells.
Albumin, fibrinogen, alpha 1-acid glycoprotein and cysteine proteinase inhibitor were determined by electroimmunoassay in the media of primary cultures of rat hepatocytes exposed to dialysed supernatants of rat, mouse and human macrophages or to recombinant human and murine interleukin 1 and tumour necrosis factor. Recombinant cytokines in the range of 1 to 1000 ng/ml caused only reduction of albumin synthesis and slight stimulation of alpha 1 acid glycoprotein production while crude preparations of macrophage cytokines elicited typical acute phase response. The results suggest that interleukin 1 or tumour necrosis factor are not likely the principal mediators responsible for the direct stimulation of normal rat hepatocytes to acute phase protein synthesis.
Alpha-1-proteinase inhibitors isolated from plasmas of horse, ox, pig, rabbit and man were used for determination of some kinetic parameters of interaction with three horse leucocyte proteinases and bovine pancreatic trypsin and chymotrypsin. Effective molar ratio of enzyme-to-inhibitor, inactivation rate constant and inhibition constant were measured. In horse, ox, pig and rabbit two principal electrophoretic forms of alpha 1-PI could be distinguished. Both forms effectively inhibited trypsin but usually only one form reacted promptly and stoichiometrically with chymotrypsin and leucocyte elastases. It appears that genetic variability and functional heterogeneity of multiple forms of alpha 1-PI as well as lack of other tissue inhibitors of proteinases may be responsible for lung emphysema occurring in man and horse.
Plasma of rats injected with tunicamycin (2 micrograms/g body wt) shows on crossed immunoelectrophoresis the presence of an additional, slowly migrating component of alpha 1-acute-phase globulin (alpha 1-AP-globulin). The native and modified forms of alpha 1-AP-globulin were jointly isolated on the column of immobilized antibodies and then separated by chromatofocusing on polybuffer exchanger. Polyacrylamide gel electrophoresis in the presence of sodium dodecyl sulphate demonstrated that tunicamycin-induced form of rat alpha 1-AP-globulin has Mr of 50,000 and is devoid of carbohydrates as inferred from the lack of staining with Schiff reagent. However, during incubation with papain in vitro it is only slightly less effective than mature glycosylated alpha 1-AP-globulin (Mr 68 000) in inhibiting hydrolysis of CBZ-Lys-ONp. Incubation of liver slices from control and tunicamycin-injected rats with 14C-leucine demonstrated that tunicamycin reduces synthesis and release to the medium of alpha 1-AP-globulin and some other plasma proteins, but the proportion of aglyco-alpha 1-AP-globulin is higher than in plasma.
Alpha-1-antiproteinase (alpha 1-PI) and alpha-2-macroglobulin (alpha 2-M) from horse plasma and the proteinase inhibitor from horse leucocyte cytosol were purified and some of their physicochemical parameters estimated. Effective molar ratio, inactivation rate constants kon and apparent inhibitory constants Ki were determined for the reaction of these inhibitors and several leucocyte and pancreatic serine proteinases. It appears that alpha 1-PI, similarly to human inhibitor, controls the activity of leucocyte elastases in plasma and the lung. On the other hand, the physiological role of the leucocyte cytosol inhibitor is to protect the cytoplasm against the destructive activity of leucocyte proteinases rather than to protect the surrounding tissues.
Highly purified horse leucocyte proteinases 1, 2A and 2B hydrolyze synthetic substrates which are decomposed also by human leucocyte elastase but they are unable to hydrolyze typical substrates of cathepsin G. Thus in distinction to other mammalian species horse leucocytes are devoid of cathepsin G and contain only elastases.
Cytokines released from monocytes upon stimulation by lipopolysaccharide cause a number of cells to undergo proliferative and synthetic changes. At least one of these cytokines affects hepatocytes in vivo causing increased synthesis of a series of acute-phase proteins. We have established an in vitro micro-assay for hepatocyte stimulating factor (HSF) using primary cultures of normal rat hepatocytes. Measurement of increased synthesis of alpha 2-macroglobulin and decreased synthesis of albumin caused by exogenously added factor constitute a sensitive parameter for quantifying HSF. For comparing various cytokines preparations, we have defined a unit of HSF activity in terms of a stimulation index. We have used this assay to follow some preliminary attempts to isolate the factors responsible for stimulation of synthesis of acute-phase reactant by the liver.
