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Biomedical subjects

F A Green

Publications and source records attributed to F A Green.

At least 19 recordsLinked to original sources

Distinct saturable pathways for the endocytosis of different tyrosine motifs.

Endocytosis of surface proteins through clathrin-coated pits requires an internalization signal in the cytoplasmic domain. Two types of internalization signal have been described: one requiring a tyrosine as the critical residue (tyrosine-based motif), and the other consisting of either two consecutive leucines or an isoleucine and leucine (dileucine motif). Although it seems that these signals are necessary and sufficient for endocytic targeting, the mechanism of recognition is not well understood. To examine this question, tetracycline-repressible cell lines were used to overexpress one of several receptors bearing a tyrosine-based internalization signal. By measuring the rates of endocytosis for either the overexpressed receptor, or that of other endogenous receptors, we were able to show that the endocytosis of identical receptors could be saturated, but a complete lack of competition exists between the transferrin receptor (TfR), the low-density lipoprotein receptor, and the epidermal growth factor receptor. Overexpression of any one of these receptors resulted in its redistribution toward the cell surface, implying that entry into coated pits is limited. During high levels of TfR expression, however, a significant increase in the amount of surface Lamp1, but not low-density lipoprotein receptor, epidermal growth factor receptor, or Lamp2, is detected. This suggests that Lamp1 and TfR compete for the same endocytic sites. Together, these results support the idea that there are at least three distinct saturable components involved in clathrin-mediated endocytosis.

Base Sequence

Saturation of the endocytic pathway for the transferrin receptor does not affect the endocytosis of the epidermal growth factor receptor.

Cell-surface receptors that undergo clathrin-mediated endocytosis contain short amino acid sequences in their cytoplasmic domain that serve as internalization signals. Interactions between these sequences and components of the endocytic machinery should become limiting upon overexpression of the constitutively recycling transferrin receptor (TfR). A tetracycline-responsive system was used to induce overexpression of the TfR up to 20-fold in HeLa cells. Internalization assays indicate the rate of 125I-transferrin uptake per surface TfR is reduced by a factor of 4 in induced cells. Consistent with endocytosis being the rate-limiting step, TfRs shift from an endosomal to more of a plasma membrane distribution with TfR overexpression. The clathrin-associated protein AP-2 has been proposed to interact directly with the cytoplasmic domain of many receptors, yet no changes in the amount or distribution of AP-2 were detected in induced cells. The internalization rate for the epidermal growth factor receptor was also measured, with or without induction of TfR expression. Even though endocytosis of the TfR is saturated in induced cells, 125I-labeled epidermal growth factor continues to be internalized at a rate identical to that seen in uninduced cells. We propose that there are different limiting steps for the endocytosis of these two receptors.

Adaptor Protein Complex alpha Subunits

Epidermal fatty acid oxygenases are activated in non-psoriatic dermatoses.

The extent of epidermal fatty acid oxygenase activation in non-psoriatic dermatoses and the nature of these oxygenases are not known. The monohydroxylated fatty acid derivatives produced in vivo and trapped in skin scales or produced in vitro by oxygenases preserved in scales were analyzed by high performance liquid chromatography in 10 patients with non-psoriatic dermatoses. Evidence for 15-lipoxygenase activation included the finding of 15(S)-hydroxyeicosatetraenoic acid (HETE) in scales from seven patients and the production of 15(S)-[14C]HETE and 13(S)-[14C]hydroxyoctadecadienoic acid (HODE) during scale incubations, respectively, with [14C]arachidonic and [14C]linoleic acid. Evidence for the activation of an arachidonic acid 12(R)-oxygenase included the finding of 12(R)-HETE in scales from eight patients and the production of 12(R)-[14C]HETE during scale incubations with [14C]arachidonic acid. 13-HODE was the predominant fatty acid derivative present in scale extracts; its lack of enantiopurity (mean S/R = 3.1) and the substantial formation of 9-HODE (mean S/R = 0.6; 9/13-HODE = 0.43) suggest its derivation from 15-lipoxygenase and a second oxygenase. The levels of 15(S)-HETE and 12(R)-HETE had a 125- to 144-fold range and were highest in scales from a patient with erythroderma and in three psoriatic scale samples similarly analyzed. These findings indicate that 15-lipoxygenase, most likely of keratinocyte origin, and an arachidonic acid 12(R)oxygenase of unknown type and cell origin are activated in diverse dermatoses.

