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Biomedical subjects

B Luu

Publications and source records attributed to B Luu.

At least 55 records · Page 3Linked to original sources

Neurotrophic effect of naturally occurring long-chain fatty alcohols on cultured CNS neurons.

A long-chain fatty alcohol,n-hexacosanol, that we have isolated from the Far-Eastern traditional medicinal plant, Hygrophila erecta, Hochr., is shown to promote the maturation of central neurons. Added at 500 nM to fetal rat brain neurons in culture, it increased both neurite outgrowth by a factor of 4-6 and the number of collaterals, especially in multipolar neurons. The biochemical differentiation of cultured neurons was also strikingly enhanced by this compound: it increased the protein content and almost doubled the activities of two neuron-specific enzymes, phosphate-activated glutaminase and neuron-specific enolase, by 92 and 78%, respectively. Extensive studies with several synthetic long-chain fatty alcohols showed that the neurotrophic activity was maximal for n-hexacosanol. It is suggested that some long-chain fatty alcohols with an appropriate length of hydrocarbon chain might play an important role in central neuron development.

Animals↗

[The DM-20 proteolipid is a major protein of the brain. It is synthetized in the fetus earlier than the major myelin proteolipid (PLP)].

By studying highly purified CNS proteolipids, we have shown that DM-20 proteolipid, which was considered, until now, to be a minor brain proteolipid is, in fact, almost as abundant as the Major Myelin Proteolipid known also as Proteolipid Protein (PLP). DM-20 proteolipid is even the major brain proteolipid in young foetuses. It is only during myelinisation that the "Proteolipid Protein" increases rapidly and becomes equivalent in weight to DM-20 proteolipid. This study raises the question of the particular function of DM-20 proteolipid.

Animals↗

A specific immunological probe for the major myelin proteolipid. Confirmation of a deletion in DM-20.

Major myelin proteolipid (MMPL, also called PLP) and DM-20 are the two major intrinsic membrane proteins of CNS myelin. A specific immunological probe was obtained for MMPL by raising antibodies against the synthetic tridecapeptide 117-129 of MMPL. Antibodies against this peptide reacted with the MMPL but did not cross react with DM-20, while both proteolipids had been shown previously to be recognized by antibodies directed against the C-terminal hexapeptide of MMPL. This is in accordance with previous findings showing that DM-20 differs only from MMPL by a deletion of residues 100-140 (+/- few units). Furthermore, this site-specific immunological probe also recognizes MMPL in its native form in oligodendrocytes in primary glial cell cultures.

Amino Acid Sequence↗

Purification and characterization of minor brain proteolipids: use of fast atom bombardment-mass spectrometry for peptide sequencing.

A combination of lipophilic gel permeation chromatography and ion-exchange chromatography in organic solvents was used to purify low molecular weight proteolipids from bovine brain. Cleavage peptides were purified by HPLC and studied mainly by the fast atom bombardment--mass spectrometry technique. A proteolipid of Mr 14 000 contains several peptides from the first 113 amino acids of the major myelin proteolipid (MMPL) plus an extra unknown blocked N-terminal peptide. A proteolipid of Mr 16 000 contains smaller peptides belonging to a C-terminal fragment of MMPL of about 160 residues. These two proteolipids do not seem to be artifacts from MMPL.

Amino Acids↗

Selective extraction of the DM-20 brain proteolipid.

Brain DM-20 proteolipid was previously shown to be structurally different from the myelin major proteolipid (MMPL). In an attempt to set up a large-scale purification of DM-20, we studied extraction of brain proteolipids with mixtures of methylene chloride containing up to 80% methanol. The CH2Cl2-CH3OH (3:7, vol/vol) mixture is highly selective for the extraction of bovine brain DM-20 compared to MMPL. Purified DM-20 was obtained after chromatography of the extract on methylated Sephadex.

Animals↗

Comparative effects of 7 beta-hydroxycholesterol towards murine lymphomas, lymphoblasts and lymphocytes: selective cytotoxicity and blastogenesis inhibition.

The effects of 7 beta-hydroxycholesterol on lymphoma cells in culture, on lymphocytes entering blastic transformation and on quiescent murine spleen lymphocytes have been investigated. The early events of blastogenesis as well as YAC-1, RDM-4 and EL-4 cells were shown to be very sensitive to this sterol at microM concentration, whereas constituted lymphoblasts and normal lymphocytes remained insensitive at 50 times higher concentration. The effect of some classical antitumor drugs (Adriamycin, Mitomycin-C, Methotrexate) on these lymphoma cells were of the same order of magnitude. However, the activity of 7 beta-hydroxycholesterol was closely related to the composition of the culture medium. Indeed, the cytotoxic effects of this compound were less in medium supplemented with foetal calf serum than in lipoprotein poor, Ultroser-G supplemented medium. The possible impairment of the same, or closely related, events occurring in blastic transformation and in rapid proliferation of cells is pointed out. Our results raise the question of the possible use of these compounds for an antitumor strategy.

