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Normal values of alkaline phosphatase, glutamic oxaloacetic transaminase and glutamic pyruvic transaminase in the serum of experimental animals using optimised methods, and the effects of haemolysis on these values.

Normal values for alkaline phosphatase, glutamic oxaloacetic transaminase and glutamic pyruvic transaminase in rats and dogs were determined by optimised assay methods. It was also demonstrated that haemolysis caused the results to deviate considerably from the true values.

Alanine Transaminase↗

Cellular and subcellular distribution of AMPA-type glutamate receptor subunits and metabotropic glutamate receptor 1alpha in the cochlear nucleus of the horseshoe bat (Rhinolophus rouxi).

Ionotropic alpha-amino-3-hydroxy-5-methyl-4-isoxazolepropionate (AMPA) selective glutamate receptors (GluRs) are the main mediators of fast excitatory neurotransmission and composed of a variable combination of four different subunits (GluR1-4). The metabotropic glutamate receptor 1alpha (mGluR1alpha) is involved in plastic synaptic events. Since horseshoe bats strongly depend on temporal cues for acoustic imaging by echolocation and exhibit prominent species specific specializations of the cochlear nucleus (CN), the subunit distribution of AMPA selective GluRs and the distribution of mGluR1alpha was studied at the light and electron microscopic level with preembedding immunocytochemistry. Immunoreactivity to GluR1 was low throughout the CN. All types of projection neurons of the ventral CN expressed distinct GluR2/3 and GluR4 immunoreactivity with GluR4-labeling especially prominent in multipolar and octopus cell-like neurons of the posteroventral CN. The AMPA and metabotropic receptor inventory of the laminated ventral subdivision of the dorsal CN (DCNv) agreed with that reported in other mammals, whereas the specialized dorsal non-laminated subdivision of DCN (DCNd) lacked the prominent labeling for GluR2/3 and mGluR1alpha that characterizes cartwheel cells of DCNv. Distinct GluR2/3 and GluR4 immunoreactivity combined with low expression of mGluR1alpha immunoreactivity was characteristic for fusiform cells of DCNv and DCNd. Tuberculoventral cells of both the deep DCNv and the DCNd exhibited light to moderate GluR2/3 and GluR4 immunoreactivity. The staining patterns in DCNd thus indicate a loss of cerebellar-like microcircuits and a conservation of frequency specific circuitry of the deep and fusiform cell layers of the mammalian DCN.

Animals↗

Thermodynamic confinement and alpha-helix persistence length in poly(gamma-benzyl-L-glutamate)-b-poly(dimethyl siloxane)-b-poly(gamma-benzyl-L-glutamate) triblock copolymers.

The structure and the associated dynamics of a series of poly(gamma-benzyl-L-glutamate)-b-poly(dimethyl siloxane)-b-poly(gamma-benzyl-L-glutamate) (PBLG-b-PDMS-b-PBLG) triblock copolymers were investigated using small- and wide-angle X-ray scattering, NMR, transmission electron microscopy, and dielectric spectroscopy, respectively. The structural analysis revealed phase separation in the case of the longer blocks with defected alpha-helical segments embedded within the block copolymer nanodomains. The alpha-helical persistence length was found to depend on the degree of segregation; thermodynamic confinement and chain stretching results in the partial annihilation of helical defects.

Carbon Isotopes↗

Reactions of glutamate semialdehyde aminotransferase (glutamate-1-semialdehyde 2,1 aminomutase) with vinyl and acetylenic substrate analogues analysed by rapid scanning spectrophotometry.

