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Biomedical subjects

P M Cameron

Publications and source records attributed to P M Cameron.

16 recordsLinked to original sources

Human fibroblast stromelysin catalytic domain: expression, purification, and characterization of a C-terminally truncated form.

Stromelysin-1 is a member of a tissue metalloproteinase family whose members are all capable of degrading extracellular matrix components. A truncated form of human fibroblast prostromelysin 1 lacking the C-terminal, hemopexin-like domain has been expressed in Escherichia coli and purified to homogeneity. Treatment of this short form of prostromelysin with (aminophenyl)mercuric acetate resulted in activation and loss of the propeptide in a manner identical with the wild-type, full-length protein. Kinetic comparisons using Nle11-substance P as a substrate showed that the wild-type stromelysin and the truncated form of the enzyme had similar kcat and Km values. Likewise, both enzymes displayed similar Ki values for a hydroxamate-containing peptide inhibitor. Taken together, these results indicate that the C-terminal portion of stromelysin is not required for proper folding of the catalytic domain, maintenance of the enzyme in a latent form, activation with an organomercurial, cleavage of a peptide substrate, or interaction with an inhibitor. Moreover, the active short form of stromelysin displayed a reduction in the C-terminal heterogeneity, a characteristic degradation of the full-length stromelysin, and thereby provides a more suitable protein for future structural studies.

Amino Acid Sequence

Production and purification of prostromelysin and procollagenase from IL-1 beta-stimulated human gingival fibroblasts.

Conditions were established to stimulate human gingival fibroblast explant cultures to synthesize milligram quantities of the metalloproteinase proenzymes, prostromelysin and procollagenase. To stimulate enzyme production, cells were treated with 1 nM recombinant human IL-1 beta for approximately 7 days under serum free conditions. Using a combination of rapid column chromatography steps, approximately 10 milligrams of prostromelysin and 5 milligrams of procollagenase were purified from 1 liter of conditioned media. Prostromelysin electrophoresed as a doublet with molecular weights of 55,57 kD, whereas, procollagenase migrated with slightly lower molecular weights of 52, 54 kD. Both proenzymes were treated with trypsin or aminophenylmercuric acetate to generate active species. The molecular weights of the active enzymes were approximately 10 kD smaller than the proenzymes. Active enzymes were inhibited by metal chelators and the natural metalloproteinase inhibitor, tissue inhibitor of metalloproteinase (TIMP), but not by the serine protease inhibitor, phenylmethylsulfonyl fluoride (PMSF). Activated stromelysin degraded a number of substrates including transferrin, proteoglycan monomer, proteoglycan aggregated with hyaluronic acid, and substance P. By contrast, collagenase degraded interstitial type I collagen and the peptide thioester, Ac-Pro-Leu-Gly-SCH(iBu)Co-Leu-GlyOEt. Identity of both enzymes were confirmed by amino-terminal protein sequence analysis as well as by immunoblot analysis using monoclonal antibodies.

Amino Acid Sequence

Psychodynamic psychotherapy for the depressive syndrome.

Historical approaches of psychotherapy for depression are contrasted with current psychotherapeutic strategies. Now more strategies are focused, structured, time-limited, observable, testable, researchable and data based. The following depressive syndromes are reviewed in terms of the literature that demonstrates the effectiveness of psychotherapy: major depressive disorder, bipolar depressive disorder, depression associated with medical illness such as cancer, myocardial infarction and stroke, resistant depression post-traumatic stress disorder, grief reactions and depression during adolescence, mid-life and the geriatric period of the life cycle. A conceptual model favoring tripartite focus of intervention is recommended. Psychodynamic psychotherapy for depression must consider intrapsychic, interpersonal and family dynamics as well as social supports. A model for each population needs to be studied and developed further. Recommendations for current research are suggested. In the individual modification of psychotherapeutic approaches we must consider the varying maturity of ego defenses and the ego strength of the individual patient. Forty well-designed studies that demonstrate the effectiveness of psychotherapy in the depressive syndromes are quoted in this paper.

Adjustment Disorders

Identification of a high-affinity receptor for interleukin 1 alpha and interleukin 1 beta on cultured human rheumatoid synovial cells.

