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Biomedical subjects

B Luu

Publications and source records attributed to B Luu.

At least 19 recordsLinked to original sources

Neurotrophic activity of 2,4,4-trimethyl-3-(15-hydroxypentadecyl)-2-cyclohexen-1-one in cultured central nervous system neurons.

Endogenous neurotrophic factors are essential for the development and maintenance of the nervous system. This suggests their potential utilization as therapeutic agents for neurodegenerative diseases. However, the clinical use of these proteic factors is still restricted, and brings about undesirable consequences, including adverse side effects, and bioavailability and stability difficulties. Therefore, the development of low-molecular weight, non-proteic synthetic compounds with neurotrophic properties appears as a promising approach. The aim of this study was to explore the biological activity of 2,4,4-trimethyl-3-(15-hydroxypentadecyl)-2-cyclohexen-1-one (tCFA15), a trimethyl cyclohexenonic long-chain fatty alcohol. To this end, neurons from fetal rat cerebral hemispheres were cultured in the presence of increasing doses of tCFA15 ranging from 0.1 to 1000 nM. Quantification of cell numbers after 48-h culture showed that 100 nM tCFA15 induced a significant increase in the number of surviving cells. Measurement of total neurite length in microtubule-associated protein 2-positive cells also revealed a stimulatory effect in a wider range of concentrations. The extent of this neuritogenic action was similar to that induced by dibutyryl-cyclic AMP, a well-known neurite outgrowth stimulator, but used at much higher concentration (1 mM). Analysis of structure-activity relationships with different tCFA15 analogs and derivatives corroborated the neurotrophic activity. Taken together, these findings provide strong evidence that tCFA15 exhibits neurotrophic properties in vitro.

Animals↗

Complexation of two proteic insect inhibitors to the active site of chymotrypsin suggests decoupled roles for binding and selectivity.

The crystal structures of two homologous inhibitors (PMP-C and PMP-D2v) from the insect Locusta migratoria have been determined in complex with bovine alpha-chymotrypsin at 2.1- and 3.0-A resolution, respectively. PMP-C is a potent bovine alpha-chymotrypsin inhibitor whereas native PMP-D2 is a weak inhibitor of bovine trypsin. One unique mutation at the P1 position converts PMP-D2 into a potent bovine alpha-chymotrypsin inhibitor. The two peptides have a similar overall conformation, which consists of a triple-stranded antiparallel beta-sheet connected by three disulfide bridges, thus defining a novel family of serine protease inhibitors. They have in common the protease interaction site, which is composed of the classical protease binding loop (position P5 to P'4, corresponding to residues 26-34) and of an internal segment (residues 15-18), held together by two disulfide bridges. Structural divergences between the two inhibitors result in an additional interaction site between PMP-D2v (position P10 to P6, residues 21-25) and the residues 172-175 of alpha-chymotrypsin. This unusual interaction may be responsible for species selectivity. A careful comparison of data on bound and free inhibitors (from this study and previous NMR studies, respectively) suggests that complexation to the protease stabilizes the flexible binding loop (from P5 to P'4).

Animals↗

Peroxisome proliferator-activated receptor-gamma regulates airway epithelial cell activation.

The peroxisome proliferator-activated receptors (PPARs) are nuclear hormone transcription factors that regulate genes associated with lipid and glucose metabolism. Recent evidence suggests that PPAR-gamma may also act as a negative immunomodulator. To investigate the potential role of PPAR-gamma in regulating airway inflammation, we characterized the expression and function of PPAR-gamma in airway epithelial cells. Airway epithelial cells constitutively express PPAR-gamma-specific messenger RNA and protein. Further, airway epithelial PPAR-gamma is inducible by interleukin (IL)-4 in NIH-A549 cells. Two PPAR-gamma agonists, the prostaglandin D2 metabolite 15-deoxy-(Delta)(12,14) prostaglandin J2 (15d-PGJ2) and a thiazolidinedione, ciglitazone, were used to study the effects of PPAR-gamma activation on airway epithelial cytokine expression. Activation of PPAR-gamma stimulated a PPAR-responsive reporter gene in a ligand-specific manner. In NIH-A549 cells, both ligands also blocked the cytokine-induced expression of the inducible form of nitric oxide synthase in a dose-dependent manner. In contrast, ciglitazone alone had a slight effect on cytokine-induced IL-8 secretion, but markedly inhibited IL-8 secretion from cells pretreated with IL-4. The demonstration of PPAR-gamma expression and function in airway epithelial cells expands the immunoregulatory role of PPARs and suggests a critical role for PPAR-gamma in antagonizing proinflammatory pathways in the airways.

