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Structural and functional determinants of Mucor miehei protease VI. Inactivation of the enzyme by diazoacetyl norleucine methyl esters, pepstatin and 1,2-epoxy-30(p-nitro-phenyoxy)propane.

Mucor miehei protease (EC 3.4.21 -- ), an acid protease of fungal origin, was rapidly inhibited at pH 5.0 and 10 degrees C by a 78-fold molar excess of diazoacetyl norleucine methyl ester (N2Ac-Nle-OMe) when simultaneously added with a 78-fold molar excess of Cu(II). Preincubation with Cu(II) before the addition of N2Ac-Nle-OMe reduced the initial rate of activity loss presumably due to a copper-induced structural change as deduced from an examination of CD spectra. Cof norleucine and 1.02 +/- 0.041 mol of copper. The conformation of the N2Ac-Nle-OMe-inhibited enzyme appeared to be somewhat altered since the rate of H-3H exchange determined for the slowest exchanging class of hydrogens was reduced by more than 10-fold although the estimated number of hydrogens in this class remained constant. Mucor miehei protease was also inhibited by pepstatin; complete inactivation required a 6-fold molar excess of inhibitor and was associated with a major conformational change as determined from CD spectra. Loss of activity also occurred in the presence of 1,2-epoxy-3-(p-nitrophenyoxy)propane (EPNP).

Aminocaproates

On the reaction kinetics in water of 1,3-propane sultone and 1,4-butane sultone: a comparison of reaction rates and mutagenic activities of some alkylating agents.

To determine correlations between the biological action pattern and chemical reactivity of alkylating agents, the rate constants for reactions of 1,3-propane sultone and 1,4-butane sultone with a series of nucleophiles at 37 degrees C have been determined. Previously published data on the mutagenicity of the two sultones and of some alkyl methanesulfonates and dialkyl sulfates towards Schizosaccharomyces pombe have been used in the evaluation of the dependence of mutagenic effectiveness on chemical reactivity. It is of interest to note that the mutagenic effectiveness of the two sultones, if expressed per alkylating event at a certain low nucleophilicity is the same as that of e.g. methyl methanesulfonate and ethyl methanesulfonate.

Alkanesulfonates

Animal experiments on the compensation of the immunosuppressive action of cyclophosphamide by 2-[-2-cyanaziridinyl-(1)-]-2-[-2-carbamoylaziridinyl-(1)]-propane BM 12 531.

BM U2 531, the 2-[2-Cyanaziridinyl-(1)-]-2-[-2-carbamoylaziridinyl-(1)-]-propane, the further development of BM 06 002 is able to compensate the immunosuppressive action of Cyclophosphamide and to increase the carcinostatic action of Cyclophosphamide. These properties are demonstrated 1. by a leucocytosis induced after application of BM 12 531 in rats 2. by a quick restauration of leucocyte depression induced by Cyclophosphamide in rats and dogs 3. by an increase of resistance against an infection (candida albicans) in mice 4. by an increase of antitumour effect of Cyclophosphamide against a DS-carcinosarcoma in rats.

Animals

Modifications of plasma post-heparin lipolytic activity and tissue lipoprotein lipase activity induced in the rat by acute administration of ethanol or propan-2-ol.

1. The oral administration of propan-2-ol [isopropanol; 100 mmol (6 g)/kg body weight] or ethanol [130 mmol (6 g)/kg body weight] to starved rats produced no change in plasma post-heparin lipase activity (PHLA) compared with that observed in 154 mmol/1 sodium chloride (saline)-treated rats. 2. An increase of adipose tissue lipoprotein lipase (LLA) and a decrease of heart LLA occurred in isopropanol-treated animals, whereas no significant changes were found in these activities after ethanol administration. 3. Since administration of isopropanol produces hyperglycaemia, observations were also made in rats receiving glucose infusion rather than saline. In these animals a rise in PHLA and adipose tissue LLA, and a fall in heart LLA, occurred. 4. It is suggested that the changes in tissue LLA produced by isopropanol are mediated by the rise in blood glucose.

1-Propanol

The structure and function of acid proteases. V. Comparative studies on the specific inhibition of acid proteases by diazoacetyl-DL-norleucine methyl ester, 1,2-epoxy-3-(p-nitrophenoxy) propane and pepstatin.