The reactions occurring when glutamate-1-semialdehyde amino-transferase (glutamate-1-semialdehyde 2,1 aminomutase, EC 5.4.3.8) was treated with two potential mechanism-based inactivators, namely 4-aminohex-5-enoate and 4-aminohex-5-ynoate, have been investigated by monitoring rapid transient changes in the absorption spectrum of the enzyme's prosthetic group, pyridoxal 5'-phosphate. In both cases a short-lived chromophore absorbing maximally at about 500 nm was formed in a few milliseconds. In the case of the vinyl analogue (4-aminohex-5-enoate) this chromophore, considered to be a quinonoid intermediate, converted rapidly into the pyridoxamine phosphate form of the co-enzyme in a single turnover which was accompanied by negligible inactivation. However, slow inactivation of the enzyme by this compound was observed when the enzyme was made to undergo multiple turnovers by including the efficient aldehyde substrate, succinic semialdehyde. The acetylenic compound, aminohexynoate, produced more complex spectral changes with the consecutive formation of compounds absorbing maximally at 496 nm, 450 nm, 564 nm and 330 nm. The enzyme was 90% inactivated by aminohexynoate within 10 s and thereafter lost no further activity unless aldehyde substrate was added. Mechanisms and kinetic constants consistent with the observations are proposed for each compound. The observation that the acetylenic compound is a much more potent inactivator than its vinyl analogue is attributed to the occurrence of a conjugated allene as intermediate.

Acetylene↗

Genetic control of major histocompatibility complex-linked immune responses to synthetic polypeptides in man: poly(L-phenylalanine, L-glutamic acid)-poly (DL-alanine)--poly(L-lysine) and L-glutamic acid, L-alanine, L-tyrosine (60:30:10).

Vigorous lymphoproliferative responses to synthetic polypeptides poly(L-phenylalanine, L-glutamic acid)-poly(DL-alanine)--poly(L-lysine) [( Phe,G)-A--L], and L-glutamic acid, L-alanine, L-tyrosine (60:30:10) (GAT) were observed in cells from 92 unrelated subjects. Thirty-three percent responded to (Phe,G)-A--L and 77% to GAT. No HLA association was observed with responses to these two antigens. Family studies indicated that two complementary immune response (Ir) genes are required for response to each antigen. Eleven matings were informative for linkage analysis between HLA and these Ir genes. Families in which the complementary genes are in coupling gave maximal lod scores (log of the odds) of 4.50 for (Phe,G)-A--L and 7.57 for GAT for 0 = 0. In a HLA-B/D recombinant family, the Ir- PheGAL genes are mapped towards the HLA-D region. The localization of Ir-GAT genes close to HLA-B was provided by a HLA-A/B recombinant.

Genes, MHC Class II↗

Antigen-specific suppressor T cell interactions. II. Characterization of two different types of suppressor T cell factors specific for L-glutamic acid50-L-tyrosine50 (GT) and L-glutamic acid60-L-alanine30-L-tyrosine10 (GAT).

We have previously reported that two types of suppressor T cell factors (TsF) specific for L-glutamic acid50-L-tyrosine50 (GT) or L-glutamic acid60-L-alanine30-L-tyrosine10 (GAT) can be distinguished based upon differences in their ability to suppress responses by allogeneic mice. Injection of GAT or GT induces a suppressor T cell subset that produces an antigen-binding, I-J+, genetically unrestricted, specific suppressor factor (TsF1). Injection of this factor plus small amounts of antigen induces a second-order suppressor T cell that produces an antigen-binding, I-J+, genetically restricted, specific suppressor factor (TsF2). In this report, we demonstrate that these two factors are also biochemically distinct. Monoclonal TsF1 molecules are composed of a single polypeptide chain that bears both the antigen-binding site and I-J determinant, whereas TsF2 molecules are composed of two disulfide-linked polypeptide chains, one of which is antigen-binding and I-J-, and the other, nonantigen-binding, I-J+. The antigen-binding chain must be added at culture initiation to achieve suppression, but the I-J+ chain can be added as late as day 3 with complete suppression observed. However, isolated chains from TsF2-producing hybridomas derived from three different haplotypes were unable to suppress immune responses when chains from heterologous TsF2 were mixed. Indirect evidence is presented that suggests that this restriction is because the chains fail to interact rather than the inability of the target cells to recognize both chains.