12-Hydroxy-5,8,10,14-eicosatetraenoic Acid

Lipoxygenase mRNA in cultured human epidermal and oral keratinocytes.

Although 15-lipoxygenase has not been purified from cultured human keratinocytes nor has cDNA coding for the protein been isolated from this source, this enzyme activity is implied by the finding of its stereospecific product in in vitro experiments. Based on two primer pairs derived from human reticulocyte 15-lipoxygenase cDNA, we detected approximately 260 bp and approximately 370 bp cDNA fragments that were indistinguishable by gel electrophoresis and Southern hybridization from those derived from reticulocyte 15-lipoxygenase cDNA. The approximately 260 bp polymerase chain reaction (PCR) fragment from a keratinocyte plasmid cDNA library was cloned and determined, by sequencing, to contain 262 bp that were 100% identical to the corresponding reticulocyte 15-lipoxygenase cDNA. These two reticulocyte-type 15-lipoxygenase PCR fragments were also detected from oral keratinocytes. Using platelet-type 12-lipoxygenase cDNA primers, we derived a 264 bp cDNA fragment from keratinocyte mRNA. By sequence analysis, this fragment was determined to be 99.6% identical to that from platelet-type 12-lipoxygenase cDNA. The same fragment was also observed from two amplified keratinocyte cDNA libraries, and from oral keratinocyte mRNA. This is the first demonstration of reticulocyte-type 15-lipoxygenase cDNA derived from the mRNA of cultured human keratinocytes.

Arachidonate 12-Lipoxygenase

Generation of the soluble transferrin receptor requires cycling through an endosomal compartment.

The transmembrane protein, transferrin receptor (TfR), is found in a soluble form in human serum and in the medium of cell lines grown in tissue culture. The soluble form is generated by proteolytic cleavage between Arg-100 and Leu-101. We used two mutant human TfRs expressed in Chinese hamster ovary (CHO) cells lacking endogenous transferrin receptor to characterize the protease that cleaves the TfR and determine its location in the cell. The T104D mutant TfR lacks the O-linked carbohydrate at position 104, and is more susceptible to proteolytic cleavage at Arg-100 than the wildtype human TfR in these cells. We find that the protease is not a component of the serum in the growth medium, and it is not secreted by the cells. Cleavage does not occur during biosynthesis of the TfR, and occurs after the TfR has reached the cell surface. Expression of the T104D TfR in a temperature-sensitive acidification defective CHO cell line, G.7.1, shows that cleavage of the TfR is not dependent on acidification of endosomes. The C20A23 TfR is an endocytosis deficient mutant lacking an internalization signal. This mutant TfR, which is mainly localized to the cell surface, is cleaved less efficiently than the wild-type TfR, indicating that the protease is localized to an intracellular compartment.

Animals

Cyclooxygenase activity of cultured human mesothelial cells.

The fatty acid oxygenase activity of mesothelial cells and its role in inflammatory and neoplastic diseases of the mesothelium have not been defined. Techniques permitting in vitro cultivation of human mesothelial cells shed into serous cavities have permitted analysis of their specific metabolic capacities. The principal products of incubations of cultured human mesothelial cells with polyunsaturated fatty acids were analyzed using high performance liquid chromatography on reversed-, straight-, and chiral-phase columns and gas-liquid chromatography/mass spectrometry. The products included 6-keto-PGF1 alpha, 15-hydroxyeicosatetraenoic acid (S/R = 3.5), 11-hydroxyeicosatetraenoic acid, and 12-hydroxyheptadecatrienoic acid from arachidonic acid; 9- and 13-hydroxyoctadecadienoic acids (molar ratio of 9/13-hydroxyoctadecadienoic acids = 3.5, S/R ratios = 0.3 and 2.8, respectively) from linoleic acid; and 12-hydroxyheptadecadienoic acid from homo-gamma-linolenic acid. These products are indicative of a cyclooxygenase whose activation in vivo may play a significant role in serosal cavity pathology.