Adjuvants, Immunologic↗

3-(15-Hydroxypentadecyl)-2,4,4-trimethyl-2-cyclohexen-1-one and its effect on neuropeptide secretion.

The aim of the present study was to describe the synthesis of a trimethyl cyclohexenonic long chain fatty alcohol (t-CFA), and analyze its biological activity. Specifically, 3-(15-hydroxypentadecyl)-2,4,4-trimethyl-2-cyclohexen-1-one, the t-CFA containing 15 carbon atoms on the side chain (t-CFA n = 15) stimulated arginine vasopressin secretion in nerve terminals of the neurohypophysis. This effect was inhibited by extracellular calcium depletion, which suggests that t-CFA n = 15 stimulates neuropeptide secretion through a calcium-dependent exocytosis mechanism.

Animals↗

Apoptosis at the interface of immunosuppressive and anticancer activities: the examples of two classes of chemical inducers, oxysterols and alkylating agents.

Recent progresses in the understanding of molecular and biochemical pathways involved in apoptotic cell death offer novel perspectives for therapeutic interventions, in particular in immunosuppressive and anti-cancer therapies. In this review, we examine some chemical, biological, and mechanistic aspects of two classes of apoptosis chemical inducers: oxysterols and alkylating agents. Oxysterols represent a vast family of oxygenated derivatives of sterols. Found in both animal and vegetal kingdoms, they can be considered as ultimate products of an oxidative stress, and are chemically inert. Some of them (7beta-hydroxycholesterol, 25-hydroxycholesterol and 7, 25-dihydroxycholesterol) are cytotoxic at micromolar concentrations towards normal and tumor cells in culture, particularly lymphocytes, and reduce the growth of murine transplanted tumors. Thus, possible applications of oxysterols in medicine as immunosuppressants or as anticancer agents may be considered. Alkylating agents, on the other hand, have been widely used in cancer chemotherapy for decades. There toxicity results from their high chemical reactivity, causing lesions to macromolecules through covalent linkage. Some representative members of this class, mainly bifunctional derivatives which possess dichloroethyl groups, such as Chlormethine, Cyclophosphamide and Chlorabucil, express a pronounced cytotoxicity against lymphoid cells, and have therefore potent immunosuppressive properties. Because they triggers apoptosis via both common and distinct mechanisms, oxysterols and alkylating agents provide unique tools for exploring the initiation of this phenomenon in lymphoid cells, and may help design novel pharmacological approaches based on apoptotic modulation of these cells.

Animals↗

Isolation and partial characterization of immunostimulating polysaccharides from Imperata cylindrica.

The water-soluble crude extract prepared from Imperata cylindrica (Beauv.) was investigated for its immunomodulating activity. A set of polysaccharides with high molecular weights has been isolated by fractionation using gel filtration and anion-exchange chromatography. Each step of purification was monitored by bioassays. The presence of six monosaccharides has been established by chemical analysis. Quantitative analysis showed that the ratio of these monosaccharides differed from one polysaccharide to another. The crude extract as well as some of the purified polysaccharides enhance the proliferation of murine splenocytes.

Adjuvants, Immunologic↗

Oxysterols, but not cholesterol, inhibit human immunodeficiency virus replication in vitro.

Oxysterols, oxygenated derivatives of cholesterol selected for their cytostatic activity and their inhibitory effect on cholesterol synthesis, have been investigated for their anti-human immunodeficiency virus (HIV) activity in vitro. The three oxysterols tested, 7 beta-hydroxycholesterol (7 beta-OHC), 25-hydroxycholesterol (25-OHC) and 7 beta, 25-dihydroxycholesterol (7,25-OHC), inhibit viral replication at micromolar concentrations. The selectivity indexes for 7 beta-OHC and 25-OHC are quite modest (2 to 8) but reproducible; the dihydroxycholesterol 7,25-OHC exhibited antiviral properties at concentrations 13- to 25-fold lower than the highest concentration tested at which no toxicity was measurable. Oxysterols are naturally occurring compounds, and we speculate on their physiological relevance in HIV-infected individuals.

Anti-HIV Agents↗

Solution structure of PMP-C: a new fold in the group of small serine proteinase inhibitors.

