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Phosphorylcholine antigens from Nippostrongylus brasiliensis. I.--Anti-phosphorylcholine antibodies in infected rats and location of phosphorylcholine antigens.

The anti-phosphorylcholine (PC) antibody synthesis was investigated in the rat after infection with the nematode Nippostrongylus brasiliensis. Serum IgM and IgG antibodies were demonstrated from day 2 or 3 post-infection. Intestinal IgA-antibody synthesis began shortly after the worms reached the intestine. Antigens containing PC were located with the fluorescent antibody technique in L3 infective larvae, adult worms and eggs of the parasites. They were always found to internal structures such as intestinal tract or gonads. It seems, therefore, that the anti-PC antibody synthesis resulted from the release of PC antigens by the parasite (moulting fluids, excretion, secretion or breakage products).

Animals

1-Hydroxy-2-tert-butyldimethylsilyl-sn-glycero-3-phosphorylcholine. A useful intermediate in the synthesis of short acyl chain 1-acyl-sn-glycero-3-phosphorylcholines.

The synthesis of 1-acyl-sn-glycero-3-phosphorylcholines in particular those containing short fatty acyl chains are described. The method involves the use of 1-acyl-2-tert-butyl-dimethylsilyl-sn-glycero-3-phosphorylcholines which can be readily prepared by reacting hens' egg yolk 1-acyl-sn-glycero-3-phosphorylcholines with tert-butyldimethylchlorosilane with imidazole as catalyst and dimethylformamide as solvent. Deacylation of the 1-acyl-2-tert-butyldimethylsilyl-sn-glycero-3-phosphorylcholines with saturated anhydrous potassium carbonate in methanol yields the 2-tert-butyldimethylsilyl-sn-glycero-3-phosphorylcholine. Reacylation of the 2-tert-butyldimethylsilyl-sn-glycero-3-phosphorylcholine with fatty acyl anhydride in the presence of 4-dimethylaminopyridine in anhydrous chloroform followed by removal of the tert-butyldimethylsilyl protecting group by treatment with dry hydrogen chloride gas in anhydrous chloroform at 0 degrees yields the desired 1-acyl-sn-glycero-3-phosphorylcholine. Various facets of the reactions involved in developing the synthetic procedures in this study are discussed.

Glycerylphosphorylcholine

Phosphorylcholine antigens from Nippostrongylus brasiliensis. II.--Isolation and partial characterization of phosphorylcholine antigens from adult worm.

The phosphorylcholine antigens (C substance) were specifically isolated from Nippostrongglus brasiliensis adult worms. They formed a gorup of fairly closely related molecules, but it was not possible to evidence that the carrier molecule was unique. An indirect immunoenzymatic test using immobilized lectins (concanavalin A, phytohaemagglutinin Els, wheat germ agglutinin, recin types I and II, peanut agglutinin) gave some light on the carbohydrate composition of the carrier molecules, whereas the amino acid part of these molecules seemed to indicate an unique oligopeptide, the composition of which would be: Asx (4), Thr (2), Ser (4), Glux (6), Gly (6) Ala (3), Val (2), Ile (1), Leu (2), Phe (8), Lys (2), Arg (1). An epitope of the carrier molecules was demonstrated with anti-N. brasiliensis egg antisera. It was shared with various pathogens including Haemonchus contortus, Schistosoma mansoni and Dipetalonema vitae. It was also found on the purified pneumococcal C. polysaccharide. The C. substance from a variety of parasites can now be isolated by a combination of specific reactions using both anti-phosphorylcholine and anti-carrier molecule antibodies.

Amino Acids

Determination of free choline and phosphorylcholine in rat liver.

A simple procedure for determination of levels of free choline and phosphorylcholine in hepatic tissue is outlined. The method makes use of the enzyme acid phosphatase to liberate choline from phosphorylcholine and incorporates the ability of choline to react with potassium triiodide to yield choline periodide for the measurement of choline and phosphorylcholine in liver. The method is accurate for both entities (recovery of 97-100% for choline and 92-98% for phosphorylcholine). For phosphorylcholine, the method is markedly simpler than other methods previously described and the results for normally fed rats are of the same order of magnitude. The applicability of the method was shown when it was demonstrated that diets containing different amounts of choline influenced the level of choline and phosphorylcholine in liver.

