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Biomedical subjects

R C Foreman

Publications and source records attributed to R C Foreman.

24 records · Page 2Linked to original sources

Human Z alpha 1-antitrypsin accumulates intracellularly and stimulates lysosomal activity when synthesised in the Xenopus oocyte.

Microinjection of human liver mRNA from a patient homozygous for alpha 1-antitrypsin deficiency (PiZZ) into Xenopus oocytes led to a 2--10-fold increase in lysosomal activity. Stimulation of lysosomal activity was not observed when mRNA from a normal human liver (alpha 1-antitrypsin PiMM), or water was injected into the oocyte. This lysosomal activity was oocyte derived and was not due to translation products of the human liver mRNA. Thus a protein that accumulates intracellularly in the secretory pathway is capable of stimulating lysosomal activity.

Animals↗

Xenopus oocytes can synthesise but do not secrete the Z variant of human alpha 1-antitrypsin.

Human liver mRNA was prepared from a patient homozygous for alpha 1-antitrypsin deficiency (PiZZ) and from a normal subject (PiMM). Both liver RNAs were microinjected into Xenopus oocytes and alpha 1-antitrypsin identified by immunoprecipitation. The normal M variant of alpha 1-antitrypsin is synthesised and secreted by Xenopus oocytes, the abnormal Z protein is not secreted and an intracellular form accumulates in the oocytes. In the presence of tunicamycin an unglycosylated form of M alpha 1-antitrypsin appears in the incubation medium but no corresponding unglycosylated version of the Z protein is secreted.

Animals↗

Cleavage of human placental lactogen precursor by an enzyme from microbial membranes.

When membranes from Escherichia coli MRE 600 are added to an in vitro translation system, they are able to cleave correctly prehuman placental lactogen to yield the mature hormone. The protein was identified by SDS/polyacrylamide-gel electrophoresis and by determining its amino acid sequence. These studies were aided by the development of a new method for the separation of human placental lactogen from its precursor.

Amino Acid Sequence↗

Role of the eosinophil in protein oxidation in asthma: possible effects on proteinase/antiproteinase balance.

BACKGROUND: Many of the leukocytes which migrate into the tissue following allergen challenge can undergo a respiratory burst producing reactive oxygen species causing tissue damage and distorting proteinase/antiproteinase balance. The reactive oxygen species have extremely short half lives and so cannot be measured in vivo, but the protein carbonyl residues which result from protein oxidation can be measured in biological fluids. METHODS: We examined protein oxidation in bronchoalveolar lavage after allergen challenge in 12 patients with atopic asthma by measuring protein carbonyl residues using a sensitive Western blotting technique. RESULTS: We found that the median level of protein carbonyls per molecule of protein rose from 0.09 in bronchoalveolar lavage (BAL) obtained 18 h after saline challenge to 0.23 in BAL taken 10 min after segmental allergen challenge, reaching a median of 0.82 in samples obtained 18 h later (p<0.01 compared with saline control and the earlier time point). The number of protein carbonyl residues correlated strongly with the number of eosinophils recovered in the BAL (rho = 0.574, p<0.05) but not with the number of neutrophils (rho = 0.228, p = NS) or macrophages (rho = 0.178, p = NS). Western blotting showed that the majority of the modified protein comigrated with authentic alpha1-antitrypsin at 53 kD. In contrast, BAL samples from patients with chronic obstructive pulmonary disease, which is characterized by an influx of neutrophils, showed that the main oxidized protein colocalized with human serum albumin, the predominant protein in the BAL. CONCLUSION: Our results suggest that the recruitment and activation of eosinophils accounts for much of the protein oxidation found in the BAL following allergen challenge. The main oxidized protein appears to be alpha1-antitrypsin, a key antiproteinase in the airways. Inactivation of alpha1-antitrypsin by oxidation may distort the proteinase/antiproteinase balance leaving the lung vunerable to proteolytic damage. Intriguingly, we have evidence to suggest that other airways diseases, characterized by recruitment of other inflammatory cells, may result in the oxidation of alternative targets.

Adult↗