The solution structure and the disulfide pairings of a 36-residue proteinase inhibitor isolated from the insect Locusta migratoria have been determined using NMR spectroscopy and simulated annealing calculations. The peptide, termed PMP-C, was previously shown to inhibit bovine alpha-chymotrypsin as well as human leukocyte elastase, and was also found to block high-voltage-activated Ca2+ currents in rat sensory neurones. PMP-C has a prolate ellipsoid shape and adopts a tertiary fold hitherto unobserved in the large group of small "canonical" proteinase inhibitors. The over-all fold consists mainly of three strands arranged in a right-handed twisted, antiparallel, beta-sheet that demarcates a cavity, together with a linear amino-terminal segment oriented almost perpendicular to the three strands of the beta-sheet. Inside the cavity a phenyl ring constitutes the centre of a hydrophobic core. The proteinase binding loop is located in the carboxy-terminal part of the molecule, between two cysteine residues involved in disulfide bridges. Its conformation resembles that found in other small canonical proteinase inhibitors. A comparison of PMP-C structure with the recently published solution structure of the related peptide PMP-D2 shows that the most significant differences are complementary changes involved in the stabilization of similar folds. This comparison led us to review the structure of PMP-D2 and to identify two salt bridges in PMP-D2.

Amino Acid Sequence↗

Serine protease inhibition by insect peptides containing a cysteine knot and a triple-stranded beta-sheet.

Three insect peptides showing high sequence similarity and belonging to the same structural family incorporating a cysteine knot and a short three-stranded antiparalled beta-sheet were studied. Their inhibitory effect on two serine proteases (bovine alpha-chymotrypsin and human leukocyte elastase) is reported. One of them, PMP-C, is a strong alpha-chymotrypsin inhibitor (Ki = 0.2 nM) and interacts with leukocyte elastase with a Ki of 0.12 microM. The other two peptides, PMP-D2 and HI, interact only weakly with alpha-chymotrypsin and do not inhibit leukocyte elastase. Synthetic variants of these peptides were prepared by solid-phase synthesis, and their action toward serine proteases was evaluated. This enabled us to locate the P1 residues within the reactive sites (Leu-30 for PMP-C and Arg-29 for PMP-D2 and HI), and, interestingly, variants of PMP-D2 and HI were converted into powerful inhibitors of both alpha-chymotrypsin and leukocyte elastase, the most potent elastase inhibitor obtained in this study having a Ki of 3 nM.

Amino Acid Sequence↗

[From cholesterol to oxysterols. Current data].

Oxysterols, a class of cholesterol oxidation products exhibit several important biological activities. Some of these natural compounds are potent inhibitors of the enzyme HMG-CoA reductase, a key enzyme in the cholesterol biosynthetic pathway. Many studies have been directed towards to the verification of the hypothesis that some oxysterols are endogenous intracellular regulators of cholesterol homeostasis. In adition to oxysterols derived directly from oxidation of cholesterol, several others are formed from squalene dioxide. It is presently well established that, in addition to the classical cholesterol biosynthetic pathway, there exists an alternate bifurcation from squalene oxide. The cyclisation of squalene dioxide leads to a series of new oxysterols. Thus, several types of oxysterols and several molecular targets are involved in the regulation of steroid biosynthesis. Many oxysterols, particularly those obtained from the oxidations of phytosterols and tetracyclic triterpenes are potent cytotoxic agents. They are selectively cytotoxic against tumorous cells. This cytotoxicity depends markedly on the specific structure of each oxysterol. Some structures are very cytotoxic, while their stereoisomers are inactive. The activity depends on the tumor cells which are used in the assay system: some compounds display inhibitory activity towards hepatoma cells but are inactive against lymphoma cells while others act in the opposite manner. Free oxysterols do not depress tumor growth in living animals. However, several water soluble prodrugs of oxysterols are able to depress different type of tumors in vivo. Clinical trial studies are presently conducted in order to learn the therapeutic values of these oxysterols.

Adjuvants, Immunologic↗

Solution structure of PMP-D2, a 35-residue peptide isolated from the insect Locusta migratoria.

The three-dimensional solution structure of PMP-D2, a 35 amino acid peptide isolated from the insect Locusta migratoria, has been determined from two-dimensional 1H NMR spectroscopy data. The structure calculations were performed from 222 NOE-derived interproton distances and 11 dihedral angles calculated from the JHN-H alpha coupling constants, using either a combination of distance geometry and restrained simulated annealing or by restrained simulated annealing alone. PMP-D2 contains three disulfide bridges that have been assigned from NMR data and structure calculations and independently confirmed using chemical and enzymatic methods. The core region of PMP-D2 adopts a compact globular fold, stabilized by hydrophobic interactions, which consists of a short three-stranded antiparallel beta-sheet involving residues 8-11, 15-19, and 25-29. Back-calculation of the NOESY spectra was used to validate the final structures. Analysis of the CD spectra of PMP-D2 under various conditions of ionic strength and in the presence of organic solvents demonstrates the high stability of this molecule. PMP-D2 was recently shown to inhibit Ca2+ currents. This activity is discussed based on the comparison of PMP-D2 three-dimensional structure with the recently established three-dimensional structure of the Ca2+ channel blocker omega-conotoxin GVIA.