Comparative studies have been made on the effects of diazoacetyl-DL-norleucine methyl ester (DAN), 1,2-epoxy-3-(p-nitrophenoxy)propane (EPNP) and pepstatin on acid proteases, including those from Acrocylindrium sp., Aspergillus niger, Aspergillus saitoi, Mucor pusillus, Paecilomyces varioti, Rhizopus chinensis, and Trametes sanguinea, and also porcine pepsin [EC 3.4.23.1] and calf rennin [EC 3.4.23.4] for comparative purposes. These enzymes were rapidly inactivated at similar rates and in 1:1 stiochiometry by reaction with DAN in the presence of cupric ions. The pH profiles of inactivation of these enzymes were similar and had optima at pH 5.5 to 6. They were also inactivated at similar rates by reaction with EPNP, with concomitant incorporation of nearly 2 EPNP molecules per molecule of enzyme. The pH profiles of inactivation were again similar and maximal inactivation was observed at around pH 3 to 4. Some of the EPNP-inactivated enzymes were treated with DAN and shown still to retain reactivity toward DAN. All these enzymes were inhibited strongly by pepstatin, and the reactions of DAN and EPNP with them were also markedly inhibited by prior treatment with pepstatin. These results indicate that the active sites of these enzymes are quite similar and that they presumably have at least two essential carboxyl groups at the active site in common, one reactive with DAN in the presence of cupric ions and the other reactive with EPNP, as has already been demonstrated for porcine pepsin and calf rennin. Pepstatin appears to bind at least part of the active site of each enzyme in a simmilar manner.

Aminocaproates

Amino acid sequences around 1, 2-epoxy-3-(p-nitrophenoxy)propane-reactive residues in rhizopus chinensis acid protease: homology with pepsin and rennin.

Two different peptides containing an aspartyl residue reactive with 1, 2-epoxy-3-(p-nitrophenoxy)propane (EPNP) in the acid protease from Rhizopus chinensis were isolated from a peptic digest of the EPNP-modified enzyme. One of the peptides was sequenced as Asp-Thr-Gly-Ser-Asp. The amino acid sequence had very high homology with those around the EPNP-reactive aspartyl residues in rennin (chymosin) [EC 3.4.23.4] and pepsin [EC 3.4.23.1]. The other peptide contained no methionine residue and gave the sequence: Asp-Thr-Gly-Thr-Thr-Leu. The N-terminal aspartyl residue of each peptide was deduced to be the EPNP-reactive site.

Amino Acid Sequence

Alterations in Bacillus subtilis transforming DNA induced by beta-propiolactone and 1,3-propane sultone, two mutagenic and carcinogenic alkylating agents.

Transforming DNA was exposed to either beta-propiolactone or 1,3-propane sultone and then used for transformation of competent bacteria to nutritional independence from tyrosine and tryptophan (linked markers) and leucine (an unlinked marker). The ability to transform was progressively lost by the DNA during incubation with either of these two chemicals. For all three markers the inactivation curve was biphasic, with a short period of rapid inactivation followed by one characterized by a much slower rate. The overall rate of inactivation was different for all three markers and presumably was related to the size of the marker. The decrease in the transforming activity was in part due to the slower rate of penetration of alkylated DNA through the cellular membrane and its inability to enter the recipient bacteria. This decrease in the rate of cellular uptake, even for DNA eventually destined to enter the cell, began almost immediately after its exposure to the chemical and ended up with an almost complete lack of recognition of the heavily alkylated DNA by the specific surface receptors of competent cells. Such DNA attached to sites on the surface of competent bacteria which were different from receptors specific for the untreated nucleic acid. This attachment was not followed by uptake of the altered DNA. Presence of albumin during the incubation with a carcinogen further increased the degree of inactivation, indicating that the artificial nucleoproteins produced under such conditions were less efficient in the transformation assay than was the naked DNA. Cotransfomration of close markers progressively decreased, beginning immediately after the start of incubation of DNA with the chemicals. Extensively alkylated DNA fractionated by sedimentation through sucrose density gradients showed a peculiar distribution of cotransforming activity for such markers; namely, molecules larger than the bulk of DNA ("megamolecules") showed less ability to transform the second marker than did some of the apparently smaller molecules which sedimented more slowly through the gradient. An increase in cotransformation of distant markers was evident in DNA molecules after a short exposure to an alkylating agent, but cotransformation of such markers was absent in DNA treated for longer periods. The observed changes in the transforming and cotransforming activities of the alkylated DNA can be explained by what is known about the physicochemistry of such DNA and in particular about the propensity of the alkylated and broken molecules to form complexes with themselves and with other macromolecules.