Animals↗

Conversion of a radiolabelled ecdysone precursor, 2,22,25-trideoxyecdysone, by embryonic and larval tissues of Locusta migratoria.

A high specific activity tritiated ecdysone precursor, 2,22,25-trideoxyecdysone, was used to probe the capacity of various embryonic and larval tissues to perform the last 3 hydroxylation steps in ecdysone biosynthesis. Embryos at early stages of development, prior to the differentiation of their endocrine glands and embryonic heads, thoraces and abdomens of later stages, were found to have the capacity to hydroxylate the precursor to ecdysone. Larval epidermis and fat body are also able to transform 2,22,25-trideoxyecdysone into ecdysone; Malpighian tubules and midgut hydroxylate the precursor at C-2 but are apparently unable to hydroxylate both at C-22 and C-25. Larval prothoracic glands convert the precursor to ecdysone at a very efficient rate, which is 1-2 magnitudes higher than that of the other tissues investigated; several data argue for the existence of a privileged sequence of hydroxylations, C-25, C-22, C-2, in the larval prothoracic glands.

Abdomen↗

[In vivo antitumor activity of hydrosoluble derivatives of 7-hydroxycholesterols].

Sodium bis-hemisuccinates of 7 beta- and 7 alpha-hydroxycholesterols are moderately water-soluble. They have been tested intraperitoneally against the murine Krebs-II carcinoma, grown as an ascitic tumour, and their action has been compared with that of usual chemotherapeutic drugs, cyclophosphamide, 5-fluoro-uracil, and methotrexate. The hydroxycholesterol derivatives show a faster and stronger activity (life prolongation), and lead to the complete disappearance of the tumour in about 1/3 of the cases, even with one single injection. Similar results have been obtained (on fewer cases) with two other experimental ascitic tumours, the S-180 sarcoma and the ZHC hepatoma. The mechanism of action is not known; it appears to be very different from that of the usual anti-cancer chemotherapeutic agents.

Animals↗

[Structural data on the myelin proteolipid of apparent molecular weight 20 kDa (DM-20)].

By a combination of chromatographic methods, we have obtained in an apparently homogeneous state the 24 kDa "major myelin proteolipid" (MMPL) and the 20 kDa "myelin proteolipid" (DM-20). Contrary to a commonly held view, the second one is not a conformationally different form of its major companion, as it differs markedly by its amino-acid composition, its electrophoretic behaviour after performic acid oxidation, and the results of tryptic digestion; however, they are obviously very closely related, as shown by the selective cleavages at the level of methionines and tryptophanes. These results are most simply interpreted by a single deletion in DM-20 of the hydrophilic fragment 100-140 of the (known) structure of the 24 kDa proteolipid. Lees' hypothesis of a deletion of fragment 197-267 cannot be retained.

Chemical Phenomena↗

Antagonist action of cholesterol towards the toxicity of hydroxysterols on cultured hepatoma cells.

The cytostatic and cytolytic action of 22R - hydroxydesmosterol on hepatoma cells cultured in a medium containing 10% newborn-calf serum can be reversed within certain concentration limits by adding cholesterol to the culture medium. In contrast, under the same conditions, the cytotoxicity of 7 beta -hydroxycholesterol could not be reversed, whatever the concentrations of cholesterol added. However, in a lipoprotein-poor and in a chemically defined medium, the cytolytic action of both hydroxysterols can be reversed by adding cholesterol, but growth inhibition cannot be suppressed. This demonstrates the importance of serum lipids and lipoproteins for the toxicity of the hydroxysterols and for the antagonistic effect of cholesterol. Our results suggest that the action mechanisms of 7 beta-hydroxycholesterol and 22R - hydroxydesmosterol on HTC hepatoma cells are not fully identical.

Animals↗

Growth-rate-related and hydroxysterol-induced changes in membrane fluidity of cultured hepatoma cells: correlation with 3-hydroxy-3-methyl glutaryl CoA reductase activity.

3-hydroxy-3-methylglutaryl-coenzyme A reductase (EC 1.1.1.3.4.) activity and cell membrane fluidity measured by fluorescence polarization using 1,6 diphenyl, 1,3,5-hexatriene as fluorescent probe have been concomitantly examined in HTC hepatoma cells, both in relation to growth rate and in response to treatment with hydroxylated sterols. A high level of HMG-CoA reductase activity was observed in cells at log phase of growth which progressively decreased to reach a sustained low level at stationary phase. Similarly, membrane fluidity markedly decreased in relation to growth rate. Hydroxylated sterols such as 7 beta-hydroxycholesterol or 25-hydroxycholesterol strongly inhibited HMG-CoA reductase activity whereas a water-soluble derivative of 7 beta-hydroxycholesterol sodium 3,7-bishemisuccinate had no effect. Within the same range of concentrations 7 beta-hydroxycholesterol and 25-hydroxycholesterol strongly decreased membrane fluidity when the water-soluble derivative was ineffective. Thus, the present results provide evidence for a correlation between the two tested parameters and suggest a dependency of HMG-CoA reductase activity on cell membrane fluidity.