Animals

Binding of phosphorylcholine to an IgM Waldenström as studied by fluorescence spectroscopy and circular dichroism.

The binding characteristics of an IgM Waldenström(FR) for the ligand phosphorylcholine has been studied by fluorescence spectroscopy. Upon phosphorylcholine addition, IgM FR exhibited 83% enhancement of the tryptophanyl fluorescence, which was associated with a red shift of the emission maximun (5nm). The same properties were observed with the 7S IgM subunits. The association constant KA for phosphorylcholine was 6X10(4) M-1 FOR IgM FR and the 7S subunit, as determined by fluorescence titration, a value in agreement with the obtained by equilibrium dialysis. No significant decrease in the KA value was found in the presence of 3 M urea; in 6 M urea, the increase in fluorescence intensity was 36% of the value obtained in the absence of denaturing agent. In contrast, only 4% of fluorescence enhancement was noted upon binding in 3 M GuHC1 and no enhancement could be seen when the concentration of GuHC1 was increased to 5 M, thus suggesting complete unfolding of the protein and subsequent loss of binding activity. The pH dependence study of the phosphorylcholine binding to IgM FR indicated no significant differences in the fluorescence enhancement between pH 5 and 8, whereas at more acidic or alkaline pH values, the enhancement became smaller. At pH 3.0 and 10.0, no enhancement was seen suggesting no binding of the ligand, a fact confirmed independently by equilibrium dialysis. When the spectroscopic properties of the IgM FR were compared with those of murine myeloma proteins that bind the same ligand large differences were recorded in the amplitude of the phosphorylcholine induced enhancement of the fluorescnece and in the shift of the emission maximum wavelength. This suggests that the human and murine proteins interact differently with the small ligand phosphorylcholine thus implying that the variable domains of these molecules are not identical

Animals

An IgM Waldenström with specificity against phosphorylcholine.

Anti-phosphorylcholine specificity has recently been shown to occur with relatively high incidence among IgA myeloma proteins secreted by oil-induced plasma cell tumors in the BALB/c strain of mice. A similar screening of human myeloma sera indicates that in man activity for phosphorylcholine is very rare. Among 904 human sera containing IgG, IgA, and IgM M-components only one reacted with phosphorylcholine-containing antigens. This serum was obtained from a patient with macroglobulinemia Waldenström. The active homogeneous protein could be isolated by affinity chromatography using a Sepharose-phosphorylcholine immunoadsorbent. It was an IgM immunoglobulin; the light chains were of the kappa type. The association constant for the reaction with phosphorylcholine was homogeneous and equalled 6.4 times 10-4 l. mol-1 at 25 degrees and 8.1 times 10-4 l. mol-1 at 2 degrees, indicating that the binding reaction is exothermic. The valences of the pentamer IgM, the 7S IgM subunit produced by reduction with cysteine, and the Fab fragment obtained by cleavage with papain were 10, 2, and 1, respectively. By all criteria available for antibody-like binding such as high specificity, restriction of the binding sites to the Fab part of the molecule and correct stoichiometry this IgM exhibits the fundamental characteristics associated with conventionally induced antibodies.

Aged

Alteration of clonal profile. I. Effect of sublethal irradiation on the responses to phosphorylcholine in BALB/c mice.

BALB/c mice exhibit greater than 90% H8 clonal dominance in the immune response to phosphorylcholine. Adult mice exposed to 500 rads were initally unable to produce a humoral immune response to both phosphorylcholine and trinitrophenol antigens, and the direct plaque-forming cell response was slowly regained over several weeks. Clonotypic analysis wity antisera directed against the H8 idiotype showed that the H8 clone initially dominated the recovery of the response to phosphorycholine but that 60 days after the irradiation significant numbers of non-H8 clones could be detected. This same pattern could be seen in mice irradiated with 100 rads, a dose that does not completely abrogate the H8 response to phosphorylcholine. Sublethal irradiation of neonates before they had acquired responsiveness to phosphorylcholine could also eventually lead to the emergence of non-H8 idiotypes. Thus, a radiosensitive element regulates the expression of clonal dominance in anti-phosphorylcholine responses of BALB/c mice.

