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Y Milner

Publications and source records attributed to Y Milner.

At least 37 records · Page 2Linked to original sources

Detection of different interleukin-1 activities in human monocytes and monocytic cell lines.

Culture supernatants from normal human monocytes, monocyte hybrid cell lines, and myelomonoblastic cell lines were tested for human interleukin-1 (IL-1) activity. In the present study, we report the detection of IL-1 secreted by several cell lines of monocyte origin and compare their biological and biochemical characteristics. IL-1 activity was tested by the regular assay of phytohemagglutinin (PHA) response of mouse thymus cells. IL-1 was found to be constitutively secreted by U937 and the M20 cell lines, as well as by three of the monocyte hybrid cell lines. The activity was always augmented following dialysis and did not require the presence of serum for its secretion. We compared the IL-1 activity of the myelomonoblastic M20 and hybrid 1C4 cell lines to that of normal monocytes. We found differences in the kinetics of IL-1 secretion, the pattern of activity following dilution of concentrated supernatants, and augmentation of activity by various inducers. The differences described may be explained by concomitant secretion of IL-1 inhibitory factors, as well as the secretion of activities other than IL-1. Preliminary biochemical analysis showed that all three cell sources tested shared some species of molecules characterized by gel filtration and ion-exchange chromatography. However, some species of molecules expressing IL-1 activity were unique to the cell lines and were not found in normal monocytes.

Animals↗

Alterations in membrane protein and phosphorylation pattern in beta-thalassemic red blood cells.

The architecture and phosphorylation pattern of RBC membranes were studied in intact RBC and ghosts of patients with beta-thalassemia intermedia. Electron microscopic studies showed severe morphological alterations in ghosts from spx thalassemic patients. The polypeptide pattern obtained on SDS-PAGE revealed a fourfold increase in globin content of ghosts from spx patients. In addition, multiple protein bands were detected migrating below band 4.2, accompanied by alterations in the band 3 zone. When membrane protein phosphorylation was examined by SDS-PAGE and auto-radiography following incubation of intact RBC with [32P]Pi, a reduced labeling of the normally phosphorylated polypeptides was found in the thalassemic RBC. In addition, new phosphorylated peptides appeared in the region of band 3 and below band 4. On the other hand, phosphorylation of isolated membranes with [gamma-32P]ATP showed no major differences in the labeling of the major phosphorylated proteins. An analysis of the initial rate of spectrin-band 2.1 phosphorylation obtained by counting the excised bands from the SDS gels showed that there was a twofold increase in spectrin-band 2.1-phosphorylation rate catalyzed by cAMP-dependent protein-kinase in the thalassemic ghosts, although no differences were found in the extent of spectrin phosphorability. The results are consistent with major changes in membrane protein disposition in thalassemic RBC, most probably caused by the precipitation of excess globin chains.

Electrophoresis, Polyacrylamide Gel↗

Trypsinlike enzymes from dormant and germinated spores of Bacillus cereus T and their possible involvement in germination.

Trypsin-like enzymes were studied in dormant, activated, and germinated spores of Bacillus cereus T. Dormant spores contained two heat-labile enzyme activities. One was extractable with 2 M KCl and hydrolyzed azo-albumin. The second, a trypsinlike activity, was not extractable with 2 M KCl and hydrolyzed benzoyl-L-arginine-p-nitroanilide. Because of their heat instability, these two enzyme activities are probably not involved in the germination of heat-activated spores. Upon germination of heat-treated spores, a trypsinlike protease which was not detected in intact dormant spores was activated or exposed. This enzyme, when measured in intact germinated spores, hydrolyzed benzoyl-DL-arginine-p-nitroanilide but not azo-albumin and was inhibited in situ by sulfhydryl-blocking reagents such as p-chloromercuribenzoic acid and Hg2+. There was a correlation between the inhibition of germination and enzymatic activity by sulfhydryl-blocking reagents. The enzyme was also inhibited by leupeptin, tosyl-L-lysine chromoethyl ketone, and tosyl-L-arginine methyl ester. Good correlation existed between the inhibition of germination and enzymatic activity by these agents. Electron micrographs showed that in the presence of trypsin inhibitors, the spores did not lose their cortex. The protein extracts of the inhibited spores formed a somewhat different electrophoretic pattern in sodium dodecyl sulfate-polyacrylamide gel electrophoresis than the protein extracts of dormant or germinated spores.

Bacillus cereus↗

Be13, a human T-leukemia cell line highly sensitive to dexamethasone-induced cytolysis.