Cells, Cultured

Fatty acid oxygenase activity of human hair roots.

The extent to which fatty acid oxygenases are activated in the normal epidermis is not known. Characterization of the regio- and stereospecificity of the monohydroxylated derivatives of arachidonic and linoleic acid produced by human hair roots is needed to define the enzymatic origin of these compounds and to define a possible role for fatty acid oxygenases in growth, differentiation, and pathology of human hair. Hair roots epilated from normal human volunteers were incubated with radiolabeled arachidonic acid or linoleic acid and the monohydroxylated derivatives produced in vitro were characterized. Incubation of hair roots with 14C]arachidonic acid resulted in the production of 15(S)-[14C]hydroxyeicosatetraenoic acid and 12(S,R)-[14C]hydroxyeicosatetraenoic acid (mean S/R ratio, 2.5). 13(S)-[14C]hydroxyoctadecadienoic acid was the principal product of incubations with [14C]linoleic acid. No radiolabeled products were derived from incubations with heat-denatured hair roots. The fatty acid oxygenase activity of anagen hair roots was inhibited by nordihydroguaiaretic acid and was greatest in the hair root bulb. The strict S-stereospecificity and the regiospecificity of the n-6 oxygenase are strong evidence for the presence of a 15-lipoxygenase in human hair roots, similar to that identified in cultured human keratinocytes. The stereospecificity of the 12-HETE produced by human hair roots is not compatible with the sole action of 12-lipoxygenase.

Arachidonate 12-Lipoxygenase

Cytotoxicity of fatty acid oxygenase activation in rat basophilic leukemia cells.

Apart from the generation of potent inflammatory mediators, the effects of fatty acid oxygenase activation, per se, on the host cell have not been well-delineated. Fatty acid oxygenases were activated in rat basophilic leukemia cells (RBL-1) by incubating them for 2-4 hr with 33-300 microM of arachidonic acid (AA) or linoleic acid (LA). As a control, the cells were incubated with one of two analogs of these fatty acids which are not oxygenase substrates: eicosatetraynoic acid or linoelaidic acid. Effects of oxygenase activation on cell viability were monitored by an assay for mitochondrial function. Cytotoxicity occurred in incubations with exogenous AA or LA in direct proportion to the substrate concentration but was not found in the control incubations or in incubations with the principal monohydroxylated AA products, 5-, 15-, and 12-HETE. Nordihydroguaiaretic acid (80 microM) and alpha-tocopherol (100 microM) significantly decreased the cell death observed during incubations with AA or LA. It is concluded that extensive oxygenase activation can result in cell death from intermediates produced proximal to the stable monohydroxylated derivatives.

Animals

Lipoxygenase products in inflammatory synovial fluids and other exudates.

Forty six synovial fluid samples from 42 patients with inflammatory joint disease were analysed by reversed phase high performance liquid chromatography to determine 5-lipoxygenase products, specifically dihydroxyeicosatetraenoic acids (diHETEs). Twenty eight per cent of the fluids which were assayed had one or more products of 5-lipoxygenase activation. Seven fluids contained leukotriene B4 (0.1-28.1 ng/ml); three fluids had low concentrations of 20 carboxy/hydroxy-leukotriene B4 (0.01-0.05 ng/ml); three samples had leukotriene B4 isomers (1.5-2.4 ng/ml); and four fluids contained 5,15-diHETE (2.3-16.4 ng/ml). There was a poor correlation between synovial fluid white blood cell counts and evidence of 5-lipoxygenase activation. Several fluids contained unidentified compounds with spectra similar in shape to that of trienes, but the lambda max values of these unidentified compounds were different from those of known leukotrienes. A septic peritoneal exudate and a septic pleural fluid had concentrations of leukotriene B4 and leukotriene B4 isomers and metabolites in a range similar to those found in synovial fluids.