Animals

Synthesis of 1-palmitoyl and 1-stearoyl phosphatidylcholines from mixtures of acyl acceptors via acyl-CoA:1-acyl-sn-glycero-3-phosphorylcholine acyltransferase in liver microsomes.

The fatty acid selectivity of the acyl-CoA:1-acyl-sn-glycero-3-phosphorylcholine acyltransferase in rat liver microsomes was studied using a mixture of the [1-(3)H]palmitoyl plus [1-(14C)stearoyl molecular species of 1-acylglyceryl-phosphorylcholine. At a 1-acyl-sn-glycero-3-phosphorylcholine concentration of 0.16 mM, the enzyme exhibited a selectivity of 3.5-fold for the 1-palmitoyl over the 1-stearoyl species of the acyl acceptor and reaction velocities with linoleoyl- and arachidonoyl-CoA were 38--47% greater than with oleoyl-CoA. Lowering the acceptor concentration to 0.016 mM gave reaction rates with the polyenoic thiolesters which were 174--187% greater than with oleoyl-CoA and the 1-palmitoyl-sn-glycero-3-phosphorylcholine was preferred by 2.2, 1.6, and 1.6-fold with oleoyl-, linoleoyl- and arachidonoyl-CoA, respectively. The results support the potential importance of the fatty acid selectivities of the acyl-CoA:1-acyl-sn-glycero-3-phosphorylcholine acyltransferase towards both acyl acceptor and donor in regulating the phosphatidylcholine species formed by the reaction in vivo.

1-Acylglycerophosphocholine O-Acyltransferase

Immune response to phosphorylcholine. I. Characterization of the epitope-specific antibody.

The antibodies to phosphorylcholine induced in BALB/c mice were isolated and studied with a variety of biochemical and immunochemical methods. Analysis of the idiotype and the hapten-binding specificities showed no differences to the phosphorylcholine-binding myeloma protein TEPC 15, indicating a high degree of homogeneity. However, disc electrophoresis, isoelectric focusing and amino acid composition data indicated large differences in the structure of anti-phosphorylcholine antibody and TEPC 15. By these criteria the anti-phosphorylcholine antibodies from BALB/c mice are of oligoclonal origin.

Amino Acid Sequence

Mechanism of heparin and serum lipoprotein interaction: effects of calcium, phosphorylcholine, and a serum fraction.

The mechanism of formation of an insoluble complex between heparin and rat serum lipoprotein has been studied. Optical density changes during the reaction, counting of the fatty acid labelled lipoproteins in the precipitates, and complexing of [14C]palmitate-labelled lipoprotein with heparin-CNBr-Sepharose were used to quantitatively determine the formation of insoluble complexes. The maximal heparin--lipoprotein complex formation requires 25--30 mM of Ca2+, but with micromolar amounts of phosphorylcholine, the reaction was saturated at only 10 mM of Ca2+. The effect of phosphorylcholine in promoting the reaction was lost when purified chylomicrons or very low density lipoproteins were used. The effect of phosphorylcholine in promoting the interaction between heparin and pure chylomicrons or very low density lipoproteins was regained when a crude serum protein factor of unwashed chylomicrons was added to the system, suggesting that rat serum contains a protein factor(s) which normally inhibits the heparin--lipoprotein interaction by raising the requirement of Ca2+. Phosphorylcholine counteracted the effect of this protein, thereby favouring the precipitation reaction in the presence of much lower concentration of Ca2+. The results have been discussed with special reference to the possibility of a relationship between mucopolysaccharides, Ca2+, lipoproteins, and arterial phospholipids in the pathogenesis of atherosclerosis.

Animals

Partial regain of activity in heterologous recombinants of phosphorylcholine-binding M-components from different species.