Experimental inflammation in rats led to a sevenfold increase in serum levels of alpha 1 acute-phase globulin. This increase is correlated with elevated levels of translatable mRNA for alpha 1 acute-phase globulin in the liver. Biosynthesis and secretion of alpha 1 acute-phase globulin were studied in rat hepatocyte primary cultures. An intracellular form of alpha 1 acute-phase globulin with an apparent relative molecular mass of 63 500 and a secreted form of 68 000 were found. The intracellular form of alpha 1 acute-phase globulin could be deglycosylated by endoglucosaminidase H treatment indicating that its oligosaccharide chains were of the high-mannose type. The secreted form of alpha 1 acute-phase globulin was not sensitive to endoglucosaminidase H, but was susceptible to the action of sialidase reflecting carbohydrate side-chains of the complex type. Pulse-chase experiments revealed a precursor-product relationship for the high-mannose and the complex type alpha 1 acute-phase globulin. In the hepatocyte medium newly synthesized alpha 1 acute-phase globulin was detected 30 min after the pulse. Unglycosylated alpha 1 acute-phase globulin was found in the cells as well as in the medium when the transfer of oligosaccharide chains onto the polypeptide chains was blocked by tunicamycin. Tunicamycin led to a marked delay in alpha 1 acute-phase globulin secretion.
The acute phase response to injury includes metabolic alterations, such as fever, leucocytosis, enhanced uptake of some metals and amino acids by liver, and changes in the synthesis of certain plasma proteins. Many of these effects can be elicited either in vivo or in tissue culture by monocyte- and keratinocyte-derived cytokine interleukin 1 (IL-1), which had earlier been variably termed leucocytic endogenous mediator, lymphocyte activating factor, or endogenous pyrogen. Although recombinant murine IL-1 was shown to induce hepatic synthesis of acute phase proteins other authors demonstrated that hepatocyte stimulating factor (HSF) is distinct from IL-1. Possible relationships between HSF und IL-1 and the molecular mechanisms of action of these cytokines on the synthesis of acute phase proteins are briefly discussed.
The possible role of transferrin receptors in the diacytosis of human asialotransferrin type 3 (HAsTf-3) by the rat liver was studied in vivo. A trace dose of the ligand was allowed to compete for hepatic binding sites against diferric transferrin, the concentration of which was varied between 5 400- and 18 000-fold. Binding of HAsTf-3 was insensitive to the presence of 2Fe-transferrin in this range, and the liver bound the ligand equally efficiently, regardless of whether it was presented in the holo or apo form. In contrast, pretreating the animals with desialylated bovine submaxillary mucin (2 mg/100 g, 2 min before the dose) prevented the asialotransferrin-liver interaction. These findings indicate that endocytosis of HAsTf-3 is mediated by the Gal/GalNAc-specific lectin and not by transferrin receptors. Although 2Fe-transferrin did not affect binding, it did reduce the half-life of the ligand in the liver, thus suggesting that transferrin receptors play an important role in the exocytic leg of the diacytic cycle. Based on our present and earlier data, a model is proposed in which the engagement of lectin and transferrin receptor in the diacytic cycle is envisaged sequentially so that HAsTf-3 switches receptors at an acidified subcellular site.
The antiproteinase activities against trypsin, chymotrypsin, elastase, papain and rat leucocyte proteinases were determined in plasma from control and Morris hepatoma-bearing rats. Bovine trypsin and chymotrypsin were similarly inhibited by the two types of plasma whereas porcine pancreatic elastase, papain and rat leucocyte neutral proteinases were more efficiently inhibited by plasma from tumour-bearing rats. The increased plasma concentrations of some proteinase inhibitors, as determined by rocket immunoelectrophoresis, are suggested to be responsible for the observed differences in inhibition. The highest increases in plasma of tumour-bearing rats were observed for alpha 2-macroglobulin and alpha 1-acute-phase globulin. The synthesis and secretion of six proteinase inhibitors: antithrombin III, alpha 1-proteinase inhibitor, alpha 1-macroglobulin, alpha 2-macroglobulin, alpha 1-acute-phase globulin and haptoglobin, as well as albumin, were measured in tissue slices from rat liver and Morris hepatoma after incubation with [14C]leucine. Local inflammation inflicted upon the tumour-bearing rats increased formation of acute-phase proteins in liver slices but not in hepatoma slices.
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