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Biomedical subjects

A Y Jeng

Publications and source records attributed to A Y Jeng.

5 recordsLinked to original sources

Characterization of a Xenopus laevis skin peptidylglycine alpha-hydroxylating monooxygenase expressed in insect-cell culture.

The C-terminal amide structure of peptide hormones and neurotransmitters is synthesized via a two-step reaction catalyzed by peptidylglycine alpha-hydroxylating monooxygenase (PHM) and peptidylhydroxyglycine N-C lyase. A Xenopus laevis PHM expressed in insect-cell culture by the baculovirus-expression-vector system was purified to homogeneity and characterized. Using a newly established assay system for PHM, the kinetic features of this enzyme were investigated. As expected, the enzyme required copper ions, L-ascorbate and molecular oxygen for turnover. Salts like KI and KCl, and catalase stabilized the enzyme in the presence of L-ascorbate. The optimum pH value for the enzyme reaction was around six when Mes buffer was used and around seven when phosphate buffer was used under the same assay condition. Below pH 6, acetate, iodide and chloride ions activated the reaction. The kinetic analysis is consistent with a ping-pong mechanism with respect to peptide and L-ascorbate, and the peptide showed substrate inhibition. The substrate specificity of the enzyme at the penultimate position was examined by competitive assay using tripeptides with glycine at the C-termini and the inhibitory potency of these peptides in descending order was methionine > aromatic > non-polar amino acids.

Acetates

Dual effects of endothelin-1 on neurite outgrowth induced by 12-O-tetradecanoylphorbol-13-acetate.

The vasoactive peptide endothelin-1 (ET-1) was found to bind to a single class of binding sites in chick embryonic sensory ganglia with a Kd of 67 +/- 5 pM. Treatment of ganglia explants with 100 pM ET-1 did not affect neuronal development, but when added together with 12-O-tetradecanoylphorbol-13-acetate (TPA) a synergistic stimulation of neurite outgrowth was observed. In contrast, 10 nM ET-1 inhibited TPA-induced neurite outgrowth. Both the stimulatory and inhibitory effects were not blocked by nifedipine, a Ca2+ channel blocker. These results suggest that ET-1 can modulate the process of neurite outgrowth and its effects are not dependent on voltage-gated Ca2+ channels.

Animals

Soluble endothelin degradation enzyme activities in various rat tissues.

From soluble extract of rat kidney we have previously identified an endothelin degradation enzyme that rapidly and specifically cleaves off the C-terminal tryptophan of endothelin-1, resulting in a peptide that is three orders of magnitude weaker in potency than endothelin-1 in causing smooth muscle contraction. The tissue distribution of this enzyme was examined, and the soluble extracts of rat kidney were found to contain the highest enzyme activity, followed by the spleen and the liver. In contrast, no enzyme activity was detected in the soluble extracts of brain, heart, and lung. The biochemical properties of the partially purified enzyme from kidney were further investigated. The optimal pH of the enzyme was between 5 and 7. The endothelin degrading activity was effectively blocked by thiol protease inhibitors such as benzyloxycarbonyl-Phe-Ala-diazomethyl ketone and p-hydroxymercuribenzoic acid, as well as by phenylmethylsulfonyl fluoride, but not by metalloprotease and other serine protease inhibitors. This enzyme displayed a clear difference in substrate specificity when compared with other thiol proteases such as cathepsin B, cathepsin H, and cathepsin L, known to be present in the kidney. These results suggest that a novel protease with endothelin degrading activity is widely distributed in a number of tissues.

Animals

Isolation of a low molecular weight Ca2+ carrier from calf heart inner mitochondrial membrane.

A protein was isolated from calf heart inner mitochondrial membrane with the aid of an electron paramagnetic resonance assay based on the relative binding properties of Ca2+, Mn2+, and Mg2+ to the protein. The molecular weight of this protein has been estimated to be about 3000 by urea/sodium dodecyl sulfate gel electrophoresis and amino acid analysis. The protein is shown to have two classes of binding sites for Ca2+ by flow dialysis studies and can extract Ca2+ into an organic phase. The selectivity sequence of this protein determined from the organic solvent extraction experiments shows that it favors divalent cations over monovalent cations. Also, the relative selectivity sequence for divalent cations is Ca2+, Sr2+ greater than Mn2+ greater than Mg2+. Ruthenium red and La3+ are shown to inhibit the protein-mediated extraction of Ca2+ into the organic solvent. The calcium translocation in a Pressman cell by this protein is selectively driven by a hydrogen ion gradient. Control experiments indicate that the Ca2+ trnsport properties of the protein are not due to the contaminating phospholipids. It appears that we have isolated from the inner mitochondrial membrane a calcium carrier, which we have named "calciphorin."

Amino Acids