Induction of thiol recycling by protein kinase C: a potentially pro-oxidant pathway for low-density lipoprotein oxidation.
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Biomedical subjects
Publications and source records attributed to A Graham.
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1. We have investigated the characteristics of activation of the 42kDa isoform of mitogen-activated protein (MAP) kinase in response to various nucleotides in the endothelial cell line EAhy 926. 2. Adenosine 5'-triphosphate (ATP) in the concentration range 0.1-100 microM stimulated the rapid and transient tyrosine phosphorylation and activation of the 42 kDa isoform of MAP kinase in EAhy 926 endothelial cells which peaked at 2 min and returned to basal values by 60 min. ATP also stimulated a similar response in primary cultured bovine aortic endothelial cells. 3. Uridine 5' triphosphate (UTP) also stimulated the 42 kDa isoform of MAP kinase with similar potency to ATP (EC50 values 5.1 +/- 0.2 microM for UTP; 2.9 +/- 0.8 microM for ATP), whilst the selective P2Y-purinoceptor agonist, 2-methylthioATP (2-meSATP) was without effect up to concentrations of 100 microM. In bovine aortic endothelial cells however, UTP and 2-meSATP both stimulated MAP kinase. 4. Pretreatment of cells for 24 h with 12-O tetradecanoyl phorbol 13-acetate resulted in the loss of the alpha and epsilon isoforms of protein kinase C (PKC) and virtual abolition of nucleotide-stimulated MAP kinase activity (> 90% inhibition). 5. Preincubation for 30 min with the PKC inhibitor, Ro-31 8220 (10 microM) reduced MAP-kinase activation at 2 min but potentiated the response at 60 min. 6. Removal of extracellular calcium in the presence of EGTA reduced the MAP kinase activation in response to UTP by approximately 30-50%. 7. Pretreatment with pertussis toxin (18 h, 50 ng ml-1) did not significantly affect the UTP-mediated activation of pp42 MAP kinase. 8. These results show that in the EAhy 926 endothelial cell line, nucleotides stimulate activation of MAP kinase in a protein kinase C-dependent manner through interaction with a P2U-purinoceptor.
The rhombomeres of the embryonic hindbrain display compartment properties, including cell lineage restriction, genetic definition and modular anatomical phenotype. Consistent with the idea that rhombomeres are autonomous developmental units, previous studies have shown that certain aspects of rhombomere phenotype are determined early, at the time of rhombomere formation. By contrast, the apoptotic depletion of neural crest from rhombomeres 3 and 5 is due to an interaction with their neighbouring rhombomeres, involving the signalling molecule Bmp4. In this paper, we have examined whether inter-rhombomere interactions control further aspects of rhombomere phenotype. We find that the expression of Krox-20 and the repression of follistatin in r3 is dependent upon neighbour interaction, whereas these genes are expressed autonomously in r5. We further demonstrate that modulation of Krox-20 and follistatin expression is not dependent on Bmp4, indicating the existence of multiple pathways of interaction between adjacent rhombomeres. We also show that, although some phenotypic aspects of r3 are controlled by neighbour interactions, the axial identity of the segment is intrinsically determined.
PURPOSE: The vertebrate eye contains both melanocytes and retinal pigment epithelial (RPE) cells. Little is known of the pigmentary behaviour of these embryologically dissimilar cells. The aim of this study was to examine aspects of the pigmentary properties of both cell types in vitro and ex vivo to learn more of the function of these cells. METHODS: Sections of normal adult human eye were stained for tyrosinase related protein 1(TRP1), and cultures of RPE cells and choroidal melanocytes were examined immunocytochemically for TRP1 and 2 and enzymatically for tyrosinase activity (by assaying dopa oxidase activity). RESULTS: Over half of the choroidal melanocytes expressed TRP1 ex vivo; in contrast, a very small percentage of RPE cells were TRP1 positive. In vitro, passage 1 to 3 ocular melanocytes expressed TRP1 and TRP2 and had tyrosinase activity, which was influenced by the choice of substrate on which the cells were grown. Tyrosinase activity was highest when cells were grown on fibronectin and plastic, intermediate on laminin and lowest on vitreous extracellular matrix (ECM) containing pigment to which they attached and spread out poorly. In contrast, passage 3 RPE cells (which were unpigmented) showed little evidence of tyrosinase activity in short-term culture, irrespective of the substrate on which they were grown, and failed to express TRP1 and TRP2. When cells were grown on plastic for greater than 3 weeks in culture, a very low percentage of cells (< 0.1%) became TRP1 positive and this percentage was increased threefold if cells were cultured on laminin in the presence of bFGF. A few cells were also seen to contain pigment but cultures failed to show any tyrosinase activity. In contrast, RPE cells (but not melanocytes) showed a marked ability to take up pigment granules in vitro. CONCLUSIONS: The data suggest that normal human ocular melanocytes retain the capacity to produce pigment throughout adult life, and this can be demonstrated both ex vivo and in vitro. In contrast, we were unable to confirm that the majority of RPE cells play any significant role in active pigment production in the adult.