Amino Acid Sequence↗

Apoptosis induced by oxysterols in murine lymphoma cells and in normal thymocytes.

Oxygenated derivatives of cholesterol (oxysterols), a family of naturally occurring compounds, possess marked anti-proliferative and immunosuppressive activities, in particular they have been shown to inhibit T-cell responses to different stimuli. 25-Hydroxycholesterol (25-OHC) and 7 beta,25-dihydroxycholesterol (7.25-OHC) are able to kill not only RDM4 murine lymphoma in vitro, but also, surprisingly, mouse thymocytes after several hours of incubation. In this study, we report that the death of RDM4 and thymocytes induced by oxysterols exhibits the features of apoptosis. This phenomenon was identified by agarose gel electrophoresis of DNA fragments extracted from the cells and quantified by flow cytometric analysis of the DNA fluorescence of propidium iodide-stained cells. Cycloheximide and actinomycin D were found to decrease the number of apoptotic cells and to increase cell viability, indicating a requirement for the synthesis of macromolecules in oxysterol-induced programmed cell death. The pathway by which 25-OHC and 7.25-OHC are able to induce apoptosis in this type of cell and the possible contribution of these compounds to thymus involution during development are discussed.

Animals↗

Isolation and structural determination of three peptides from the insect Locusta migratoria. Identification of a deoxyhexose-linked peptide.

We have isolated three novel peptides from the aqueous extract of the pars intercerebralis of male and female adults of the insect Locusta migratoria. After extensive HPLC purification, the peptides were characterised by automated Edman degradation and electrospray mass spectrometry: one is a 35-residue peptide (3752.3 +/- 1.1 Da) containing six cysteines involved in three intramolecular disulfide bridges, the second is a 36-residue peptide (3919.2 +/- 0.9 Da), also cross-linked by three intramolecular disulfide bridges. This second peptide is post-translationally modified by a single fucose moiety, which was identified by gas chromatography coupled to mass spectrometry. These two peptides show a strong sequence similarity. Additionally, they were also found in larger amounts in the fat body of Locusta; this finding raises the question of their exact site of synthesis. The third peptide (5776.3 +/- 0.9 Da), a 54-residue peptide cross-linked by six intramolecular disulfide bridges, is structurally related to the two other peptides, but to a lesser extent. Mass spectrometry has shown that all the cysteines within these three peptides are involved in intramolecular disulfide bridges; however, the location of these bridges is not yet established and is currently being investigated. A computer search of sequence data banks did not reveal any significant similarity of these three peptides with other known proteins.

Amino Acid Sequence↗

Studies on the immunological effects of fatty alcohols--I. Effects of n-hexacosanol on murine macrophages in culture.

n-Hexacosanol (hexa), a long chain fatty alcohol extracted from Hygrophila erecta, has proved to possess neurotrophic activities on cultured neurons, and to attenuate the degeneration of cholinergic neurons after injury. In the present study, we show that hexa has also interesting properties on macrophages, a cell type largely represented in the brain: when added to mice resident peritoneal macrophages, it provokes significant morphological changes, and increases their phagocytosis capacity. These results may indicate that some membrane properties involved in these different effects and in macrophage functions are affected by n-hexacosanol, but other sites of action could also be considered.

Animals↗

Electrophysiological activity of the C-peptide of the Locusta insulin-related peptide. Effect on the membrane conductance of Locusta neurones in vitro.

