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V A Najjar

Publications and source records attributed to V A Najjar.

At least 19 recordsLinked to original sources

[Hyp3]-tuftsin ([Hyp3]-TU) synthesis and biological activity.

[Hyp3]-tuftsin (Thr-Lys-Hyp-Arg) has been synthesized by the liquid-phase method. In biological investigations performed on rats antinociceptive and diuretic effects have been determined. It has been suggested that the presence of hydroxyl substituent in pyrrolidine ring of proline slightly modifies antinociceptive TU effect and is responsible for the increased diuretic [Hyp3]-TU activity.

Animals

The characteristics of purified HL60 tuftsin receptors.

The purification and characteristics of purified HL60 tuftsin receptors are described. Purification was accomplished by affinity chromatography similar to that described earlier, wherein a tuftsin analog Thr-Lys-Pro-Pro-Arg, is covalently linked at the N alpha group to a solid support. The receptor consists presumably of two subunits approximately 66 KDa and 57 KDa. The dissociation constant of the receptor complex is 4.7 X 10(-8) M with 5 X 10(4) receptors per cell. It can form oligomers with an Mr of about 560 KDa suggesting an octomeric structure, assuming the same number of each subunit is associated.

Chemical Precipitation

Covalent peptide transfer to cell membrane proteins (peptidyl transferase).

HL60 cells, rabbit peritoneal granulocytes or membrane preparations of these cells incorporate radioactivity when reacted with the radioactive peptide tuftsin [3H Pro3]-Thr-Lys-Pro-Arg. The radioactivity which is not diminished by repeated treatments with TCA and NaOH, is covalently bound to a membrane acceptor protein of 100 kDa. The peptide is not displaced by large concentrations of its constituent amino acids. The acceptor protein is resolved into one labeled peak by gel filtration on Sephadex G-200, Sephacryl S-300 and by SDS-PAGE. Digestion by trypsin and chymotrypsin results in the production of smaller fragments.

Acyltransferases

Tuftsin: its chemistry, biology, and clinical potential.

Tuftsin is a tetrapeptide, Thr-Lys-Pro-Arg, which resides in the Fc-domain of the heavy chain of immunoglobulin G. The peptide originates from a specific fraction of the parent protein through enzymatic processing. Tuftsin possesses a broad spectrum of activities related primarily to the immune system function and exerts on phagocytic cells, notably on macrophages. These include potentiation of various cell functions such as phagocytosis, motility, immunogenic response, and bactericidal and tumoricidal activities. The features of tuftsin, coupled with its low toxicity, make the peptide an attractive candidate for immunotherapy. Tuftsin's capacity to augment cellular activation is mediated by specific receptors that were identified, characterized, and recently isolated from rabbit peritoneal granulocytes. Tuftsin has been chemically synthesized by a variety of techniques, some of which are adequate for large-scale preparations. A multitude of analogs have also been synthesized and extensively studied for structure-function relationships.

Adult

Tuftsin stimulates growth of HL60 cells.

Many functions of monocyte/macrophage and granulocyte are activated by tuftsin; principally phagocytosis, motility, immunogenic stimulation, antibacterial and antineoplastic activities. Here it is shown that tuftsin stimulates HL60 growth to twice the control rate. The uptake of [3H]uridine and [3H]leucine in a pulse of 30 min was also double that of the control. The uptake of thymidine was not stimulated.

Cell Division

Tuftsin induced tumor necrosis activity.

Tuftsin induced tumor necrosis activity was investigated. The activity was found in mice serum several days after i.p. injection of tuftsin. Further experiments with adhering peritoneal and spleen cells indicated that macrophages were the source of the observed activity. The same effect was observed when promyelocytic leukemia cells (HL60) were stimulated with different concentrations of the peptide. These showed yet another possible mechanism for tuftsin antineoplastic activity.

Animals

Tuftsin.

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Humans

Isolation and subunit composition of tuftsin receptor.

