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Pamamycin: a new antibiotic and stimulator of aerial mycelia formation.

Pamamycin is a new antibiotic isolated from Streptomyces alboniger ATCC 12461. The antibiotic is active in vitro against Gram-positive bacteria, Neurospora, and Mycobacteria. The compound also acts as a streptomycete differentiation effector. It stimulates aerial mycelia formation in the producing organism. The new antibiotic of elemental composition C36H63NO7 is completely different from puromycin, also produced by this strain. The present communication deals with the isolation, properties, and preliminary characterization of pamamycin.

Antifungal Agents

The kinetics of protein salting-out: precipitation of yeast enzymes by ammonium sulfate.

Protein solubility can be adequately represented by the classical Cohn equation for the salting-out of alcohol dehydrogenase and fumarase from clarified yeast homogenate with ammonium sulfate. However, the constant beta in this equation is a function of the contacting procedure employed. The kinetics of continuous salting-out were similar for alcohol dehydrogenase and fumarase. The overall rate equation for precipitation had a variable order which was high initially, up to 3.1, but approached unity on completion of precipitation. This was followed by a partial resolution stage which was first order with respect to the concentration driving force. Precipitate particle size was estimated as 0.5 to 5 mum with continuous flow precipitation producing the largest particles.

Alcohol Oxidoreductases

A novel interaction involving a polypeptide chain (P33) in covalent linkage with IgM on the surface of a Burkitt lymphoma cell line (Daudi).

The surface IgM of Daudi Burkitt lymphoma cells has been shown to consist of mu chains and kappa chains covalently linked, by disulfide bonding, to a novel polypeptide chain of approximate molecular weight 33,000. This novel polypeptide chain (P33) is similar in several properties to the heavy chain of the Ia antigen: glycoprotein nature; apparent molecular weight; isoelectric behavior and cysteine content. The linkage of P33 to surface immunoglobulin has not been observed with any other human lymphoma or lymphoblastoid cell lines.

Binding Sites

Structure of aluminum hydroxide gel III: mechanism of stabilization by sorbitol.

The effect of sorbitol on the aging of aluminum hydroxide gel, prepared by the reaction of aluminum chloride solution with strong ammonia solution to a final pH of 7.0, was studied by potentiometric titration, acid-consuming capacity, pH, hydroxide to aluminum ratio, chloride activity, X-ray diffraction, and IR spectroscopy. Gels containing sorbitol lost less than 10% of their acid-consuming capacity during a 6-month aging period compared with a loss of more than 60% for an identical gel without sorbitol. The mechanism by which sorbitol stabilizes the gel appears to be inhibition of the secondary polymerization reaction which takes place upon aging. Another polyhydroxy compound, quercetin, also stabilizes aluminum hydroxide gel.

Aluminum Hydroxide

Nature of amorphous aluminum hydroxycarbonate.

The titration of sodium carbonate with aluminum nitrate is shown to produce amorphous aluminum hydroxycarbonate. This compound is not stoichiometric, although the maximum carbonate to aluminum ratio appears to be 0.5. The pH conditions for achieving the maximum carbonate content are concentration dependent. A model for the particle surface at the solution interface is proposed. This model accounts for the presence of carbonate directly coordinated to the aluminum and carbonate adsorbed by electrostatic forces. Sodium is present in the diffuse layer and is, therefore, not an integral part of the structure.

Aluminum

Types of "H2O" in human enamel and in precipitated apatites.

Types of "H2O" in human enamel and in precipitated apatites are characterized using X-ray diffraction, infrared (IR) absorption spectroscopic and thermogravimetric analyses. Changes in lattice parameters (principally in the a-axis dimensions) and in the character of the IR absorption bands are correlated with weight losses at pyrolysis temperatures of 100 degrees to 400 degrees C and with effect of rehydration and reignition of previously ignited samples. This study demonstrated that the loss of "H2O" below 200 degrees C is reversible and causes no significant change in the lattice parameter of these apatites, whereas loss of "H2O" between 200 degrees and 400 degrees C is irreversible and causes a contraction in the a-axis dimension. It is proposed that two general types of "H2O" are present in these apatites: (a) adsorbed H2O--characterized by reversibility, thermal instability below 200 degrees C, and lack of effect on lattice parameters; and (b) lattice H2O--characterized by irreversibility, thermal instability between 200 and 400 degrees C, and induction of expansion in the a-axis dimensions of human enamel and precipitated apatites. Lattice H2O is assumed to be due to H2O-for-OH and/or HPO4-for-PO4 substitutions in these apatites. Loss of adsorbed H2O caused sharpening of the OH absorption bands in the spectra of these apatites. Loss of lattice H2O caused the appearance of P-O-P absorption bands (due to the presence of P2O74- group) in precipitated apatites containing small amounts of CO32-.

Adult

The demonstration of ferrihemochrome intermediates in heinz body formation following the reduction of oxyhemoglobin A by acetylphenylhydrazone.

Interaction of acetylphenylhydrazine with oxyhemoglobin A in a hemolysate or in intact red cells resulted in the formation of ferrihemochromes as shown by a characteristic optical spectrum. The same optical spectrum was observed in a suspension of red cell ghosts containing numerous Heinz bodies. Electron paramagnetic resonance of actylphenylhydrazine-incubated red cells disclosed the presence of previously identified reversible ferrihemochromes, which can be reduced to functional hemoglobin, and irreversible ferrihemochromes, which cannot be reduced to functional hemoglobin. (Ferrihemochromes are defined as low spin forms of ferric hemoglobin having heme ligands endogenous to the protein structure). In contrast, only irreversible ferrihemochromes could be observed in ghosts containing Heinz bodies. In addition both optical and magnetic features of sulfhemoglobin were observed in an acetylphenylhydrazine-treated red cell hemolysate. Similar optical features are produced by the interaction of aromatic nitrogen-containg reductants with purified oxyhemoglobin in the presence of (NH4)2S. This reaction is not effected by the presence of catalase, suggesting that H2O2 is not an intermediate of the reaction. It is concluded that the mechanism of action of acetylphenylhydrazine with oxyhemoglobin is two-fold, ultimate reduction to high spin ferric hemoglobin followed by ferrihemochrome formation. Thus it appears that the pathway of denaturation of hemolytic anemias and thalassemia or induced by chemical reagents, entails a common route involving the formation of ferric hemoglobin by a reductive mechanism, followed by reversible ferrihemochromes, irreversible ferrihemochromes, and ultimately, precipitation.

Chemical Phenomena

Methods for the estimation of high density cholesterol, comparison between two laboratories.

The determination of HDL by quantification of HDL-cholesterol was investigated using different methods and employing the Abell method as reference. The routinely applied direct method of Huang (calibrated on Abell standardized sera) and the enzymatic method of Röschlau were tested. Results show that with the Huang method, as compared to Abell values, a total laboratory error of less than 4.5 mg/100 can be achieved in 95% of the cases. The enzymatic method gave rise to erroneous results. Comparisons between two laboratories in experiments using random and pool sera are presented.

Chemical Phenomena

Characterization of two ceramic-base-metal alloys.

Compositions, microstructures, properties, and heat treatment characteristics of two ceramic-base-metal alloys were studied. The materials displayed significant compositional and structural differences. Both alloys were strengthened by precipitation hardening. Strength and rigidity of the nickel-chromium alloys suggest their potential usefulness in fixed prosthodontic procedures.

Aluminum