Alkylation↗

The novel HemoCu plasma/low hemoglobin system accurately measures small concentrations of three different hemoglobin-based oxygen carriers in plasma: hemoglobin glutamer-200 (bovine) (Oxyglobin), hemoglobin glutamer-250 (bovine) (Hemopure), and hemoglobin-Raffimer (Hemolink).

UNLABELLED: The accuracy of the HemoCue Plasma/Low Hemoglobin System was validated in vitr. with low levels of hemoglobin-based oxygen carriers (HBOCs). Repeated measurements were performed on 50 samples of canine plasma, each mixed with three different HBOCs at varying small concentrations (a total of 150 samples), by using plasma samples without HBOCs as controls. Two technicians performed the measurements and randomly tested each sample 10 times. The results were analyzed for correlation, and analysis of variance was used to evaluate statistical significance, with a P value of </=0.05 considered significant. Hemoglobin concentrations determined with the bedside photometer were not significantly different from known values of hemoglobin concentration in the samples. There was no significant difference between values obtained by two independent observers for the same samples. This was true for all three tested HBOCs and for all tested concentrations. The mean bias of the measurement expressed as a percentage of sample concentration was 0.1% for hemoglobin glutamer-200 (bovine), 0.58% for hemoglobin glutamer-250 (bovine), and 0.19% for hemoglobin-raffimer. The mean error was <8% for all three HBOCs. Both intraobserver and interobserver reliabilities were high and statistically significant. The HemoCue Plasma/Low Hemoglobin System is a reliable instrument for detecting and measuring small concentrations of three different HBOCs in plasma. IMPLICATIONS: This study evaluated a new bedside blood-measuring device for low levels and found that it rapidly measured low levels accurately for three blood substitutes.

Air↗

Role of group II metabotropic glutamate receptors 2/3 and group I metabotropic glutamate receptor 5 in developing rat medial vestibular nuclei.

In brainstem slices from developing rats, metabotropic glutamate receptors mGluR2/3 and mGluR5 play different inhibitory roles in synaptic transmission and plasticity of the medial vestibular nuclei. The mGluR2/3 block (LY341495) reduces the occurrence of long-term depression after vestibular afferent high frequency stimulation at P8-P10, and increases that of long-term potentiation, while the mGluR5 block prevents high frequency stimulation long-term depression. Later on, the receptor block does not influence high frequency stimulation effects. In addition, while mGluR2/3 agonist (APDC) always provokes a transient reduction of synaptic responses, that of mGluR5 (CHPG) induces long-term depression per se at P8-P10. These results show a key role of mGluR5 in inducing high frequency stimulation long-term depression in developing medial vestibular nuclei, while mGluR2/3 modulate synaptic transmission, probably through presynaptic control of glutamate release.

2-Amino-5-phosphonovalerate↗

Tissue Distribution of Glutamate Synthase and Glutamine Synthetase in Rice Leaves : Occurrence of NADH-Dependent Glutamate Synthase Protein and Activity in the Unexpanded, Nongreen Leaf Blades.