Tuftsin (Thr-Lys-Pro-Arg) receptor was purified to apparent homogeneity by affinity chromatography, using a pentapeptide analog (Thr-Lys-Pro-Pro-Arg) that binds the receptor more than 4 times as avidly as tuftsin. The analog was covalently linked to a solid support (Affi-Gel 10). Rabbit peritoneal granulocyte membrane solubilized with 3-[(3-cholamidopropyl)dimethylammonio]-1-propanesulfonate was applied to the affinity column, the column was washed with 0.1 M ammonium carbonate (pH 7.9) and 0.1 M ammonium acetate (pH 5), and bound material was eluted with 20 nM tuftsin or pentapeptide. The eluate was concentrated and subjected to gel filtration; this yielded one major peak of [3H]tuftsin binding activity corresponding to approximately 500 kDa and a minor peak at approximately 250 kDa. Rechromatography of either peak resulted in the appearance of the same major and minor peaks. NaDodSO4/PAGE of the affinity-purified material under nonreducing conditions showed only two silver-staining bands. Electroblotting followed by [3H]tuftsin overlay and fluorography showed two adjacent radioactive bands corresponding in mobility to the silver-stained bands. Under reducing conditions, NaDodSO4/PAGE yielded molecular mass values 62 kDa and 52 kDa for the two tuftsin receptor subunits. Electron microscopy revealed a homogeneous population of spherical molecules with diameters of 104 A.

Animals

Suppression of Friend virus-induced leukaemia in mice by tuftsin.

A significant decrease in mortality was observed when 25 micrograms of the tetrapeptide tuftsin was given to DBA/2J mice 5 days before infection with Friend leukaemia virus (FLV). The same effect was observed when tuftsin was given 5 days before and twice a week for 3 weeks after FLV infection. No effect was observed when the same amount of tuftsin was given 1 day before infection. A 5 micrograms dose of tuftsin given 5 days before and twice-weekly for 3 weeks had no effect on leukaemia induced by FLV infection. These findings showed that time and dosage were critical to the protective effect of tuftsin against virus-induced leukaemia.

Animals

Nuclear magnetic resonance studies on the structure of the tetrapeptide tuftsin, L-threonyl-L-lysyl-L-prolyl-L-arginine, and its pentapeptide analogue L-threonyl-L-lysyl-L-prolyl-L-prolyl-L-arginine.

Nuclear magnetic resonance spectroscopy has been used to investigate the solution conformation of tuftsin, threonyllysylprolylarginine, as well as a pentapeptide inhibitor of tuftsin, threonyllysylprolylprolylarginine. Both proton and carbon-13 studies were performed. In water, neither peptide gives evidence of a preferred conformation. In dimethyl-d6 sulfoxide, tuftsin appears to prefer a particular conformation, but the inhibitor does not. The conformation of tuftsin is one in which the amide NH proton of arginine is solvent shielded. The conformation does not, however, appear to be such that a normal 4 leads to 1 beta turn exists.

Hydrogen-Ion Concentration

The clinical and physiological aspects of tuftsin deficiency syndromes exhibiting defective phagocytosis.

The tetrapeptide tuftsin (Thr-Lys-Pro-Arg) stimulates phagocytosis by blood neutrophilic granulocytes and tissue macrophages in a highly specific manner. Tuftsin is cleaved off the carrier gamma-globulin molecule as the free active form by two enzymes. One of these is in the spleen and the other on the outer membrane of the phagocyte. Congenital tuftsin deficiency usually arises when the peptide is mutated to an inactive peptide. The acquired type occurs if the spleen function is curtailed by removal or disease. Tuftsin deficiency is manifested by severe recurrent infections involving primarily the skin, lymph nodes and lungs. Therapy is limited to gamma-globulin injection along with appropriate chemotherapy.

Dysgammaglobulinemia

Evidence for a tyrosine residue at the active site of phosphoglucomutase and its interaction with vanadate.