Recombination experiments were performed with heavy and light chains derived from a Waldenström's IgM with specificity against phosphorylcholine. The recombinant molecules had an association constant for phosphorylcholine in the same order of magnitude as the native IgM; the number of binding sites at saturation was only slightly decreased in the reconstituted molecules, indicating regain of binding activity after recombination of IgM heavy and light chains. Heterologous recombinants obtained with polypeptide chains of another monoclonal IgM without demonstrable binding activity recovered only 5 to 10% of the binding activity of homologous recombinants. Hybrid molecules prepared with heavy and light chains from the phosphorylcholine-binding mouse IgA myeloma protein TEPC-15, however, regained as much as 41% of the binding activity of the homologous recombinants; these data suggest a considerable degree of structural homology shared by the human IgM and the murine IgA proteins with phosphorylcholine-binding specifity.

Amino Acid Sequence

Variable region sequence of the light chain from a Waldenströms IgM with specificity for phosphorylcholine.

The variable region sequence of the light chain from the human IgM FR with binding activity for phosphorylcholine has been determined. Automated Edman degradation was used for the whole chain and for a large cyanogen bromide fragment comprising the third hypervariable region and the entire constant part. The rest of the sequence was established by means of the "Dansyl-Edman" technique with tryptic peptides. The sequence of light chain FR can be assigned to the subgroup II of human light chains with which it shares 92% homology within the nonhypervariable (frame-work) residues. There is no apparent sequence homology betweeen the variable region of the human light chain FR and the aminoterminal 41 residues of the light chains published so far from the mouse myeloma proteins TEPC 15, HOPC 8, S 107, and McPC 603 with phosphorylcholine binding activity. Recent data on the light chain of the phosphorylcholin binding mouse myeloma protein MOPC 167 (see Conclusion), however, indicate a considerable structural homology between the first hypervariable region of this murine protein and that of the human IgM FR, suggesting that both IgM FR and IgA MOPC 167 might have been selected by similar antigens.

Amino Acid Sequence

Structure-function relations in phosphorylcholine-binding mouse myeloma proteins.

The binding site interactions between the phosphorylcholine (phosphocholine)-binding mouse myeloma proteins TEPC 15, W3207, McPC 603, MOPC 167, and MOPC 511 and the isotopically substituted hapten phosphoryl[methyl-13C]choline have been investigated using 13C and 31P nuclear magnetic resonance (NMR) spectroscopy. Each protein exhibits a unique NMR pattern, but extensive similarities in chemical shift parameters upon binding of hapten to immunoglobulin suggest a significant degree of conservation of important hapten-binding site interactions. Moreover, independent binding studies, in conjunction with the NMR data, allow construction of a simple model of the binding sites of these antibodies, analyzed in terms of the relative strength of interaction between hapten and two main subsites. The NMR evidence supports the view that the heavy chains of these proteins dominate in interacting with bound phosphorylcholine; the various subspecificities of these proteins for phosphorylcholine analogues can be accounted for by amino acid changes in the hypervariable regions of the heavy chains.

Binding Sites, Antibody

The histochemical demonstration of human prostatic acid phosphatase with phosphorylcholine.

Tissues from patients with benign prostatic hyperplasia were used for the cytochemical demonstration in light and electron microscopy of a secreted, nonlysosomal prostatic acid phosphatase (PAP) with phosphorycholine, substrate specific for PAP. The specificity of phosphorylcholine for PAP is attributable to the pentavalent nitrogen in phosphorylcholine, a feature that renders it resistant to hydrolysis by all other acid phosphatases. PAP activity was found in the Golgi cisternae and its associated vacuoles and in secretory vacuoles localized in the nuclear, Golgi, and apical areas of the prostatic epithelial cell. These results confirm the existence of two types of acid phosphatase in prostatic tissue. One is lysosomal and is prevalent in many tissues and the other, PAP, is the major enzymatic product secreted by the prostate. The specificity of PAP for phosphorylcholine, one of the natural substrates for this enzyme, validates the use of this method for the histochemical characterization of PAP and indicates the prostatic origin of cells showing PAP activity.

Acid Phosphatase

The enzymes of lecithin biosynthesis in human neonatal lungs. IV. Phosphorylcholine cytidyltransferase.

Phosphorylcholine cytidyltransferase, the enzyme which catalyzes the transfer of phosphorylcholine to cytidine 5'-triphosphate to form CDP-choline, was studied for the first time in human neonatal lung. The assay of product synthesis was linear for 10-20 min and up to 12 mg protein. The pH optimum was 6-6.5. The Km of CTP was 2.0 times 10- minus 3 M, and the Km of phosphorylcholine was 0.25 times 10- minus 3 M. The true Vmax was 10 nmol CDP-choline/mg protein/10 min. The enzyme was stable under frozen conditions. Oxygen had no apparent affect on enzyme activity.