To further explore the function of NADH-dependent glutamate synthase (GOGAT), the tissue distribution of NADH-GOGAT protein and activity was investigated in rice (Oryza sativa L.) leaves. The distributions of ferredoxin (Fd)-dependent GOGAT, plastidic glutamine synthetase, and cytosolic glutamine synthetase proteins were also determined in the same tissues. High levels of NADH-GOGAT protein (33.1 mug protein/g fresh weight) and activity were detected in the 10th leaf blade before emergence. The unexpanded, nongreen portion of the 9th leaf blade contained more than 50% of the NADH-GOGAT protein and activity per gram fresh weight when compared with the 10th leaf. The expanding, green portion of the 9th leaf blade outside of the sheath contained a slightly lower abundance of NADH-GOGAT protein than the nongreen portion of the 9th blade on a fresh weight basis. The fully expanded leaf blades at positions lower than the 9th leaf had decreased NADH-GOGAT levels as a function of increasing age, and the oldest, 5th blade contained only 4% of the NADH-GOGAT protein compared with the youngest 10th leaf blade. Fd-GOGAT protein, on the other hand, was the major form of GOGAT in the green tissues, and the highest amount of Fd-GOGAT protein (111 mug protein/g fresh weight) was detected in the 7th leaf blade. In the nongreen 10th leaf blade, the content of Fd-GOGAT protein was approximately 7% of that found in the 7th leaf blade. In addition, the content of NADH-GOGAT protein in the 10th leaf blade was about 4 times higher than that of Fd-GOGAT protein. The content of plastidic glutamine synthetase polypeptide was also the highest in the 7th leaf blade (429 mug/g fresh weight) and lowest in nongreen blades and sheaths. On the other hand, the relative abundance of the cytosolic glutamine synthetase polypeptide was the highest in the oldest leaf blade, decreasing to 10 to 20% of that value in young, nongreen leaves. These results suggest that NADH-GOGAT is important for the synthesis of glutamate from the glutamine that is transported from senescing source tissues through the phloem in the nongreen sink tissues in rice leaves.

Journal Article↗

Strontium D-glutamate hexahydrate and strontium di(hydrogen L-glutamate) pentahydrate.

[Sr(C5H7NO4)].6H2O, (I), and [Sr(C5H8NO4)2].5H2O, (II), both crystallize with similar strontium-glutamate-water layers. In (I), the neutral layers are connected through hydrogen bonds by water molecules, while in (II), the positively charged layers are connected through hydrogen bonds and electrostatic interactions by interleaving layers of hydrogen glutamate anions and water molecules.

Journal Article↗

Ionotropic glutamate receptors in lungs and airways: molecular basis for glutamate toxicity.

We earlier showed that the ionotropic glutamate receptor agonist N-methyl D-aspartate (NMDA) induces excitotoxic pulmonary edema, and that endogenous activation of NMDA receptors (NMDAR) could mediate lung injury caused by oxidative stress. In this study, we searched for evidence of NMDAR expression in the rat lung and in the alveolar macrophage (AM) cell line NR8383, and for possible regulation of receptor expression by NMDA. The presence of mRNA for NMDAR 1 and the four known NMDAR 2 subtypes (A, B, C, and D) was examined by reverse transcriptase-polymerase chain reaction using isoform-specific primers. NMDAR 1 was expressed in all lung regions examined (peripheral, midlung, and mainstem), as well as in trachea and the AMs. Expression of NMDAR 2A and 2B subtypes was not detected, whereas NMDAR 2C was present only in peripheral and mid-lung samples. NMDAR 2D was the dominant subtype expressed in the peripheral, gas-exchange zone of lung and in alveolar macrophages, and this expression was upregulated in lungs treated with NMDA. Western blot confirmed the presence of NMDAR 1 protein in all lung regions and in AMs. These findings provide a molecular-biological basis for the excitotoxic actions of glutamate in rat lungs and airways, and raise the question of a possible physiologic role for NMDAR in lung and airway function.

Animals↗

Mechanism of protection afforded by polyaspartic acid against gentamicin-induced phospholipidosis. II. Comparative in vitro and in vivo studies with poly-L-aspartic, poly-L-glutamic and poly-D-glutamic acids.