A unique human T-leukemia cell line highly sensitive to dexamethasone-induced lysis is described. The cell line designated Be13 is killed readily within 24 hr by 10(-9) M dexamethasone. No lysis is induced by nonglucocorticoid steroids. The lysis is mediated via specific cytoplasmic receptors and is efficiently blocked by the antagonist cortexolone. The inhibiting effect of actinomycin D and cycloheximide on the lytic process suggests the involvement of gene activation and destruction of the cells by an "autolytic protein." Kinetic studies imply that the lytic process is induced during a distinct phase of the cell cycle. Dexamethasone, however, does not cause an arrest in a distinct phase of the cell cycle. The Be13 cell is a unique human cell line killed directly by glucocorticoids, and it may serve as a suitable in vitro model for studying the lytic effect of glucocorticoids on the proliferating compartment of human leukemias.

Cell Line↗

A possible involvement of virus-associated protease in the fusion of Sendai virus envelopes with human erythrocytes.

A proteolytic activity is shown to be associated with relatively purified preparations of intact Sendai virus particles or with their reconstituted envelopes which are vesicles containing mainly the viral glycoproteins. Intact Sendai virus as well as reconstituted Sendai virus envelopes have been shown to be able to hydrolyze various protein molecules such as the human erythrocyte membrane polypeptide designated as band 3 and soluble polypeptides such as histone and insulin B-chain. The results of the present work raise the possibility that a direct correlation exists between the virus-associated proteolytic activity and the ability of the virions to lyse cells, to fuse with their membranes, and to promote cell-cell fusion. Inhibitors of proteolytic enzymes such as phenylmethylsulfonyl fluoride, tosyllysinechloromethylketone and tosylamidephenylethylchloromethylketone, or combinations thereof, inhibit the virus-associated proteolytic activity concomitantly with inhibition of its hemolytic and fusogenic activities. Electron microscopic studies showed that the various inhibitors did not affect the binding ability of the virus preparations. The possible involvement of a protease in the process of virus-membrane fusion is discussed.

Anion Exchange Protein 1, Erythrocyte↗

Possible identity of a membrane-bound with a soluble cyclic AMP-independent erythrocyte protein kinase that phosphorylates spectrin.

A soluble casein kinase isolated and purified to homogeneity from the human erythrocyte cytosol by phosphocellulose and Sephadex G-200 chromatographies is indistinguishable from the membrane-bound casein (spectrin) kinase according to physical and site-specificity criteria. The soluble enzyme shows an Mr of about 30000 by gel filtration and comigrates with the purified membrane spectrin kinase as a single polypeptide of 32000 Da on sodium dodecyl sulfate polyacrylamide gels. The soluble kinase phosphorylates spectrin in situ in spectrin kinase-depleted ghosts and catalyzes the in vitro phosphorylation of partially dephosphorylated spectrin with saturation kinetics identical to those displayed by the membrane spectrin kinase. When component 2 of spectrin that had been phosphorylated with [gamma-32P]ATP by either the soluble or the membrane kinases was subjected to limited proteolysis, the same 21500 Da papain-generated phosphopeptide was found to have been produced by the two enzymes. The same 21500 Da phosphopeptide was identified after papain digestion of spectrin isolated from intact cells that had been incubated with 32Pi. However, this particular peptide was not labeled in spectrin that had been phosphorylated in vitro by the catalytic subunit of cyclic AMP-dependent protein kinase. Identical phosphopeptide patterns were obtained by gel filtration and two-dimensional peptide maps of trypsin-cleaved component 2 of spectrin that had been labeled in situ, in intact ghosts or in spectrin kinase-depleted ghosts supplemented with the soluble kinase. These findings indicate a possible identity of the soluble with the membrane-bound casein (spectrin) kinase.

Binding Sites↗

Effect of inhibitors of trypsin-like proteolytic enzymes Bacillus cereus T spore germination.