Alkylating Agents

Pharmacological studies of 3-[bis(3,3-diphenylpropyl)-amino]-propan-1-ol hydrochloride, (PF-244), a new cerebral vasodilator.

Pharmacological effects of 3-[bis(3,3-diphenylpropyl)-amino]-propan-1-ol-hydrochloride (PF-244) mainly on cerebral and cardiovascular systems, were studied. PF-244 indicated a potent cerebral vasodilation effect and a marked increase in oxygen supply to cerebral tissue with only weak inotropic action and depressor effect. This cerebral vasodilation was more potent and specific than that of papaverine hydrochloride in regional cerebral flow. PF-244 also indicated an antibarium action, although it did not show the properties related to the cholinergic and/or adrenergic mechanism. PF-244 appears to be one of the potent cerebral vascular dilators, and the nature of its mechanism was discussed.

Animals

The antiarrhythmic and cardiovascular properties of 1-dimethyl isopropylamino-3-(2-phenylphenoxy)-propan-2-ol chloride, UM-424.

The quarternary ammonium compound, UM-424 [1-dimethyl isopropylamino-3-(2-phenylphenoxy)-propan-2-ol chloride], was evaluated for its antiarrhythmic and hemodynamic effects. UM-424 converted ouabain-induced ventricular tachycardia in the anesthetized dog when administered in an average dose of 4.6 mg/kg i.v. Pretreatment of anesthetized dogs with UM-424, 10 mg/kg, provided complete protection against the development of premature beats and ventricular fibrillation when the left anterior descending coronary artery was occluded for 20 minutes and then released. UM-424 was effective in reversing ventricular arrhythmias in conscious animals which had been subjected to a two-stage ligation of the anterior descending coronary artery. The mean ectopic rate in a group of five dogs was 143 +/- 4.0 (S.E.M.) beats/min 24 hours after coronary ligation. Normal sinus rhythm was restored with a mean dose of 9.5 mg/kg of UM-424 and was maintained for a period in excess of 60 minutes. The ventricular fibrillation threshold was increased from a control value of 4.0 +/- 0.4 to 26.2 +/- 8.6 mA (P less than .05) 30 minutes after pretreatment with UM-424, 10 mg/kg. Inotropic and chronotropic dose-response studies to isoproterenol in the anesthetized dog demonstrated that the quarternary compound lacked beta adrenergic receptor blocking properties. UM-424, 10 mg/kg, did not produce any persistent changes in spontaneous heart rate, cardiac contractile force, left ventricular dP/ct, mean arterial blood pressure, cardiac output and mean pulmonary arterial pressure.

Adrenergic beta-Antagonists

Determination of epimeric 1-(3-indolyl) propane -1,2,3-triol isolated from Balansia epichloe.

Investigations into diseases in cattle grazing on grass pastures infected with clavicipitaceous fungi have resulted in the isolation and characterization of erythro and threo 1-(3-indolyl) propane-1,2,3-triol from cultures of Balansia epichloë (Weese). Gas chromatography-mass spectroscopy analyses of synthetic and natural epimers as their trimethylsilyl derivatives is described. Toxicity studies with fertile chicken eggs demonstrated that the threo epimer was the more active compound. The ratio of erythro to threo was calculated at 3:2 in the natural isolate.

Animals

An emission-controlled field desorption and electron impact spectrometry study of some N-substituted propane and butane sultams.

It is shown that the production of field desorption mass spectra with an emission-controlled emitter heating device is a useful tool in obtaining information about molecular structures. Since the structurally significant signals are sometimes missing in the corresponding electron impact spectra but not in the field desorption spectra the use of field desorption mass spectrometry appears to be more advantages. This will be especially true for substances that are thermally labile, unvolatile or unstable upon electron impact (both at high and low electron energy), the latter being the case for some of the compounds presently investigated which are derivatives of a drug with antitumour and antiepileptic effects. Further, emission-controlled desorption improves the reproducibility of the spectra obtained and thus appears to be a prerequisite for quantification in biomedical and pharmacokinetic studies.

Butanes