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P Anglade

Publications and source records attributed to P Anglade.

At least 19 recordsLinked to original sources

Purification and characterization of a glutathione S-transferase Omega in pig: evidence for two distinct organ-specific transcripts.

A cytosolic glutathione S-transferase (GST, EC 2.5.1.18) from the recently characterized Omega class [GSTO; Board et al. 2000, J. Biol. Chem. 275, 24798-24806] has been identified in pig organs. It was found widely distributed in the different tissues investigated and especially abundant in liver and muscle. The hepatic enzyme has been purified to homogeneity by using its selective affinity for S-hexylglutathione over GSH, thus providing a simple method to isolate mammalian GSTO. The dimeric protein has a subunit molecular mass of 27328 Da as measured by electrospray ionization MS. Internal peptide sequencing and complete cDNA sequencing revealed strong similarities with its human recombinant orthologue and two rodent GST-like proteins with the ability to catalyse the GSH-dependent reduction of dehydroascorbate. Additional similarities, including the presence of a specific N-terminal extension and of immunological cross-reactivity, support the results. Moreover, this gene encoding GSTO generates two organ-specific transcripts, suggesting transcriptional mechanisms with a significance that is as yet uncharacterized.

Amino Acid Sequence↗

Ruminococcin A, a new lantibiotic produced by a Ruminococcus gnavus strain isolated from human feces.

When cultivated in the presence of trypsin, the Ruminococcus gnavus E1 strain, isolated from a human fecal sample, was able to produce an antibacterial substance that accumulated in the supernatant. This substance, called ruminococcin A, was purified to homogeneity by reverse-phase chromatography. It was shown to be a 2,675-Da bacteriocin harboring a lanthionine structure. The utilization of Edman degradation and tandem mass spectrometry techniques, followed by DNA sequencing of part of the structural gene, allowed the identification of 21 amino acid residues. Similarity to other bacteriocins present in sequence libraries strongly suggested that ruminococcin A belonged to class IIA of the lantibiotics. The purified ruminococcin A was active against various pathogenic clostridia and bacteria phylogenetically related to R. gnavus. This is the first report on the characterization of a bacteriocin produced by a strictly anaerobic bacterium from human fecal microbiota.

Amino Acid Sequence↗

Towards a proteomic map of Lactococcus lactis NCDO 763.

Lactococcus lactis is a widely used bacteria in dairy industry, specially in cheese ripening. Numerous lactococcal enzymes and proteins are involved in this process. Proteomics makes it possible to deal with a high number of proteins and identify modification of their patterns in two-dimensional (2-D) gels. However, an annotated reference map is necessary prior to analyzing protein variations. We have begun to construct such a map in easily reproducible conditions and identify proteins.

Bacterial Proteins↗

Ultrastructural evidence for dendritic release of acetylcholinesterase in the rat substantia nigra.

Morphological evidence for dendritic secretion of acetylcholinesterase (AChE) in rat substantia nigra--a physiologically known phenomenon--was searched by means of a modified cytochemical method devised for fine localization of AChE activity at the electron microscopic level. DAB precipitate was observed in cluster of small vesicles in contact with the plasma membrane and in the extracellular space in the vicinity of the vesicles. Single coated or uncoated large vesicles filled with stained material were found in the cytoplasm of the dendrites at distance from or in contact with the plasma membrane. Immunoperoxidase staining with specific anti-serum against rat AChE gave similar localization of AChE. These results suggest that AChE is released from the dendrites of the nigral neurons by a process of vesicular exocytosis and captured by endocytosis. The relation of this process to a putative release from the smooth endoplasmic reticulum remains to be elucidated.

Acetylcholinesterase↗

Biochemical characterization of bovine alpha s1-casein F and genotyping with sequence-specific primers.

Bovine alpha s1-casein F (alpha s1-CN F) was found in a genetic resource of Deutsches Schwarzbuntes Niederungsrind cows at a frequency of 0.009. Biochemical characterization of this new variant was obtained by automated sequencing of reversed-phase HPLC-separated tryptic peptides of alpha s1-CN F and alpha s1-CN B. alpha s1-CN F was found to be a subtype of alpha s1-CN B with a single amino acid substitution (SerP/Leu) in position 66. DNA sequencing revealed a C/T transition in position 8418 of the gene. Sequence-specific primers were designed to perform an allele-specific polymerase chain reaction for detection of alpha s1 CnF. Typing of artificial insemination sperm samples included in the genetic resource sperm pool identified one sire heterozygous for alpha s1 CnF.