The germination of Bacillus cereus T spore suspensions is partially prevented by several inhibitors of trypsin-like enzymes. Leupeptin, antipain, and tosyl-lysine-chloromethyl ketone are effective inhibitors, whereas chymostatin, elastatinal, and pepstatin are inactive. A synthetic substrate of trypsin, tosyl-arginine-methyl ester, also inhibits germination. Its inhibitory effect decreases as a function of incubation time in the presence of spores and is abolished by previous hydrolysis with trypsin. Germinating, but not dormant, spore suspensions hydrolyze tosyl-arginine-methyl ester; its hydrolysis is insensitive to chloramphenicol, sulfhydryl reagents, and EDTA. A crude extract of germinated B. cereus spores contains a trypsin-like enzyme whose activity, as measured by hydrolysis of benzoyl-arginine p-nitroanilide, is sensitive to germination-inhibitory compounds such as leupeptin, tosyl-arginine-methyl ester, and tosyl-lysine-chloromethyl ketone. Spore suspensions exposed to the above inhibitors under germination conditions lose only part of their heat resistance and some 10 to 30% of their dipicolinic acid content. Part of the germinating spore population becomes "phase grey" under phase optics. Based on a study of the inhibition of germination by protease inhibitors and the activity of a protease in germination spores and spore extracts, it is suggested that the activity of a trypsin-like enzyme may be involved in the mechanism of the breaking of dormancy in spores of B. cereus T.

Antipain↗

Alterations in structure, function, and Ca++ content of thalassemic red blood cells.

Dodge ghosts and their Triton extracted cytoskeletons (TS) were obtained from RBC of splenectomized (spx) and non-splenectomized (non-spx) patients with beta thalassemia intermedia. No major abnormalities were seen in the polypeptide pattern of Dodge ghosts of the thalassemic patients apart from increased globin content in the spx patients (P = 0.004). There was also a large increase of globin content in the TS of both spx and non-spx patients, while the spectrin content of the TS was markedly decreased from 22 +/- 2.8% in the spx patients compared to 39 +/- 2% in the controls (P = 0.006). At least part of the globin was not found at the normal band 3-binding site. The mean Ca++ content in spx and non-spx controls was approximately 6.0 micromoles ca/liter RBC, as compared to 26 +/- 7.6 (P less than 0.001) in the non-spx and 85 +/- 24 in the spx thalassemic patients (P less than 0.001). (Ca++Mg++)-ATPase activity was in the same range in RBC of patients and controls. Membrane protein phosphorylation was examined by incubation of intact cells with (32P)Pi. There was decreased labeling of several protein bands in thalassemic RBC which are labeled in normal RBC. New phosphorylation peptides also appeared. On the other hand, there were no major differences in the phosphorylation of isolated membranes including phosphorability of spectrin. The possible etiology and consequences of the newly described RBC membrane changes in thalassemia is discussed.

Blood Proteins↗

Alpha-ketoglutarate dehydrogenase complex of Acetobacter xylinum. Purification and regulatory properties.

The alpha-ketoglutarate dehydrogenase complex of Acetobacter xylinum was purified to homogeneity. It consists of three main polypeptide chains with a total molecular weight of about 2.4 X 10(6). It catalyzes the overall Mg2+ and thiamin pyrophosphate-dependent, NAD+- and CoA-linked oxidative decarboxylation of alpha-ketoglutarate, as well as the partial reactions characteristic of the three enzyme components described for the complex from other sources. Initial velocity studies revealed marked positive cooperativity for the substrate alpha-ketoglutarate (Hill coefficient (nH) = 2.0; concentration of ligand at half-maximum effect (S0.5) = 8 mM). The sigmoidal [alpha-ketoglutarate]-velocity relationship became hyperbolic upon addition of AMP or 3-acetylpyridine adenine dinucleotide (AcPyAD) or in the presence of high concentrations of NAD. S0.5 (alpha-ketoglutarate) decreased to 1 mM, but Vmax was unchanged. Saturation curves for NAD and AMP are sigmoidal (nH = 2) at low alpha-ketoglutarate concentrations and become hyperbolic at high alpha-ketoglutarate concentrations. As judged by S0.5, the relative efficiency of the allosteric effectors is AcPyAD greater than AMP greater than alpha-ketoglutarate- greater than NAD+. Half-maximal changes in nH, S0.5, and activation by AMP occur at a pH significantly different from that of half-maximal activity. A model for the allosteric behavior of the complex is proposed in which the first enzyme component of the complex (E1) is the site for the allosteric interactions and AMP is the primary positive modifier, whereas NAD and AcPyAD act as AMP analogues. The overall reaction is competitively inhibited by NADH with respect to NAD (K1 = 20 micronM) and by succinyl-CoA with respect of CoA (K1 = 3 micronM). The properties of the alpha-ketoglutarate dehydrogenase complex of A. xylinum appear to provide for appropriate partitioning of alpha-ketoglutarate carbon between competing pathways in response to the energy state of the cells.

Adenosine Monophosphate↗

Steady state and exchange kinetics of pyruvate, phosphate dikinase from Propionibacterium shermanii.

