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Biomedical subjects

P Melius

Publications and source records attributed to P Melius.

11 recordsLinked to original sources

Pyroglutamyl N-termini of thermal polyamino acids.

It has been established indirectly that the N-termini of the thermal polyamino acids are pyroglutamic acid. This was determined by trifluoroacetic acid hydrolysis of the lactam ring followed by Dansyl labelling. The polyamino acids contained Ala, Gly, Glu, Leu, Phe, and Pro. In the experiments described here, the presence of pyroglutamic acid at the N-terminus of a polyamino acid was determined directly by the use of pyrrolidone carboxylyl peptidase. The enzyme catalyzes the removal of pyroglutamyl residues at the N-terminus of polypeptide chains. The polyamino acids used in these studies contained glutamic acid, aspartic acid, alanine, glycine, isoleucine, proline and valine. Alkaline hydrolysis was also used to determine indirectly that the N-termini of these polyamino acids are pyroglutamic acid. Another interesting finding was that many of the amino acids in the polymerization mixture were found to occur penultimate to the N-terminal amino acid. This is interpreted to mean that the diffusible fraction contains many polyamino acids.

Amino Acid Sequence

An improved method of light-induced pigmentation.

An improved procedure was developed whereby a primary light signal can be intensified and made visible by activation of a pre-tyrosinase (pre-phenoloxidase) enzyme [isolated from silkworm (Bombyx mori)] by alpha-chymotrypsin; this activation results from the light-activated conversion of the inactive cis-cinnamoyl-alpha-chymotrypsin.

Animals

Light-induced enzyme system leading to pigmentation.

Alpha-Chymotrypsin was light sensitized by acylating with cis-cinnamoyl ester, a substrate interconvertible to the trans form by ultraviolet (UV) light. The degree of acylation by this method was complete leaving no residual activity of the enzyme. Upon UV irradiation the inhibited enzyme regained about 70% of its original activity, thereby adding light-sensitiveness to the proteolytic enzyme. In seeking a photographic application of the light-sensitized enzyme, a pigmenting enzyme was incorporated with it. The coupled enzyme system was shown to exhibit a light signal in the form of dark pigment slurry.

Catechol Oxidase

Enhanced inhibition of both cellular protein synthesis and malate dehydrogenase by aged aquoplatinum(II) complexes.

Previous studies have shown cis-diamminedichloroplatinum(II) (Cis) an effective anti-tumour agent in man and animals. Evidence is presented here that formation of aquo complexes of this platinum derivative will significantly enhance its inhibitory properties with respect to two separate biochemical functions, namely inhibition of protein synthesis in hamster medulloblastoma cells and in inhibiting the activity of L-malate dehydrogenase (MDH) in a cell free system. Inhibition of cell protein synthesis rises from 8% using freshly dissolved drug to 30% when aged solutions of drug are employed at an inhibitor concentration of 0.1 mM. The inhibitory enhancement seen using purified malic dehydrogenase increases from 16% (fresh) to 57% (aged) at an inhibitor concentration of 1 mM.

Animals

Interactions of cis- and trans-platinum(II) complexes with dehydrogenase enzymes in the presence of different mono- and polynucleotides: evidence for a ternary complex.

The inhibition of several dehydrogenase enzymes by cis- and trans-Pt(NH3)2Cl2 have been measured in the presence of baker yeast ribonucleic acid (RNA), calf thymus and salmon sperm deoxyribonuclic acid (DNA) and several mononucleotides (AMP and ATP). The binding constants for the interaction of the platinum complexes to the nucleotides have been calculated and a comparison of those values to the previously calculated platinum complex-enzyme binding constants strongly suggest that platinum compounds are more tightly bound to the enzymes. The binding of the platinum complexes to most of the enzymes was decreased in the presence of any nucleotide, yet it was observed that when using rabbit muscle (M4) lactate dehydrogenase the mononucleotides reduced the binding to a lesser degree while the polynucleotides actually enhanced the platinum-enzyme interaction. The implications of these interactions are discussed.

Adenosine Monophosphate

A proposed mechanism relating the antitumor behavior of cis-platinum amine complexes to their inhibition of a model enzyme.

The twenty-four hour inhibition of m-malate dehydrogenase (E.C. 1.1.1.37) by various complexes of cis-platinum(II) and cis-platinum(IV) was measured as a function of the platinum concentration. It was observed that increased alkylation of the amine groups of Pt(II) and to a lesser degree of Pt(IV) decreased the activity consistently. It was also observed that the Pt(IV) analogues inhibit the enzyme to about an order of magnitude greater than the Pt(II) complexes. These phenomena will be interpreted.

Alkylation

Effects of divalent cations and sodium taurocholate on pancreatic lipase activity with gum arabic-emulsified tributyrylglycerol substrates.

The effects of Ca2+ and/or sodium taurocholate on lipase activity with gum arabic-emulsified tributyrylglycerol substrates were investigated. Calcium was found to slightly increase lipase activity while bile salts showed marked inhibition except at very low concentrations. Calcium eliminated inhibition seen with low concentrations of bile salts and reduced the inhibition seen at higher bile shift of the enzyme from the alkaline region in the absence of bile salt to the slightly acidic region in the presence of bile salt. Calcium was shown to eliminate the time lag periods between enzyme addition and maximum rate of hydrolysis seen at low substrate concentrations and the time lag noted when bile salts were included with normal (substrate concentration not limiting) assay concentrations of substrate. Zeta potential measurements indicated that Ca2+ reduced the negative charge on the gum arabic-emulsified particle while bile salts did not increase the negative charge. Commercial preparations of gum arabic were found to have significant concentrations of Ca2+ and Mg2+.

Acacia

Interactions of platinum complexes, peptides, methionine and dehydrogenases.

Eight platinum-methionine complexes have been investigated as inhibitors of the alcohol (EC 1.1.1.1) and lactate (EC 1.1.1.27) dehydrogenase systems. While only one complex, Pt(Met)Cl2, had two halogen ligands on the platinum, all the complexes were able to inhibit both enzyme systems. Of the various methionine and histidine containing peptides evaluated, the dipeptide Met-Met gave the best protection against inhibition by N-alkyl-substituted ethylenediamine-platinum complexes. The histidine containing peptides gave a slight protection against the inhibition by beta-[Pt(Met)(NH3)Cl]Cl. Thus it appears that in the enzyme systems studied, the methionine acts as a strong ligand for platinum.

Alcohol Oxidoreductases

Studies of platinum complex inhibition of leucine aminopeptidase.

The inhibition of swine kidney leucine aminopeptidase by N-alkyl-substituted etyhlenediamine liganded dihaloplatinum chelates has been investigated. The rate of this inhibition at 37 degrees is considerably less than that for the platinum tetra- and hexahalo complexes and also the ethylenediamine dihalo chelates. Only mixed inhibition was observed in these studies. For the time studies used here little if any inhibition occurred at room temperature. L-Methionine and L-Ala-L-Met did not reverse the platinum chelate inhibition nor did they prevent it.

Animals