Alleles↗

The cold shock response of the psychrotrophic bacterium Pseudomonas fragi involves four low-molecular-mass nucleic acid-binding proteins.

The psychrotrophic bacterium Pseudomonas fragi was subjected to cold shocks from 30 or 20 to 5 degrees C. The downshifts were followed by a lag phase before growth resumed at a characteristic 5 degrees C growth rate. The analysis of protein patterns by two-dimentional gel electrophoresis revealed overexpression of 25 or 17 proteins and underexpression of 12 proteins following the 30- or 20-to-5 degrees C shift, respectively. The two downshifts shared similar variations of synthesis of 20 proteins. The kinetic analysis distinguished the induced proteins into cold shock proteins (Csps), which were rapidly but transiently overexpressed, and cold acclimation proteins (Caps), which were more or less rapidly induced but still overexpressed several hours after the downshifts. Among the cold-induced proteins, four low-molecular-mass proteins, two of them previously characterized as Caps (CapA and CapB), and heat acclimation proteins (Haps) as well as heat shock proteins (Hsps) for the two others (TapA and TapB) displayed higher levels of induction. Partial amino acid sequences, obtained by microsequencing, were used to design primers to amplify by PCR the four genes and then determine their nucleotide sequences. A BamHI-EcoRI restriction fragment of 1.9 kb, containing the complete coding sequence for capB, was cloned and sequenced. The four peptides belong to the family of small nucleic acid-binding proteins as CspA, the major Escherichia coli Csp. They are likely to play a major role in the adaptative response of P. fragi to environmental temperature changes.

Adaptation, Biological↗

Apoptosis and autophagy in nigral neurons of patients with Parkinson's disease.

Parkinson's disease (PD) is a neurodegenerative disorder characterized by progressive cell loss confined mostly to dopaminergic neurons of the substantia nigra. Several factors, including oxidative stress, and decreased activity of complex I mitochondrial respiratory chain, are involved in the degenerative process. Yet, the underlying mechanisms leading to dopaminergic cell loss remain elusive. Morphological assessment for different modes of cell death: apoptosis, necrosis or autophagic degeneration, can contribute significantly to the understanding of this neuronal loss. Ultrastructural examination revealed characteristics of apoptosis and autophagic degeneration in melanized neurons of the substantia nigra in PD patients. The results suggest that even at the final stage of the disease, the dopaminergic neurons are undergoing active process of cell death.

Aged↗

Apoptosis in dopaminergic neurons of the human substantia nigra during normal aging.

Morphological and biochemical alterations have been described in neurons of the aged human brain. However, the cell death process associated with neuronal senescence remains to be elucidated. Apoptosis and autophagic degeneration, two modes of programmed cell death described in embryogenesis and tissue renewal in adult, have been observed in nigral dopaminergic neurons in patients with Parkinson's disease. In the present study, we made the hypothesis that programmed cell death may be also involved in the death of nigral dopaminergic neurons occurring during aging. Cell death types were defined by morphological criteria identified at subcellular level. We thus performed an ultrastructural analysis in order to search for apoptotic and autophagic features in melanized neurons of the substantia nigra in four normal aged subjects. Morphological characteristics of apoptosis, such as contact loss with surrounding tissues, cell shrinkage and chromatin condensation, were found in 2% of the total number of melanized neurons analyzed. Although endoplasmic reticulum appeared normal, mitochrondria were markedly shrunken. Fragments of melanized neurons were found in glial cells. Autophagic degeneration or necrosis were not detected in melanized neurons. Signs of oxidative stress, such as vacuolation of mitochondria, were observed in melanized neurons devoid of apoptotic features. These findings demonstrate that apoptosis is involved in cell death of nigral dopaminergic neurons during normal aging. Since morphological abnormalities found in this study, such as marked mitochondrial shrinkage in apoptotic neurons, were not observed in patients with Parkinson's disease, the mechanisms underlying apoptosis may be different in aging and pathology.

Aged↗

[Neuronal death caused by apoptosis in Parkinson disease].