Evidence is presented based on requirements for exchange in the partial reactions, initial velocity and exchange kinetics and product inhibition, that the pyruvate, phosphate dikinase reaction of propionibacteria occurs by a nonclassical Tri Uni Uni Ping Pong mechanism. The mechanism involves a pyrophosphoryl enzyme, a phosphoryl enzyme, and the free enzyme, and three functionally distinct and independent substrate sites. On the first site, there is pyrophosphorylation of the enzyme by ATP with subsequent release of AMP. The pyrophosphoryl moiety then reacts at the second site with Pi yielding the product PPi and the phosphoryl from of the enzyme. At the third site pyruvate is phosphorylated yielding P-enolpyruvate and the free enzyme. The three catalytic sites are proposed to be linked by a histidyl residue which functions as a pyrophosphoyrl- and phosphoryl-carrier between the three sites. This proposal is based on the following observations. (A) The patterns of the double reciprocal plots of the initial velocities were all parallel; (b) product inhibition between each pair of substrates and products of the three partial reactions were competitive, i.e. ATP against AMP, Pi against PPi, and pyruvate against P-enolpyruvate; (c) the other product inhibitions, with one exception, were noncompetitive as required by the nonclassical ping-pong mechanism; (d) ATP or P-enolpyruvate was required for the Pi in equilibrium PPi exchange reaction which is in accord with the participation of a pyrosphosphoryl or phosphoryl form of the enzyme in this exchange; (e) the ATP in equilibrium AMP exchange and pyruvate in equilibrium P-enolpyruvate exchange did not require additional substrates. In addition, the inhibition and participation in the exchange reactions of the alpha,beta and beta,gamma-methylene analogues of ATP and of the methylene analogue of inorganic pyrophosphate were investigated and the results were in accord with the proposed mechanism. The combined evidence provides a well documented example of a three site nonclassical Tri Uni Uni Ping Pong mechanism.

Adenosine Monophosphate↗

Magnetic resonance and kinetic studies of pyruvate, phosphate dikinase. Interaction of oxalate with the phosphorylated form of the enzyme.

Pyruvate, orthophosphate dikinase (EC 2.7.9.1) carries out its catalytic function in three successive partial reactions, the final step being the reaction of pyruvate with a stable phosphoenzyme intermediate to give phosphoenolpyruvate and free enzyme (Evans, H.J., and Wood, H. G. (1968), Proc. Natl. Acad. Sci. U.S.A. 61, 1448). Interactions of oxalate, a structural analog of enolpyruvate, with the phosphorylated form of the enzyme have been investigated by kinetic inhibition measurements and by magnetic resonance studies of manganous ion complexes with the enzyme. Oxalate inhibits the reaction catalyzed by pyruvate, phosphate dikinase, and the inhibition is linearly competitive with respect to pyruvate. The inhibitor constant for oxalate of 25 mu-M is fourfold lower than the Michaelis constant for pyruvate. The enhancement in the longitudinal relaxation rate of water protons (PRR) which occurs upon binding of Mn(II) to the enzyme has been used to monitor binding of oxalate to Mn(II)-enzyme complexes. PRR titrations indicate that the dissociation constant of oxalate from the Mn(II) complex of the free form of the enzyme is an order of magnitude weaker than the kinetically determined Ki. On the other hand, titrations of solutions which contain the phosphorylated form of the enzyme reveal a much stronger binding of oxalate. Moreover, the strength of oxalate binding to the phosphorylated enzyme is a function both of the species and of the concentration of monovalent cations in the solution. In the presence of Tl+, which has the most favorable activator constant for the final partial reaction, the dissociation constant for oxalate from its complex with the phosphorylated enzyme is less than 1 mu-M. Electron paramagnetic resonance (EPR) spectra for the enzyme-bound Mn(II) are sensitive to structural perturbations which occur upon binding of substrates or of oxalate to the enzyme. The EPR spectrum for the Mn(II)-phosphoenzyme-oxalate species is distinguished from spectra for other complexes of the enzyme by unusually narrow line widths and consequent resolution of fine structure from electronic quadrupole splitting. The narrow lines in the EPR spectrum are indicative of a rigid, pseudocrystalline environment for the bound Mn(II). The magnitude and frequency dependence of the PRR for the Mn(II)-phosphoenzyme-oxalate complex indicate that if any water molecules are bound to the Mn(II), their exchange with the bulk water is severely retarded. The kinetic and magnetic resonance studies support the hypothesis that oxalate mimics the reactive intermediate, enolpyruvate, in a complex with the phosphorylated enzyme which may resemble the structure of the transition state of the final partial reaction.

Bacillus↗