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Biomedical subjects

J Kay

Publications and source records attributed to J Kay.

At least 37 records · Page 2Linked to original sources

Isolation and characterization of beta-glucan receptors on human mononuclear phagocytes.

beta-glucan receptors, with ligand specificity for yeast and fungal carbohydrate polymers, have been studied as phagocytic receptors of human monocytes. To characterize their structure, binding studies were carried out with human U937 cells and a rabbit IgG anti-Id that recognizes epitopes on monocyte beta-glucan receptors. Unstimulated U937 cells specifically bound large amounts of the anti-Id, but almost none of the control anti-isotype. At saturation, the number of anti-Id molecules bound per U937 cell was 2.6 x 10(6) with an apparent Ka of 1.9 x 10(7) M-1. Immunoprecipitates from detergent lysates of surface-radioiodinated U937 cells contained only two membrane proteins with antigenic specificity for the anti-Id, one having a mol wt of 180 kD and the other 160 kD. Both proteins were disulfide-linked and presented, after reduction, as five polypeptides of 95, 88, 60, 27, and 20 kD. Detergent lysates of unlabeled U937 cells, purified by affinity chromatography on anti-Id-Sepharose, yielded the same two nonreduced proteins and five reduction products in slab gels stained with Coomassie blue. In Western blots probed with the anti-Id, the most immunoreactive nonreduced and reduced affinity-purified products were the 160 and 20 kD molecules, respectively. Immunoblots of two-dimensional gels showed the 180 and 160 kD proteins to express a common epitope through disulfide linkage to the 20 kD polypeptide. By immunoblot analysis, U937 cell glucan-binding proteins from detergent lysates contained two cell proteins antigenic for the anti-Id that were indistinguishable from affinity-purified molecules in size and subunit composition. Studies of affinity-purified proteins from detergent lysed human monocytes were characterized by immunoblot analysis and found to be identical to U937 cell beta-glucan receptors. They consisted of two disulfide-linked proteins, with mol wt of 180 and 160 kD, and had in common a 20 kD polypeptide with the anti-Id epitope.

Antibodies, Monoclonal

Identification and characterization of opsonic fibronectin in synovial fluids of patients with active rheumatoid arthritis.

A cofactor that selectively opsonizes particulate activators of the human alternative complement pathway and enhances their phagocytosis by human monocytes was identified in synovial fluids of patients with rheumatoid arthritis. The active material was present in fluids treated with protease inhibitors, was heat stable, and was unaffected by incubation with hyaluronidase. Chromatographic isolation of synovial fluid fibronectin by gelatin affinity and by immunoaffinity on antifibronectin monoclonal antibody BD4 yielded similar quantities of protein for each of 3 fluids. Synovial fluid proteins with the BD4 fibronectin epitope accounted for essentially all of the phagocytosis-enhancing activity and expressed this activity by opsonizing target activators. Additional chromatographic analyses of synovial fluid fibronectin with the BD4 epitope were carried out using Sepharose-bearing gelatin and 4 additional antifibronectin monoclonal antibodies. The opsonic materials were characterized as having 2 distinct fibronectin epitopes, which always mapped from the cell adhesive domain to the carboxyl-terminus of plasma fibronectin, but only rarely contained the gelatin binding domain.

Arthritis, Rheumatoid

The influence of the curriculum in psychiatry residency education.

Extraordinary economic forces are influencing graduate medical education in this country. Federal, state, and third party cost containment efforts, managed care, medical student loan indebtedness, and decreasing governmental and industry enthusiasm to support residency training are producing significant external pressures on academic health centers, recruitment into psychiatry, and on the practice of psychiatry. Other pressures on the psychiatry residency curriculum are being generated from the rapid expansion in our scientific knowledge base in clinical psychiatry and the influence of subspecialization. The future psychiatrist will be trained for a life long career in continuing education to accommodate for the explosive scientific contributions to our field. The residency training program will promote the ability to think scientifically, to teach others, to administrate and lead, and to achieve clinical competence in a more rigorous fashion. Regardless of the number and forms of emerging practice settings, it is best to train our residents for flexibility through emphasizing fundamental clinical and scientific excellence.

Cost Control

Use of tricyclic antidepressants in recipients of heart transplants.

Cardiac transplantation has become an accepted treatment for certain endstage cardiac disease patients. Depression and significant psychosocial stress among heart transplant recipients are not uncommon, but published reports about the use of antidepressants in these persons are very rare. The authors of this study report on a group of nine heart transplant recipients treated with antidepressant medicines. Seven patients achieved clinical remissions of their depression, and only two were unable to tolerate the noncardiac side effects of the medication. Indicators of autonomic, electrocardiographic, and hemodynamic functions showed no adverse effects. Although the study is based on a small sample, it appears that tricyclic antidepressants are safe and effective in heart transplant recipients.