The oxidative modification of low-density lipoprotein by macrophages may be an important mechanism in the pathogenesis of atherosclerosis. The human monocytic leukaemic cell line THP-1, when stimulated with phorbol ester, shares many properties with human monocyte-derived macrophages. Oxidation of LDL by these cells was characterised by depletion of alpha-tocopherol, increases in thiobarbituric acid reactive substances and increases in electrophoretic mobility. The LDL particles were also converted to a form which increased accumulation of cholesteryl esters within macrophages. The oxidative mechanism appeared to be dependent upon the presence of thiols in the cellular medium. Oxidation of LDL by THP-1 macrophages, and production of thiols by these cells, were dependent upon the presence of L-cystine in the medium. Furthermore, cellular oxidation of LDL could be partially mimicked by the addition of cysteine to Hams F10 medium. Macrophage-independent oxidation of LDL, mediated by the addition of copper ions, was inhibited by cystine and cysteine in phosphate buffered saline, but not in Hams F10 medium. The glutathione content of THP-1 macrophages was also dependent upon the presence of cysteine or cystine in the medium, but inhibition of glutathione synthesis by buthionine sulfoximine did not prevent the production of thiols or the oxidation of LDL by THP-1 macrophages.
47 patients with axillary palmar hyperhydrosis underwent this surgery. There were 36 women (76.6%) and 11 men (23.4%) among them. The sympathetic trunk has been coagulated on the level between 2d and 4th ribs on both sides. There were no surgical mortality in this group. Nine patients (9.1%) had a pneumothorax, one patient (2.1%) had a subcutaneous emphysema, the other one had pneumonia and one had wound pyosis. In 43 cases the result of the surgery was very good. In 2 cases bilateral relapse and in 2 cases marked compensatory hyperhydrosis were resistered.
The proto-oncogene c-kit encodes the transmembrane tyrosine kinase receptor that has a role in the growth regulation of various cell types including melanocytes. In the present study we have examined the expression of the c-kit protein in the skin of seven patients with vitiligo. Melanocytes positive for c-kit protein were observed in the basal layer in non-lesional skin and the mean number of 25.8 +/- 5.2 (per 200 basal cells) compared with that of 21.8 +/- 3.5 from six control subjects. In perilesional skin there was a reduction in the numbers of c-kit positive melanocytes (6.7 +/- 2.6) and this was especially noticeable in six of the seven patients. Such a reduction was less obvious following staining with MEL-5 and in only two subjects were the numbers of melanocytes below the normal range. This suggests that the reduction in c-kit staining was the result of decreased expression of the protein rather than a loss of melanocytes. No melanocytes, positive for c-kit protein, or after staining with MEL-5, were identified in lesional skin although isolated tyrosinase-positive melanocytes were seen in one subject. There was no apparent change in the numbers of mast cells expressing c-kit protein and the intensity of staining in the dermis even in lesional skin was similar to that in the controls. These results demonstrate that c-kit protein is present on melanocytes in adult human skin and that in perilesional skin of some vitiligo patients there is a reduction in the numbers of melanocytes expressing this receptor. Whether this may contribute to the defective melanocyte growth and/or survival that occurs in vitiligo or whether it is a consequence of melanocyte damage remains to be seen.
The pattern of skeletal elements and musculature in the branchial region of the chick embryo is profoundly influenced by the neural crest which migrates in separate streams. Neural crest emigration from the hindbrain into the branchial arches is discontinuous, and regions of crest production are separated from each other by two regions of crest apoptosis, rhombomeres (r) 3 and 5. Both r3 and r5 produce large numbers of crest cells when they are cultured in isolation; but, when co-cultured with their neighbouring segment neural crest apoptosis is restored. The expression of the signalling molecule Bmp-4 and the gene msx-2 in apoptotic domains of r3 and r5 is also dependent upon neighbour interactions and the addition of recombinant Bmp-4 to explant cultures of r3/r5 upregulates both Bmp-4 and msx-2 expression and restores apoptosis. This interactive mechanism acts to ensure the sculpting of crest outflow into non-mixing streams and, consequently, the fidelity of pattern transfer into the branchial arches.