The rate of transfer of [32P]phosphate from [32P]-labeled phosphoglucomutase (alpha-D-glucose-1,6-bisphosphate:alpha-D-glucose-1-phosphate phosphotransferase, EC 2.7.5.1) to glucose increases dramatically between pH 8.5 and 10.5 with a half maximal rate at pH 9.8. This suggests the participation of a residue containing an ionizable group with a pK close to 10. The inhibition of enzyme activity obtained with tyrosine-derivatizing reactions--iodination, nitration, acetylation, and diazo coupling--is strongly indicative of tyrosine participation. Thiol reagents, p-hydroxymercuribenzoate and ethyleneimine, were without effect. Vanadate and arsenate augmented the transfer reaction 200- and 2.5-fold, respectively, and lowered the pH optimum of the reaction.

Animals

The structural requirements of glucose for phosphorylation by phosphoglucomutase.

During catalysis, the phosphoryl group of phosphoglucomutase (alpha-D-glucose-1,6-bisphosphate:alpha-D-glucose-1-phosphate phosphotransferase, EC 2.7.5.1) is transferred through a nucleophilic displacement reaction to the monophosphate substrates to form the diphosphate. Some non-phosphorylated analogs of glucose have been shown to serve as effective acceptors of the active phosphate albeit at a much reduced rate. Several other analogs exhibit little or no reactivity. The relative reaction rates of the reactive analogs follow the order: thioglucose greater than alpha- or beta-D-glucose greater than D-xylose, greater than L-arabinose greater than myo-inositol. The rate of transfer increased with the increased concentration of glucose or its analogs. The products of the reaction may be acid stable ester phosphate or acid labile glycosyl phosphate as well as inorganic phosphate. S-phosphoryl (hemiacetal) thioglucose was identified as a product of the 1-thioglucose reaction. It was possible to define certain steric requirements for the orientation of the hydroxyl groups in all the reacting sugars. These requirements are limited to 3 hydroxyl groups and pertain to loci or receptors on the active site of the enzyme. These would correspond in topography to carbons 2, 3 and 4 of the glucose molecule in the enzyme substrate complex. These hydroxyl groups should be oriented equatorially and project below, above and below the plane of the pyranose ring for C-2, C-3 and C-4, respectively.

Glucose

Studies of fluoride-preactivated rabbit liver adenylyl cyclase.

Rabbit liver adenylyl (ATP pyrophosphate-lyase (cyclizing), EC 4.6.1.1) cyclase was stimulated by preincubation with F- and Mg2+ and the stimulation persisted despite extensive washing and/or detergent solubilization. Optimum preactivation conditions were found to be 4 mM NaF and 2 mM MgCl2; higher or lower concentrations produced submaximum stimulation regardless of preincub ation time. In addition to an enhanced catalytic acticity, the activated enzyme also exhibited different responses to Ca2+ and Cu2+ when compared to the basal enzyme. ATP caused a time-dependent inhibition that could be partially prevented or reversed by F-, but was not completely reversed by washing. This inhibition was not observed when 5'-adenosine(beta, gamma-imide) triphosphate blocks inhibition by ATP. The results support, but do not prove, the proposed molecular basis of F- activation which entails a phosphorylation-dephosphorylation mechanism.

Adenosine Triphosphate

Molecular basis of familial and acquired phagocytosis deficiency involving the tetrapeptide, thr-lys-pro-arg, tuftsin.

The biological activity and metabolism of the phagocytosis stimulating tetrapeptide (Thr-Lys-Pro-Arg) tuftsin, are discussed. Its effect is shown to be highly specific. It stimulates the phagocytic activity of the blood polymorphonuclear leukocyte. A unique familial deficiency of the tetrapeptide is described. In such patients, moderate to severe infections occur at high frequency. These are most pronounced in children. Biochemical and symptomatic evidence can readily be obtained in one or more children. At least one parent of either sex shows clinical signs or laboratory evidence of defective phagocytosis. Another type of deficiency results from removal of the spleen or from loss of specific function due to leukemic infiltration or embolism.

Adolescent