In this report the binding of recombinant human interleukins 1 alpha and 1 beta (rIL-1 alpha and rIL-1 beta) to primary cultures of human rheumatoid synovial cells is measured and compared to the concentrations of these mediators required for stimulation of PGE2 production by these same cells. The average concentration of IL-1 alpha required for half-maximal stimulation of PGE2 was 4.6 +/- 1.5 pM (+/- SEM) (n = 6), whereas for IL-1 beta half-maximal stimulation was observed at a concentration of 1.3 +/- 0.24 pM (n = 6). Both direct and competitive binding experiments were performed. In direct binding experiments, IL-1 alpha bound with a Kd of 66 pM (n = 1), while IL-1 beta bound with a Kd of 4 pM (n = 2). In competitive binding experiments, IL-1 alpha inhibited binding of 125I-IL-1 alpha with a Ki of 33-36 pM (n = 2) and binding of 125I-IL-1 beta with a Ki of 51-63 pM (n = 2). IL-1 beta inhibited binding of 125I-IL-1 alpha with a Ki of 2-3 pM (n = 2) and binding of 125I-IL-1 beta with a Ki of 7 pM (n = 2). The binding data were best fit by a model specifying a single class of receptors with homogeneous affinity for either IL-1 alpha or IL-1 beta and with an abundance of 3,000-14,000 sites per cell. Autoradiography showed that the vast majority of the synoviocytes within the cultures possessed IL-1 receptors. Comparison of biological response curves with the binding curves indicates that the observed receptors exhibit sufficiently high affinity to mediate the response of human synoviocytes to low picomolar concentrations of IL-1 alpha and IL-1 beta.

Arthritis, Rheumatoid

Expression in Escherichia coli of fully active recombinant human IL 1 beta: comparison with native human IL 1 beta.

Although complementary DNA (cDNA) encoding human interleukin 1 beta (IL 1 beta) have been cloned in several laboratories, there are as yet no data demonstrating that recombinant IL 1 beta (rIL 1 beta) molecules expressed from such cDNA are faithful, fully active replicas of the native protein secreted by human monocytes. To this purpose, cDNA sequences corresponding to the exact NH2-terminus and amino acid sequence of mature, monocyte-derived human IL 1 beta were placed under control of the inducible trp-lac (TAC) fusion promoter and were expressed in E. coli strain JM105. rIL 1 beta was purified to homogeneity by high pressure liquid chromatography (HPLC). Yields of 10 to 20 mg of rIL 1 beta/liter/10(11) cells were obtained. Purified rIL 1 beta was then compared in a number of biochemical and biologic assays to purified native IL 1 beta. Native and rIL 1 beta co-migrated on SDS-polyacrylamide gels as 17.5 kd polypeptides and reacted with specific polyclonal antisera raised to three synthetic peptides of human IL 1 beta in immunoblot experiments. Amino acid sequence analysis of rIL 1 beta showed that the native amino terminus, an ALA residue, was faithfully maintained. Purified native and rIL 1 beta co-chromatographed on reverse-phase HPLC. Specific biologic activities of rIL 1 beta were indistinguishable from those of the native protein in murine thymocyte and human dermal fibroblast proliferation assays, with half-maximal stimulation occurring at concentrations of 25 pM in the murine thymocyte assay and 2 pM in the human dermal fibroblast assay. Similarly, native and rIL 1 beta competed equally well for high affinity IL 1 receptor binding sites, each exhibiting a Ki of 20 pM on MRC-5 human embryonic lung fibroblasts. These observations indicate that E. coli efficiently expresses large quantities of rIL 1 beta, which emulates exactly the properties of the native protein.

Amino Acid Sequence

Identification of a high-affinity receptor for native human interleukin 1 beta and interleukin 1 alpha on normal human lung fibroblasts.