The C-peptide of Locusta insulin-related peptide, which is a 50 residue peptide originally isolated from the corpora cardiaca of the insect Locusta migratoria and to which we refer as 5-kDa peptide, has been synthesised chemically by the solid-phase method, using a BOC strategy. Since this peptide contains in its sequence a potential monobasic cleavage site, we also synthesised its 1-38 residue-related fragment, named 4-kDa peptide, although we have no hints of its natural occurrence in the corpora cardiaca. Electrophysiological studies have shown that both the 5-kDa and 4-kDa peptides depolarise the membrane and increase the membrane conductance of neurones freshly isolated from the thoracic ganglia of Locusta. Under voltage-clamp conditions, the current underlying these effects was inwardly directed and could be resolved into 2 components. One component, I(5-kDa)1, activated at potentials more hyperpolarised than -50 mV, peaked at about -75 mV and was blocked by the potassium channel blockers cesium and rubidium. The second component, I(5-kDa)2 was activated at potentials more depolarised than -50 mV, increased with depolarisation and was not blocked by cesium and rubidium. The effects of the 5-kDa and 4-kDa peptides on the membrane potential and membrane conductance of Locusta neurones suggest that these peptides may have a physiological role in the central nervous system of insects.

Animals↗

Differential sensitivity of astrocyte primary cultures and derived spontaneous transformed cell lines to 7 beta-hydroxycholesterol: effect on plasma membrane lipid composition and fluidity, and on cell surface protein expression.

The cytotoxicity of 7 beta-hydroxycholesterol (7 beta-OHC) was investigated on rat astrocyte primary cultures and spontaneously transformed cell lines derived from them. Confluent astrocyte primary cultures (normal cells) were unaffected by 20 microM 7 beta-OHC over a period of 72 h whereas 30 microM markedly affected the viability of the transformed cells within the first 72 h. Both cell types incorporated 18% of the total amount of 7 beta-OHC added to the cultures at concentrations of 20 microM or 30 microM. Cellular fractionation after incubation with 20 microM or 30 microM 7 beta-OHC indicated that the plasma membrane incorporated 2 or 6 fold more 7 beta-OHC than the intracellular one's respectively. Plasma membrane cholesterol (CH) and phospholipid (PL) analysis showed that 20 microM 7 beta-OHC did not affect CH/PL in normal cells; in contrast, plasma membranes of transformed cells displayed a significant CH/PL decrease, which was more pronounced with 30 microM 7 beta-OHC treatment. Fluorescence anisotropy measurements indicated that 20 microM 7 beta-OHC slightly fluidified the plasma membrane of normal cells whereas it has not effect on that of the transformed cells one; however, an increase in plasma membrane fluidity was observed when the transformed cells were treated with 30 microM 7 beta-OHC. Lactoperoxidase catalyzed radioiodination of cell surface proteins and subsequent autoradioelectrophoretic analysis demonstrated that the labelled protein pattern was unchanged when both cell types were incubated with 30 microM 7 beta-OHC. These findings demonstrate that 7 beta-OHC is lethal to highly proliferating cultured glial cells. The high accumulation of 7 beta-OHC in the plasma membrane and its decrease in fluidity, by themselves, do not seem to be involved in the processes leading to cellular death. However, increase of plasma membrane fragility associated with the decrease of CH/PL, which occurs exclusively in plasma membranes isolated from 7 beta-OHC treated transformed cells together with high 7 beta-OHC uptake, are probably implicated in 7 beta-OHC cytotoxicity. The possibility of an additional action mechanism is discussed.

Animals↗

Revision of the amino acid sequence of the smallest bc1 complex subunit: use of fast atom bombardment mass spectrometry and mass-analysed ion kinetic energy spectrum analysis.

We have isolated the smallest bc1 complex subunit from an acidic chloroform/methanol extract of bovine cardiac muscle. The identification of the polypeptide was made possible by classical Edman degradation and amino acid analysis. The measurement of its exact molecular weight by fast atom bombardment mass spectrometry (m/z 6519.8), the characterization of a tryptophan cleavage peptide and pepsic peptides by mass measurements and by mass-analysed ion kinetic energy spectrum analysis allow rectification of the amino acid sequence of the smallest bc1 complex subunit. We found a serine residue instead of Gln 22 and tryptophan residues in place of Ser 34 and Ser 38.

Amino Acid Sequence↗

Oxysterols: biological activities and physicochemical studies.

To improve the understanding of the various biological activities of oxysterols (oxygenated derivatives of cholesterol), studies of their physicochemical properties have been undertaken. Oxysterols modify membrane dynamic properties which consequently trigger several biological effects. Despite the presence of at least one oxygenated group in addition to the C3 beta-hydroxyl, oxysterols insert perfectly into the lipidic bilayer of the membrane inducing a condensing effect similar to, but less potent than, that of cholesterol. In biological membranes oxysterols probably interact with membrane components as they are not easily exchanged after their incorporation into the cell membrane. These lipid-protein interactions are probably crucial for the expression of the biological activities of the oxysterols.

Cell Membrane↗