Adaptation, Psychological

Generation of human endothelin by cathepsin E.

Highly-purified cathepsin D processed human big endothelin1-38 into endothelin-like fragments but did not appear to generate endothelin1-21 under the conditions employed. By contrast, human cathepsin E specifically cleaved human big endothelin into endothelin1-21 and the C-terminal fragment under identical conditions but did not degrade either product further.

Amino Acid Sequence

Sub-site preferences of the aspartic proteinase from the human immunodeficiency virus, HIV-1.

A series of synthetic, chromogenic substrates for HIV-1 proteinase with the general structure Ala-Thr-His-Xaa-Yaa-Zaa*Nph-Val-Arg-Lys-Ala was synthesised with a variety of residues introduced into the Xaa, Yaa and Zaa positions. Kinetics parameters for hydrolysis of each peptide by HIV-1 proteinase at pH 4.7, 37 degrees C and u = 1.0 M were measured spectrophotometrically and/or by reverse phase FPLC. A variety of residues was found to be acceptable in the P3 position whilst hydrophobic/aromatic residues were preferable in P1. The nature of the residue occupying the P2 position had a strong influence on kcat (with little effect on Km); beta-branched residues Val or Ile in this position resulted in considerably faster peptide hydrolysis than when e.g. the Leu-containing analogue was present in P2.

Amino Acid Sequence

Rational design of peptide-based HIV proteinase inhibitors.

A series of peptide derivatives based on the transition-state mimetic concept has been designed that inhibit the proteinase from the human immunodeficiency virus (HIV). The more active compounds inhibit both HIV-1 and HIV-2 proteinases in the nanomolar range with little effect at 10 micromolar against the structurally related human aspartic proteinases. Proteolytic cleavage of the HIV-1 gag polyprotein (p55) to the viral structural protein p24 was inhibited in chronically infected CEM cells. Antiviral activity was observed in the nanomolar range (with one compound active below 10 nanomolar) in three different cell systems, as assessed by p24 antigen and syncytium formation. Cytotoxicity was not detected at 10 and 5 micromolar in C8166 and JM cells, respectively, indicating a high therapeutic index for this new class of HIV proteinase inhibitors.

Amino Acid Sequence

The expression of a synthetic rainbow trout metallothionein gene in E. coli.

A synthetic gene for rainbow trout metallothionein was constructed and inserted into a dual origin plasmid where expression was induced by a temperature shift in a proteinase-deficient strain of Escherichia coli. The recombinant protein was purified to homogeneity, and a partial amino acid sequence was determined to confirm its identity. Its immunochemical characteristics were similar to those of native metallothionein from rainbow trout. The amounts of recombinant metallothionein produced were quantified in soluble cell extracts by ELISA. Low concentrations were detected when growth was performed either in L-broth or defined (GMM-II) medium. Supplementation of the medium with zinc or copper had no effect on the amount of metallothionein produced. By contrast, when cadmium was included in either L-broth or GMM-II medium, much higher concentrations of the protein within the cells (approx. 13 micrograms/mg soluble cell protein) were detected. This stabilisation of the protein by metal reconstitution in vivo is considered in relation to the selective uptake/exclusion of metals by the cells and its significance for the scavenging of certain precious or toxic heavy metals is discussed.

Amino Acid Sequence

In vitro inhibition of HIV-1 proteinase by cerulenin.

Retroviruses encode proteinases necessary for the proteolytic processing of the viral gag and gag-pol precursor proteins. These enzymes have been shown to be structurally and functionally related to aspartyl proteinases such as pepsin and renin. Cerulenin is a naturally occurring antibiotic, commonly used as an inhibitor of fatty acid synthesis. Cerulenin has been observed to inhibit production of Rous sarcoma virus and murine leukaemia virus by infected cells, possibly by interfering with proteolytic processing of viral precursor proteins. We show here that cerulenin inhibits the action of the HIV-1 proteinase in vitro, using 3 substrates: a synthetic heptapeptide (SQNYPIV) which corresponds to the sequence at the HIV-1 gag p17/p24 junction, a bacterially expressed gag precursor, and purified 66 kDa reverse transcriptase. Inhibition of cleavage by HIV-1 proteinase required preincubation with cerulenin. Cerulenin also inactivates endothiapepsin, a well-characterised fungal aspartyl proteinase, suggesting that the action of cerulenin is a function of the common active site structure of the retroviral and aspartic proteinases. Molecular modelling suggests that cerulenin possesses several of the necessary structural features of an inhibitor of aspartyl proteinases and retroviral proteinases. Although cerulenin itself is cytotoxic and inappropriate for clinical use, it may provide leads for the rational design of inhibitors of the HIV proteinase which could have application in the chemotherapy of AIDS.

Amino Acid Sequence