Choline

Hydrocarbon chain packing and molecular motion in phospholipid bilayers formed from unsaturated lecithins. Synthesis and properties of sixteen positional isomers of 1,2-dioctadecenoyl-sn-glycero-3-phosphorylcholine.

Isomers of cis-octadecenoic acid, with the double bond in each position in the hydrocarbon chain, were used to synthesize the corresponding 1,2-diacyl-sn-glycero-3phosphorylcholines (lecithins). Differential thermal analysis of the lecithins, as a function of water content, permitted evaluation of the limiting transition temperature (Tc) of each isomer. Values of Tc plotted against double bond position fell on a smooth curve with a minimum at minus 22 degrees for the dioctadec-9'-enoyl compound. The presence of a "pretransition" endotherm in differential thermal analysis of 1,2-dioctadec-15'-and 1,2-dioctadec-16'-enoyl-sn-glycero-3-phosphorylcholine implies the existence of two beta crystalline forms. This was not observed with any of the other lecithins. Enthalpy and entropy data were then obtained from differential scanning calorimetry measurements. Values of delta H were lower (7.6 plus or minus 0.1 kcal mol- minus 1) when the center of unsaturation was near the middle of the hydrocarbon chain than they were (9.6 kcal mol- minus 1) when the center of unsaturation was close to either end of the chain. However, values of delta S showed no consistent variation with double bond position. Four positional isomers of 1-octadec-cis-enoyl-2-octadecanoyl-sn-glycero-3-phosphorylcholine were synthesized. With the double bond near the middle of the chain or close to the terminal group, the Tc values of the mixed acid lecithins were higher than those of the corresponding dioctadecenoyl lecithins. 13-C nuclear magnetic resonance relaxation measurements were used to obtain information about chain motion of selected 1,2-dioctadec-cis-enoyl-sn-glycero-3-phosphorylcholines at a temperature (52 degrees) above the Tc values. Spin-lattice relaxation times of the resolved resonances indicated that location of double bonds near the middle, as compared to either end, of the hydrocarbon chain favors enhanced molecular motion along the length of the chins and especially at the terminal methyl end. In the gel state, the minimum interaction potential energy of hydrocarbon chains in bilayers formed from dioctadecenoyl lipids appears to be minimized by localization of the double bond near the middle of the chains. It is suggested that in the case of homogeneous chains the double bond primarily affects the cooperativity of interactions and has very little steric effect on van der Waals' contacts. By contrast, in bilayers of mixed lecithins, with heterogeneous chains, the steric effect may become dominant, depending on double bond position. These differences in chain packing in the gel state are promulgated beyond the phase transition to the liquid crystalline state as an enhancement of chain motion as the temperature rises above Tc.

Chromatography, Thin Layer

An improved method for the preparation of unsaturated phosphatidylcholines: acylation of sn-glycero-3-phosphorylcholine in the presence of sodium methylsulfinylmethide.

An improved method for the partial chemical synthesis of unsaturated and radioactively labeled phosphatidylcholines is described. This procedure offers advantages over conventional acylation methods in that it can be carried out on a millimole or micromole scale under mild conditions and it does not require a large excess of the fatty acid acylating reagent. In this procedure sn-glycero-3-phosphorylcholine is reacted with twice the theoretical amount of fatty acid imidazolide and sodium methylsulfinylmethide in dimethylsulfoxide for several minutes at 17 degrees C. Phosphatidylcholine, which was purified by gradient-elution chromatography on silicic acid, was isolated in 60% yield and was estimated to be about 99% pure. The preparations of 1,2-dioleoyl-, 1,2-dilinoleoyl-, and 1,2-dilinolenoyl-sn-glycero-3-phosphorylcholine are described. The reaction was also carried out on a small scale for the preparation of high specific activity 1,2-di[ 1'(-14)C]oleoyl-sn-glycero-3-phosphorylcholine in 38% yield with a specific activity of about 9.7 muCi/mumol.

Acylation