Poly-L-aspartic acid (poly-L-Asp) protects rats against gentamicin (GM)-induced nephrotoxicity (functional and pathological changes) and early cortical alterations (phospholipidosis and increase in cell turnover) without decreasing, but actually increasing, the renal accumulation of the drug. We suggested that this protection occurs through the complexation of GM by poly-L-Asp, after their pinocytosis and accumulation in the lysosomes of the renal cortex (Kishore et al., J. Pharmacol. Exp. Ther. 867-874, 1990). Here we examine further our proposal by comparatively assessing poly-L-Asp (as provided by the Sigma Chemical Co., St. Louis, MO; MW 9-11,000), with two other polyanionic peptides, viz, poly-L-glutamic (poly-L-Glu; MW 14,300) and poly-D-glutamic (poly-D-Glu; MW 20,000) acids obtained from the same supplier. In vitro, all three polyanions showed a similar capacity to bind GM, to displace it from anionic phospholipids at acid pH and thereby to decrease the inhibitory potency of GM toward lysosomal phospholipase A1. In vivo, however, only poly-L-Asp and poly-D-Glu were able to prevent the development of GM-induced renal lysosomal phospholipidosis as assessed by key biochemical criteria (increase in lipid phosphorus and decrease of acid sphingomyelinase activity) and by examination of the lysosomal content in the electron microscope (accumulation of myeloid bodies). Based on these criteria, poly-L-Glu completely failed to protect. In vitro, poly-L-Glu was 13- to 17-fold more susceptible to hydrolysis by liver lysosomal extracts at pH 5.4 after 48 hr incubation, as compared to poly-L-Asp and poly-D-Glu, respectively. Assuming that all three polyanions tested are transported and accumulated in lysosomes of renal cortex to the same extent and that their respective rates of hydrolysis therein compare to that measured in vitro, these results suggest that stability of polyanions in lysosomes is an essential requisite for protection against GM-induced phospholipidosis and thus strengthens our earlier proposal that the site of action of poly-L-Asp must be in lysosomes. Although protecting from phospholipidosis, poly-D-Glu, however, caused a so far undescribed lysosomal storage disorder consisting of the accumulation of osmiophilic, nonlamellar material. This study, therefore, also demonstrates that not all polyanions resistant to lysosomal enzymes can be used as nephroprotectants, inasmuch as these, as is the case for poly-D-Glu, may cause renal alterations on their own.

Animals↗

[Increase in glutamic-oxaloacetic and glutamic-pyruvic transaminases and lactic dehydrogenase as a diagnostic aid in perinatal asphyxia].

In order to determine the behavior of glutamic oxalacetic (GOT), glutamic-pyruvic (GPT) and lactic dehydrogenase (LDH) transaminases after a period of asphyxia, a study was conducted in 120 newborn children which were placed into two groups: group 1 of the asphyxiated children who were given oxygen at intermittent positive pressure for more than a minute and group 2 of healthy children with an Apgar greater than 7 after the first and five minutes and without any apparent pathology. The results showed a real increase in the quantities of all three transaminases among those in the group of asphyxiated children, which on the other hand did not occur in the healthy group of children where levels remained normal. There was statistical differences (P less than 0.001) by which we can conclude that the quantification of these enzymes can be useful as a diagnostic tool in cases of perinatal asphyxia.

Alanine Transaminase↗

Serum glutamic oxaloacetic transaminase (GOT) and glutamic pyruvic transaminase (GPT) levels in diabetes mellitus.

The activities of serum glutamic oxaloacetic transaminase (GOT) and glutamic pyruvic transaminase (GPT) in 72 Libyan diabetic patients were determined. The respective mean values were 24 +/- 1.1 U/L and 23.03 +/- 0.87 U/L. Significant correlations were found between the activities of GOT or GPT and fasting blood glucose, age, body mass index, heart rate and blood pressure levels. The mean values of GOT and GPT in diabetic patients with secondary complications were significantly higher than those without complications. On the other hand, patients with family history of diabetes have higher mean values of GOT and GPT when compared with those without diabetes in the family.

Age Factors↗

Glutamic oxalacetic and glutamic pyruvic transaminase activities in different tissues of rats and guinea pigs exposed to varying levels of altitude stress for different periods of time.