Arachidonate 5-Lipoxygenase

In vivo activation of an omega-6 oxygenase in human skin.

To test the hypothesis that an epidermal fatty acid oxygenase is activated in vivo under physiologic conditions, surface lipids from normal human skin were analyzed for oxygenase products. With high-performance liquid chromatography on reversed-phase and straight-phase chiral columns and gas-liquid chromatography/mass spectrometry, these lipids were found to contain free 13-hydroxyoctadeca-9Z,11E-dienoic acid and 9-hydroxyoctadeca-10E,12Z-dienoic acid. The 13-hydroxyoctadecadienoic acid was present as a stereoisomeric mixture, with an average S/R ratio of 2.2, and exceeded the concentration of 9-hydroxyoctadecadienoic acid by a factor of 2. These observations and others indicate that the 13-hydroxyoctadecadienoic acid was derived mostly from an omega-6 oxygenase (probably 15-lipoxygenase) which is activated in vivo in normal skin.

Antithrombins

Stereospecificity of the hydroxyeicosatetraenoic and hydroxyoctadecadienoic acids produced by cultured bovine endothelial cells.

Characterization of the stereospecificity of the derivatives of arachidonic acid and linoleic acid produced by endothelial cells is needed to define the enzymatic origin of these compounds and their role in vascular physiology. In studies utilizing two bovine endothelial cell lines (CPAE and AG04762), both free 15-hydroxyeicosatetraenoic acid (15-HETE) and 11-hydroxyeicosatetraenoic acid (11-HETE) were generated during incubations with exogenous arachidonic acid and both free 9-hydroxyoctadecadienoic acid (9-HODE) and 13-hydroxyoctadecadienoic acid (13-HODE) were generated during incubations with exogenous linoleic acid. Esterification of 15-HETE, 9-HODE and 13-HODE during these incubations was demonstrated. The analyses included reversed-phase high performance liquid chromatography of the free acid and its methyl ester and chiral separation of the methyl ester on straight phase chiral columns. The ratio of 9-HODE/13-HODE averaged 2.7 in the chromatographic analyses of the extracts of the incubations with linoleic acid. The combined production of 13-HODE and 9-HODE from linoleic acid was four times greater than that of 15-HETE and 11-HETE from arachidonic acid. With regard to the products of the CPAE endothelial cell line, the S/R ratio of the stereoisomers averaged 1.5 for free 15-HETE, 5.7 for free 13-HODE and 0.2 for free 9-HODE. The 11-HETE had strict (R) stereospecificity. The products from the AG04762 endothelial cell line had similar stereochemistry. All these stereochemical findings point to the activity of a cyclooxygenase rather than that of a lipoxygenase.

Animals

Saturability of esterification pathways of major monohydroxyeicosatetraenoic acids in rat basophilic leukemia cells.

The principal monohydroxyeicosatetraenoic acids (HETEs), 5-, 12-, and 15-HETE, which can be produced by rat basophilic leukemia (RBL-1) cells, are also esterified by these cells. Exogenously added 5-, 12-, and 15-HETE were rapidly incorporated as esters in RBL cells, reaching plateau levels within 25 min. In incubations in culture medium with protein added, all three HETEs were essentially completely metabolized within 24 h. 5-HETE was esterified more rapidly and to a greater extent than 12-HETE or 15-HETE when these were incubated together with RBL cells, indicating some degree of selectivity in the esterification pathways. When arachidonic acid (AA) was incubated in increasing concentrations with constant concentrations of 15-HETE and RBL cells, the free 15-HETE concentration increased and esterified 15-HETE concentration decreased markedly at AA: 15-HETE molar ratios above 9. 15-HETE esterification in RBL cells was also markedly inhibited by the polyunsaturated fatty acids, eicosatetraynoic and eicosapentanoic acids, but not by oleic or linoleic acids. In separate experiments with unlabeled and radiolabeled substrates, the extent of incorporation of esterified HETE in RBL cells decreased at higher concentrations of 15-HETE and AA, which showed that the pathway was saturable. The shapes of the curves for these fatty acid inhibitors suggest a concentration-dependent two-compartment pathway of esterification. These data indicate that the HETEs and other 20 carbon fatty acid substrates probably compete for activity of a specific arachidonyl-CoA synthetase, which is the first and rate-limiting step for esterification of arachidonic acid by many human cells. Esterified 15-HETE was found to be predominantly in the phosphatidylethanolamine fraction of RBL cell lipids.