The free cholesterol content of cells can be monitored by the intensity of fluorescence emissions from the polyene antibiotic filipin. In a previous study (Hassall: Cytometry 13:381-388, 1992) using THP-1 macrophages, a decrease in filipin fluorescence in response to increasing concentrations of modified lipoprotein was observed, suggesting a reduction in the free cholesterol content of the cells. In this study, THP-1 macrophages were treated with a number of agents known to modulate cholesterol biosynthesis and cholesterol esterification. Changes in filipin fluorescence emissions were measured by flow cytometry, and correlated with changes in cholesterol biosynthesis measured by incorporation of [14C]acetate into cholesterol. A correlation between decreases in filipin fluorescence and reductions in cholesterol biosynthesis was apparent, even when cholesterol esterification was inhibited. These results suggest that the decreases in filipin fluorescence observed may be due, at least in part, to reduction in cholesterol biosynthesis.
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Oxidation of low-density lipoprotein (LDL) by macrophages, endothelial cells and smooth muscle cells, may be mediated by production of free thiols in the presence of transition metals. We examined the structural requirements, within a series of cysteinyl derivatives, for oxidation of thiols and of LDL in Hams F10 medium. The primary mechanism by which such thiols mediate oxidation of LDL is largely independent of superoxide production, but strongly correlated with the susceptibility of each thiol to iron-catalysed auto-oxidation. These effects are compared and contrasted with thiol-dependent oxidation of LDL by stimulated human monocytes and macrophages.
In the endothelial cell line EAhy 926, 1-oleoyl-lysophosphatidic acid (LPA) stimulated the tyrosine phosphorylation of the pp42 isoform of mitogen-activated protein (MAP) kinase. Maximum phosphorylation was observed within 5 min of LPA addition, but the response was sustained for up to 120 min. Re-addition of LPA after 60 min stimulated a further sustained increase in the tyrosine phosphorylation of MAP kinase. In cells pretreated with phorbol 12-myristate 13-acetate (PMA; 24 h) or preincubated with the protein kinase C inhibitor Ro-318220, LPA-induced tyrosine phosphorylation of pp42 MAP kinase was substantially reduced at 2 min but potentiated at 60 min. Ro-318220 in combination with either PMA or pertussis toxin pretreatment abolished the LPA response at all time points, suggesting an involvement of protein kinase C in the pertussis toxin-sensitive part of the pathway. Agents which raised intracellular cyclic AMP levels did not affect the initial phase of LPA-stimulated MAP kinase activation, but abolished the late phase. However, this effect was prevented by Ro-318220, implicating a greater role for protein kinase C than protein kinase A in the regulation of sustained MAP kinase responses. LPA stimulated an increase in the tyrosine phosphorylation of focal adhesion kinase pp125 (pp125FAK) in EAhy 926 cells which was both protein kinase C- and pertussis toxin-independent. These results are discussed in terms of the pathways regulating both MAP kinase and pp125FAK in response to LPA in the EAhy 926 endothelial cells line.
OBJECTIVE: Our purpose was to establish an animal model for hemolytic disease of the fetus and newborn by developing red blood cell alloimmunization techniques in the rabbit. STUDY DESIGN: Twenty-six nonpregnant New Zealand White or Red does underwent blood typing to identify them as homozygous at the HgA or HgF red blood cell antigen locus. Alloimmunization to incompatible red blood cells was attempted through a series of subcutaneous injections using complete then incomplete Freund's adjuvant. RESULTS: Successful induction of an antibody response occurred in 96% of cases. The median response in FF rabbits was 2560 (range 40 to 10,240), whereas the response in AA does was 2560 (range 320 to 20,480). These responses were not statistically different (p = 0.77). Responses were categorized as poor, moderate, or good. No difference was noted between FF and AA does in distribution of the categories of response (p = 0.53). CONCLUSION: Red blood cell alloantibodies of high titer can be induced successfully in the rabbit.
OBJECTIVE: The addition of ultrasonography and ultrasonographically directed fetal blood sampling was attempted in an effort to study the fetal effects of red blood cell alloimmunization in a rabbit model. STUDY DESIGN: Nineteen New Zealand does were alloimmunized to incompatible red blood cells. Sensitized does were bred twice, once with a homozygous buck of incompatible blood type and once with a homozygous buck of compatible blood type. Ultrasonographic examinations were performed on days 20 and 27 of gestation (term 28 to 31 days). Fetal blood sampling was undertaken on day 27 of gestation, and hematologic data were compared between compatible and incompatible litters. RESULTS: A total of 41 pregnancies occurred in 19 does. Fetal hemoglobin was higher in the compatible litters (9.7 gm/dl vs 5.8 gm/dl, p < 0.001), whereas no difference could be detected between the respective reticulocyte counts (31.9 vs 36.0/100 red blood cells, p = 0.2). Hydrops fetalis was noted in none of 18 compatible litters versus 12 of 19 incompatible litters (p < 0.01). CONCLUSION: A disease analogous to human hemolytic disease of the newborn can be induced in the rabbit fetus.
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