Native human IL-1 beta and IL-1 alpha stimulated prostaglandin E2 secretion by human embryonic lung fibroblasts at half-maximal concentrations of 3 +/- 1.2 pM (+/- SEM) and 10 +/- 2.3 pM, respectively. In contrast to the 20-50-fold lower affinities previously found for IL-1-R on 3T3 cells as well as murine and human lymphoblastoid lines, monoiodo 125I-IL-1 beta bound to normal human fibroblasts with a Kd of 8.4 +/- 4.1 pM in direct binding experiments, and with a Ki of 11.2 +/- 2.8 pM in competitive binding experiments. IL-1 alpha bound to the receptor identified by 125I-IL-1 beta with a Ki of 50 +/- 18 pM. The receptor exhibited homogeneous affinity for IL-1 beta or IL-1 alpha. The receptor did not recognize IL-2, IFN-gamma, tumor necrosis factor alpha, a functionally related monokine, or bovine acidic fibroblast growth factor, a structurally related mediator. Comparison of the biological response curves and binding curves obtained for IL-1 alpha and IL-1 beta showed that they were parallel and that 10-15% occupancy of the estimated 3,000 sites by either species of IL-1 was sufficient to give half-maximal stimulation of prostaglandin E2 secretion. Thus, the amount of apparent signal amplification observed on fibroblasts was considerably lower than the 100-100,000 fold amplification previously reported for lymphoid lines. Crosslinking experiments revealed a major band with a corrected molecular mass of approximately 80 kD and a minor band of approximately 200 kD. Labeling of these bands was blocked by IL-1 beta and IL-1 alpha but not by IL-2, IFN-gamma, or tumor necrosis factor alpha. These results demonstrate that normal human embryonic lung fibroblasts bear IL-1-R of sufficiently high affinity to mediate their biological responsiveness to low picomolar concentrations of IL-1 beta and IL-1 alpha and are consistent with the existence of a single receptor mediating the biological properties of both human IL-1 species.

Binding, Competitive

Purification to homogeneity and amino acid sequence analysis of two anionic species of human interleukin 1.

Two anionic species of human IL-1 have been purified to homogeneity. These molecules were characterized as having pI of 5.4 and 5.2 and molecular weights identical to IL-1/6.8 (17,500). The specific activities of IL-1/5.4 and IL-1/5.2, as measured in the mouse thymocyte co-mitogenic assay, were identical to that of IL-1/6.8, namely 1.2 X 10(7) U/mg, with half-maximal stimulation observed at 2 X 10(-11) M. IL-1/5.4 and IL-1/5.2 were found to be antigenically distinct from IL-1/6.8 in an ELISA. IL-1/5.4 was structurally distinct from IL-1/6.8 based on reverse-phase HPLC or CNBr peptides. Intact IL-1/5.2 and three intact CNBr peptides of IL-1/5.4 were sequenced, with the identification of 74 amino acid residues. These sequences were found to correspond exactly with the amino acid sequence deduced from the IL-1-alpha cDNA reported by March et al.

Amino Acid Sequence

Specific bioactivities of monocyte-derived interleukin 1 alpha and interleukin 1 beta are similar to each other on cultured murine thymocytes and on cultured human connective tissue cells.

In this report we compare the bioactivities of pure, human monocyte-derived interleukin 1 (IL-1) alpha and beta in the standard murine thymocyte proliferation assay, a human dermal fibroblast proliferation assay, and in an assay measuring stimulation of prostaglandin E2 (PGE2) release from human rheumatoid synoviocytes. In each case the different species of IL-1 produced saturable stimulation and gave similar dose response curves. Half-maximal stimulation was observed at average IL-1 concentrations of 29 pM in the thymocyte assay, 2 pM in the dermal fibroblast proliferation assay, and 5 pM in the synovial cell assay. Our results show that native, monocyte-derived IL-1 alpha and IL-1 beta are both potent stimulators of connective tissue cells and that the specific bioactivities of these molecules are similar to each other in tests on human connective tissue cells, as well as on murine lymphoid cells.

Adult

I. Formulation.

The authors describe a systematic approach to the process of formulation. Four interlocking phases are considered. The longitudinal data collection evaluate the patient's developmental journey. The cross-sectional evaluation includes careful consideration of phenomenological and dynamic factors. The integrative evaluation of these factors permits the construction of both a dynamic and a phenomenological diagnosis. Finally, in hypothesizing a tentative prognosis, we attemt to predict the capacity and quality of a person's potential change and readjustment.

Adolescent

II. A method of reporting formulation.

The authors present a method of reporting and evaluating a formulation. The reporting of a formulation includes a summary introduction, biological considerations, psychosocial considerations and hypothesis construction. Three sample formulations are scrutinized and specific critical evaluations offered. The subsequent reformulations are presented.

Adult

Studies on the mechanism of stimulation of the humoral response of murine spleen cultures by culture fluids from human monocytes.

It has been demonstrated that media derived from cultures of human monocytes can stimulate the IgM and IgG anti-sheep erythrocyte response of normal or T cell-deficient murine splenocytes in vitro. This culture fluid also causes a slight stimulation in the rate of B cell division and in the number of antibody-secreting cells occurring in the absence of added antigen. The active factors, which are released from the monocytes during the first 2 days of culture, appear to affect the murine B cells throughout the culture period.

Animals