12-Hydroxy-5,8,10,14-eicosatetraenoic Acid

Stereospecificity of the products of the fatty acid oxygenases derived from psoriatic scales.

The principal in vivo oxygenase products of arachidonic acid and linoleic acid in psoriatic skin scales are 12-hydroxyeicosatetraenoic acid (R/S ratio = 5.7), 13-hydroxyoctadecadienoic acid (S/R = 1.9), and 9-hydroxyoctadecadienoic acid (R/S = 2.4). Definition of the enzymatic origin of these fatty acid derivatives is an important step in assessing their possible role in the pathogenesis of psoriasis. Psoriatic skin scales were incubated with radiolabeled arachidonic acid and linoleic acid and the monohydroxylated derivatives produced in vitro were characterized. The products of incubation with [3H]arachidonic acid were an enantiopure 15(S)-[3H]hydroxyeicosatetraenoic acid and a nonracemic mixture of the 12-[3H]hydroxyeicosatetraenoic acid steroisomers (R/S ratio = 4.5). An enantiopure 13(S)-[14C]hydroxyoctadecadienoic acid was produced from [14C]linoleic acid. No radiolabeled products were derived from incubations with heat-denatured scales. These results provide evidence for two distinct oxygenase activities that are preserved in psoriatic skin scales. One is that of an omega-6 oxygenase with strict (S) stereospecificity, consistent with the activity of a lipoxygenase. This enzyme activity appears to be similar to that of the 15-lipoxygenase which has been described in cultured human keratinocytes. The second activity is that of an arachidonic acid 12(R)-oxygenase that has not been observed in normal human epidermis but which appears to be expressed in psoriatic epidermis.

12-Hydroxy-5,8,10,14-eicosatetraenoic Acid

Characterization of the chirality of the monohydroxy-eicosatetraenoic acids produced by rat basophilic leukemia cells.

Incubation of rat basophilic leukemia cells with exogenous arachidonic acid and permeabilizing concentrations of ethanol resulted in the production of 5-, 12-, and 15-hydroxyeicosatetraenoic acids. With chiral phase high performance liquid chromatography, it was demonstrated that the 5-hydroxyeicosatetraenoic acid had strict (S) stereospecificity while contrary to expectation, the 12- and the 15-hydroxyeicosatetraenoic acids were non-racemic mixtures of the stereoisomers with the S/R ratios averaging 8.6 and 2.2, respectively. If the strict (S) stereospecificity of mammalian lipoxygenases holds true, these results suggest that the 15- and 12-hydroxyeicosatetraenoic acids may be derived from non-lipoxygenase sources. Examination of the chirality of the oxygenase products of unsaturated fatty acids may be of value in defining the enzymes which are activated in vivo in pathological states.

Animals

Estrogen metabolism in the (New Zealand black x New Zealand white)F1 murine model of systemic lupus erythematosus.

Hepatic microsomal estrogen metabolism was analyzed in the (New Zealand black x New Zealand white)F1 ([NZB x NZW]F1) murine model of systemic lupus erythematosus. Both the estrogen 2-hydroxylase activity (per mg microsomal protein) and the hepatic cytochrome P-450 content were higher in premorbid (NZB x NZW)F1 mice, as compared with similarly aged nonautoimmune mice. However, these differences were not associated with alterations in the relative formation of the 2-hydroxylated and the 16 alpha-hydroxylated metabolites. The development of overt nephritis was associated with a decrease in estrogen metabolic activity, but not with any alteration in the distribution of estrogen metabolites. Thus, estrogen metabolism was not altered in premorbid (NZB x NZW)F1 mice in a manner that would result in abnormal retention of hormonally active metabolites.

