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M E Parry

Publications and source records attributed to M E Parry.

4 recordsLinked to original sources

Seborrhoeic dermatitis is not caused by an altered immune response to Malassezia yeast.

The immune response of patients with seborrhoeic dermatitis and healthy age- and sex-matched controls was examined to test the hypothesis that an inadequate or inappropriate immune response to Malassezia yeast leads to seborrhoeic dermatitis. Antibody responses were examined using enzyme-linked immunosorbent assays (ELISAs) and Western blots and lymphocyte responses using lymphocyte proliferation assays. The level of IgG and IgM specific for whole yeast cells or extracted proteins of two isolates of M. furfur was tested in ELISA. A wide range of antibody levels was found but the patient and control groups were indistinguishable (n = 19), and the groups could not be distinguished by the pattern of Malassezia proteins recognized by their sera in Western blots. The average affinity of the subjects' antibodies specific for Malassezia cells or proteins was measured using ammonium thiocyanate dissociation. Most of the sera had moderate affinities corresponding to 50% dissociation at thiocyanate concentrations of 0.5-1.0 mol/L. There was no difference between patients and matched controls. The proliferation of the patients' lymphocytes in response to a number of M. furfur cell preparations was measured: whole cells, cytoplasmic proteins, cell walls, soluble molecules extracted from the cell walls using sonication, and a commercial preparation. There was a wide range of responses between individuals, but there was no difference between the three groups: patients with seborrhoeic dermatitis (n = 16), healthy controls (n = 16) and a group suffering from other inflammatory skin conditions (n = 15). The results do not support the hypothesis that an inadequate immune response to Malassezia yeast could lead to seborrhoeic dermatitis. Other possible pathological mechanisms include toxin production or lipase activity.

Adult↗

The herpes simplex virus type 1 origin-binding protein interacts specifically with the viral UL8 protein.

The products of herpes simplex virus type 1 (HSV-1) genes UL5, UL8 and UL52 form a complex in virus-infected cells that exhibits both DNA helicase and DNA primase activities. UL8 protein was purified from insect cells infected with a recombinant baculovirus and used to generate monoclonal antibodies (MAbs). MAb 0811 was shown to recognize the UL8 protein in both Western blots and immunoprecipitation assays and to co-precipitate the other two proteins in the complex from insect cells triply infected with recombinants expressing the UL5, UL8 and UL52 polypeptides. Experiments performed using extracts from doubly infected cells indicated that UL8 could interact separately with both the UL5 and UL52 proteins. Similar experiments using a recombinant virus that expressed the HSV-1 origin-binding protein (OBP), UL9, demonstrated a direct physical interaction between the helicase-primase complex and OBP which involved the UL8 subunit. The C-terminal DNA-binding domain of OBP is dispensable for this interaction, as evidenced by the ability of MAb 0811 to co-precipitate a truncated UL9 protein, containing only the N-terminal 535 amino acids, with UL8.

Animals↗

Purification and properties of the herpes simplex virus type 1 UL8 protein.

A rapid and simple two-step scheme for the purification of herpes simplex virus type 1 UL8 protein from insect cells infected with a recombinant baculovirus has been developed. The scheme involves DEAE-Sepharose and phenyl-Sepharose chromatography and yields approximately 1.5 mg of protein from 2.4 x 10(8) infected cells. The protein remains intact during purification as judged by its reactivity with amino and carboxy termini-specific antisera. Gel filtration chromatography showed that the protein exists as a monomer in solution. No binding of the protein to ssDNA or dsDNA or to a DNA/RNA hybrid could be demonstrated using a gel mobility shift assay.

Amino Acid Sequence↗