The identity of the neuronal populations (dopaminergic, noradrenergic, serotoninergic, cholinergic) that die in Parkinson's disease is well established. The cause of this degeneration, and the mechanism by which it takes place is still unknown, although there is data, at least for the dopaminergic neurons, suggesting that oxidative stress might play a role. In addition, recent ultrastructural studies of dopaminergic neurons in patients with Parkinson's disease have shown that these neurons die by apoptosis, and immunocytochemical studies have shown that the cytokine TNF-alpha, observed in microglial cells in the substantia nigra of patients post-mortem, might play a role, as might the transcription factor NF-kappa B, which is translocated into the nucleus of dopaminergic neurons in patients, a sign of its activation. We have developed an in vitro model of dopaminergic cell death that accounts for these observations. In both differentiated PC12 cells and primary cultures of mesencephalic neurons, we have shown that when the sphingomyelin-dependent signaling pathway is activated, these cells die by apoptosis, preceded by the production of superoxide radicals in the mitochondria and the nuclear translocation of NF-kappa B. TNF-alpha is known to induce all three such events: apoptosis, activation of the sphingomyelin pathway, free radical production. Our results suggest that the superoxide radicals are used as signalling molecules within the sphingomyelin pathway. These observations may help to explain the origin of the evidence, in postmortem brain from parkinsonian patients, for oxidative stress, hypothesized to be an etiological factor in this disease.

Apoptosis↗

Induction of myelination in the central nervous system by electrical activity.

The oligodendrocyte is the myelin-forming cell in the central nervous system. Despite the close interaction between axons and oligodendrocytes, there is little evidence that neurons influence myelinogenesis. On the contrary, newly differentiated oligodendrocytes, which mature in culture in the total absence of neurons, synthesize the myelin-specific constituents of oligodendrocytes differentiated in vivo and even form myelin-like figures. Neuronal electrical activity may be required, however, for the appropriate formation of the myelin sheath. To investigate the role of electrical activity on myelin formation, we have used highly specific neurotoxins, which can either block (tetrodotoxin) or increase (alpha-scorpion toxin) the firing of neurons. We show that myelination can be inhibited by blocking the action potential of neighboring axons or enhanced by increasing their electrical activity, clearly linking neuronal electrical activity to myelinogenesis.

Action Potentials↗

Characterization of pig liver glutathione S-transferases using HPLC-electrospray-ionization mass spectrometry.

We have characterized 11 porcine liver cytosolic glutathione S-transferase (GST) subunits from their precise molecular mass, immunoreactivity and partial amino acid sequence. Four Alpha-, six Mu- and one unexpected Pi-class GST subunits were found with average molecular masses of 24.984-25.228 kDa, 25.039-25.657 kDa and 23.510 kDa respectively. Molecular masses were established using electrospray-ionization mass spectrometry, with a precision of +/- 3-4 mass units. Glutathione (GSH) and S-hexylglutathione (ShGSH) were tested as affinity ligands in the purification procedure. The binding selectivity of GSH was better than that of ShGSH, although non-GST proteins were retained on both matrices. As already described in other studies, a number of non-GST proteins bound to the affinity resins. Two of them were tentatively identified as mevalonate kinase and carbonyl reductase. The characterization of pig liver cytosolic GST subunits pattern achieved in this work should constitute a useful tool for rapid evaluation of these enzymes' expression in modulation studies.

Amino Acid Sequence↗

Dopaminergic sprouting in the rat striatum after partial lesion of the substantia nigra.

The capacity of the dopaminergic nerve system to reinnervate the denervated adult striatum was analyzed in a model of partial 6-hydroxydopamine-induced unilateral lesion of rat substantia nigra pars compacta. Sprouting of dopaminergic fibers entering the ventrolateral part of the striatum from a narrow zone of the external capsule was detected on the lesioned side 4 and 7 months, but not 10 days, after lesioning. Ultrastructural examination of the zone of sprouting revealed hypertrophic dopaminergic fibers and growth-cone-like structures, confirming the existence of an ongoing process of spontaneous regrowth of dopaminergic fibers. The identification of the factors involved in the regrowth of dopaminergic fibers may help to orientate molecular research into new treatments for Parkinson's disease.

Animals↗

Synaptic plasticity in the caudate nucleus of patients with Parkinson's disease.