Animals

Transformations of 5-HETE by activated keratinocyte 15-lipoxygenase and the activation mechanism.

There is convincing evidence that normal cultured human keratinocytes possess a 15-lipoxygenase activity which, however, does not appear to manifest itself without cell membrane damage. When "activated", this enzyme transforms arachidonic acid into 15-hydroxyeicosatetraenoic acid (15-HETE), and linoleic acid into 13-hydroxyoctadecadienoic acid, presumably by peroxidase action on their respective hydroperoxy intermediates. Normal but not membrane-damaged keratinocytes metabolize exogenous 5-HETE, principally by esterifying the eicosanoid intact, primarily in the triacylglycerol fraction. In the present study, membrane-damaged keratinocytes were found to transform 5-HETE to 5,15-diHETE and also to a lipoxin-like group of tetraenes. Similar, if not identical, tetraenes were produced by action of the keratinocyte enzyme on 5(S),15(S)-diHETE, which points to the role of the latter as an intermediate between 5-HETE and the tetraenes. A direction for further study of the mechanism of the "activation" step is presented.

Arachidonate 15-Lipoxygenase

The structural requirements for anti-cardiolipin antibody binding in sera from patients with syphilis and SLE.

In a search for specific binding patterns of anti-phospholipid (PL) antibody reactivity in sera from patients with systemic lupus erythematosus (SLE), a quantitative assay was used to compare binding curves with those from beef heart cardiolipin (CL) and the following CL analogues: diphosphatidyl propylene glycol (DPPG), which lacks the internal hydroxyl group on the glycerol moiety; acetyl CL (ACL), in which an acetyl group is substituted for the glycerol hydroxyl group; and dimethyl CL (DCL), in which a methyl group is positioned on each phosphate group. In syphilitic sera the plateau level of antibody binding was decreased by 15 and 41% with DPPG and ACL, respectively. Binding to DCL was dramatically suppressed to levels only slightly above baseline. Only the binding curves for CL and DPPG showed saturability, and analysis by Eadie-Scatchard plots showed that the change in binding was primarily due to a more than twofold increase in KD (decreased antibody avidity). Similar patterns were seen with sera from patients with SLE and SLE-like illness, but some uniquely shaped binding curves were observed. Compared to control CL, peak binding levels were 75-88% for DPPG, 16-20% for ACL, and only 1-4% for DCL. These data indicate that the integrity of the CL headgroup, especially at the phosphate moiety, is essential for recognition by anti-CL antibodies from some sources.

Antibodies, Monoclonal

Free and esterified 13(R,S)-hydroxyoctadecadienoic acids: principal oxygenase products in psoriatic skin scales.

Characterization of the chemical form and stereo-specificity of the fatty acid derivatives of arachidonic and linoleic acid in psoriatic epidermis is needed to define the enzymatic origin of these compounds and their possible role in pathogenesis. In an analysis of psoriatic skin scales, both free and esterified 13-hydroxyoctadecadienoic acids were the principal fatty acid derivatives, present in mean concentrations of 115 and 17 ng/mg scales, respectively. The analysis included reversed-phase high performance liquid chromatography of the free acid and of its methyl ester, gas chromatography, gas-liquid chromatography-mass spectrometry of the methyl ester derivatives, and chiral separation. The free and esterified 13-hydroxyoctadecadienoic acids isolated from the psoriatic scales contained a mixture of the S/R stereoisomers, averaging 1.9:1 for free 13- hydroxyoctadecadienoic acid. These findings are not compatible with the strict S-stereospecificity for oxygen insertion exhibited by mammalian lipoxygenase but rather could point to the action of a cyclooxygenase. The demonstration that a hydroxylated fatty acid derivative is esterified in vivo in psoriatic keratinocytes suggests that the physiology of these cells may be altered early in the process of keratinization.

Esterification