It was observed that both glutamic oxalacetic transaminase (GOT) and glutamic pyruvic transaminase (GPT) activities were significantly increased in different tissues of both rats and guinea pigs, during a short period of altitude exposure, as well as in acclimatized animals. Interestingly, it was found that oral administration of glucose showed no such significant change at either sea level or in a hypoxic condition. Studies on the activity of GOT and GPT in different tissues of normal guinea pigs showed a little change in liver and brain during short periods of exposure. Kidney and heart showed a significant increase in GOT activity without any change in GPT activity. Increased activities were observed in all the tissues of the acclimatized animals. Of both unexposed and acclimatized animals, there was no change in the enzyme of unexposed and acclimatized animals except in heart following injection of thyroxine (16 micrograms X kg-1), but the enzyme activities were most pronounced in scorbutic animals.

Alanine Transaminase↗

The influence of dietary methionine, protein, and energy levels on glutamic-oxalacetate and glutamic-pyruvate transaminases of chicken.

The variations were tested in dietary methionine, protein, and caloric density on the glutamic-oxalacetate transaminase (GOT) and glutamic-pyruvate transaminase (GTP). The GOT was not affected by the protein and methionine levels either in the plasma or liver. Plasma GTP tended to increase (P less than 0.01) between 0.28% and 0.44% methionine levels in experiment I and between 0.26% and 0.50% in experiment 2. In the liver, the GTP activity was similar in both experiments. The interaction between methionine + cystine and protein was significant in their effect on the GTP activity. This enzyme decreased in the plasma with increasing methionine + cystine level, while it increased with increasing protein level. The GTP activity was negatively correlated (r = -0.52) with the energy level in the liver. From the trends of the GTP activity, the minimum and optimum methionine levels in broiler diets can be derived.

Alanine Transaminase↗

Liver glutamate-oxalate transaminase and glutamate-pyruvate transaminase activity in pigs as influenced by dietary methionine and lysine levels.

Four trials involving 192 Large White X Landrace pigs were conducted to investigate the effect of wide variation of dietary methionine, lysine and caloric density on the activity of hepatic glutamate-oxalate ad glutamate-pyruvate transaminases. Results of the study show that: The activities of the two transaminases were influenced by the nutritional treatments. GOT and GPT activity exhibited significant positive and negative quadratic relationship respectively with dietary methionine levels. Both GOT and GPT activities decreased with increasing caloric density or palm oil level of the diet. In weanling pigs, both GOT and GPT exhibited significant negative quadratic relationship with dietary lysine levels and were also significantly influenced by the sex of the animals. In older pigs, only GOT activity was significantly affected by dietary lysine levels. The correlation of GOT and GPT activities to dietary essential amino acids shows that hepatic enzymatic activities could be good indices of essential amino acid utilization.

Alanine Transaminase↗

[Activities of glutamate-oxalate and glutamate-pyruvate transaminases, alkaline phosphatase and lactate dehydrogenase in the serum of lambs weaned at different ages].

Experiments were carried out with 32 lambs weaned at different age and fed a dry milk replacer as well as with 20 control lambs nursed by their ewes. All lambs were divided into three groups. Those of the first one were weaned at the age of 5 days, those of the second group - at 15 days, and those of the third group - at 20 days. Blood was sampled at the beginning of the test and then for a second and a third time at a 15-day interval in order to study the serum glutamate-oxal-acetate transaminase (SGOT), the serum glutamate pyruvate transaminase (SGPT), the alkaline phosphatase (AP), and the lactate dehydrogenase (LDH). It was established that at the first study in the beginning of the experiment SGOT and SGPT were at a higher level in the test animals than in the control ones. AP was found to rise in both groups with the advancement of age. Lowest values in the activity of LDH were recorded with the two groups at the age of 5 days. No differences were established between the values of LDH in the test and control groups in all investigations. The rise of SGOT and SGPT in the test lambs spoke of adaptation of the enzymes as a result of changes in the metabolic pattern with the lambs of different feeding.

Aging↗