The loss of dopaminergic neurons from the substantia nigra in Parkinson's disease (PD) may provoke a reorganization of cellular interactions in the nigrostriatal pathway. Indeed, a plasticity of putative corticostriatal synapses has been evidenced in the striatum of rats with a 6-hydroxy-dopamine-induced lesion of the substantia nigra. However, to our knowledge, synaptic plasticity in the striatum has not previously been investigated in human PD. In this study, we have analysed, at electron microscope level, the morphological characteristics of the synapses formed by afferents in asymmetric contact with dendritic spines of neurons in the caudate nucleus of three patients with PD and three matched controls. The length of the postsynaptic densities and the number of perforated synapses were both significantly increased (24 and 88%, respectively) in the PD patients; the size of these afferents and the surface area occupied by their mitochondria also showed an increase (24 and 50%, respectively), although not statistically significant. The size and density of dendritic spines and the size of postsynaptic density perforations were unchanged. These data indicate the presence of plasticity of the putative corticostriatal synapses in PD and suggest a hyperactivity of cortical afferents to GABAergic neurons.

Aged↗

Isolation and characterization of Muscovy (Cairna moschata) duck insulin.

Ducks (Anatidae Family, Anseriform order) are divided in two genera: Pekin duck (Anasplatyrhynchos genus) and Muscovy duck (Cairina moschata genus) and differ for their number of liver insulin receptors (despite rather similar plasma insulin levels). The possibility that the presence of different endogenous insulins account for the difference in insulin receptor number between the two duck species led us to purify, sequence and characterize the binding properties of Muscovy duck insulin. The sequence of Muscovy duck insulin (measured mass: 5729.11) was identical to that described in two other species from the Anseriforme order: Pekin duck or goose. The binding affinity of Muscovy duck insulin for rat liver insulin receptors (either membrane bound or solubilized receptors) was lower than that of porcine insulin (0.3), which most likely accounts for the low biological potency of Pekin duck insulin previously described. In contrast, liver receptors from chicken and both duck species exhibited the same affinity for duck and porcine insulin suggesting the presence of specific changes in the structure of binding sites of bird liver insulin receptors. The decrease in the number of insulin receptors in Muscovy duck liver is not therefore the consequence of a change at the level of the insulin molecule itself. As discussed, among bird insulins, the hypoactive "duck type" insulin would have appeared after the hyperactive "chicken type" insulin during the evolution of Aves.

Amino Acid Sequence↗

Purification and amino acid sequences of piscicocins V1a and V1b, two class IIa bacteriocins secreted by Carnobacterium piscicola V1 that display significantly different levels of specific inhibitory activity.

Two bacteriocins produced by Carnobacterium piscicola V1 were purified and characterized. Piscicocin V1a (molecular mass = 4,416 Da) and piscicocin V1b (molecular mass = 4,526 Da) are nonlantibiotic, small, heat-stable antibacterial peptides. Piscicocin V1b is identical to carnobacteriocin BM1, while piscicocin V1a is a new bacteriocin. Its complete sequence of 44 amino acid residues has been determined. Piscicocin V1a belongs to the class IIa bacteriocins having the consensus YGNGV motif. These peptides inhibit various gram-positive bacteria, including Listeria monocytogenes. Piscicocin V1a is approximately 100 times more active than piscicocin V1b against indicator strains. However, the antagonistic spectrum is the same for both piscicocins. Comparison of these results with the analysis of the amino acid sequence and secondary structure predictions suggests that (i) the conserved N-terminal conserved domain is involved in the receptor recognition and therefore in an "all-or-none" response against target bacterial cells and (ii) the C-terminal variable and hydrophobic domain determines membrane anchoring and therefore the intensity of the antagonist response.

Amino Acid Sequence↗

Synthesis, storage and release of acetylcholine at and from growth cones of rat central cholinergic neurons in culture.

Neurons from the nucleus diagonal band of Broca (DBB) from new born rats protrude neuronal processes and growth cones in culture. Cytochemical observations with the light and electron microscope indicate that growth cones of these neurons take up choline, synthesize acetylcholine (ACh) and store ACh in the vesicles. Electrical stimuli at the soma of DBB neurons evoked inward currents in ACh-sensitive neurons attached to DBB growth cones. These currents were suppressed by TTX, a Ca2+ channel blocker (Cd2+), and an ACh nicotinic antagonist (C6). These results suggest that ACh is synthesized, stored and released from the growth cones of DBB neurons prior to synapse formation.

Acetylcholine↗