Animals↗

Intrinsic fluorescence of a non-myelin apoproteolipid and evidence for the existence of conformational flexibility.

An extremely hydrophobic protein (Mr = 16000), which in its native form is only soluble in organic solvents and which differs from the myelin proteolipid (Mr = 24000), was purified to homogeneity. Intrinsic fluorescence studies on this apoproteolipid have revealed a large conformational flexibility. In the water-soluble form the emitting residues appear to be buried in a hydrophobic core while in organic solvents they are exposed to the external medium. Structural changes depending on the organic solvent are also observed. The emission characteristics of reconstituted proteoliposomes may be due to the formation of a membrane-linked complex between several proteolipid monomers.

Journal Article↗

[Differential action of 7 beta-hydroxycholesterol on myocardial cells and fibroblasts. Obtaining primary cultures of pure myocardial cells].

Newborn rat myocardial cells, grown in primary cultures, beat synchronously. Addition of 7 beta-hydroxycholesterol, at a 2.5 microM concentration, impairs this synchrony and may even stop any contraction. The associated fibroblasts no longer adhere to the support, and can be washed away by fresh culture medium. This restores the synchronous beatings of the myocardial cells, the viability of which is then even improved while they grow in the absence of fibroblasts.

Animals↗

The importance of serum lipoproteins in the cytolytic action of 7 beta-hydroxycholesterol on cultured hepatoma cells.

The toxicity of 7 beta-hydroxycholesterol for cultured HTC cells is 10 times greater if serum lipids and lipoproteins are absent from the culture medium. A water-soluble derivative of 7 beta-hydroxycholesterol, sodium 3,7-bishemisuccinate, showed the same toxicity as the original molecule and was also 8 times more toxic when serum lipids and lipoproteins were absent. But the rapid inhibition of DNA synthesis was similar in cells treated with both compounds, whether lipids and lipoproteins are present or not. Thus the absence of serum lipids and lipoproteins enhances the lytic effect of both substances but does not increase their intracellular action on DNA synthesis. This first parallel study on lipophilic 7 beta-hydroxycholesterol and its water-soluble homologue shows the importance of the serum lipids and lipoproteins in the cytotoxicity of such sterols.

Animals↗

Brain proteolipids. Isolation, purification and effect on ionic permeability of membranes.

Proteolipid apoproteins have been isolated from a whole bovine brain homogenate by chloroform/methanol extraction, and fractionated by chromatography on modified (lipophilic) Sephadex, followed by ion-exchange chromatography on CM-Trisacryl. The various final, highly hydrophobic, fractions are homogeneous (sodium dodecyl sulfate/polyacrylamide gel electrophoresis). Transmembrane ion transfers were studied by 22Na + flux and electrical conductance measurements. Single channel events were observed at low protein concentrations, in particular with one of the final homogeneous apoproteolipids of molecular mass 24 kDa.

Amino Acids↗

Isolation and purification of dicyclohexylcarbodiimide-reactive proteolipid from Bacillus subtilis membrane.

The membrane-bound ATPase activity of Bacillus subtilis was inhibited by dicyclohexylcarbodiimide (DCCD). The DCCD-reactive proteolipid of B. subtilis was extracted, from labelled or untreated membranes containing F1 or depleted of F1, with neutral or acidic chloroform/methanol. Purification of the [14C]DCCD-binding proteolipid was attempted by column chromatography on methylated Sephadex G-50 and on DEAE-cellulose. The maximal amount of DCCD which could be bound to the purified proteolipid was found to exceed the amount bound by the purified proteolipid extracted from membranes labelled with the lowest [14C]DCCD concentration required for maximal inhibition of the membrane-bound ATPase activity. The radioactive protein peaks eluted by gel filtration and ion-exchange chromatography were analysed by urea-SDS polyacrylamide slab gel electrophoresis and autoradiography. Radioactivity was incorporated into two components of Mr 18 000 and 6000 when proteolipid was purified by methylated Sephadex. The 6000 polypeptide was always present, whatever the extraction and purification procedures. However, the 18 000 polypeptide was present in largest quantity only when proteolipid was extracted from membranes containing F1 and purified by methylated Sephadex. When proteolipid was purified on DEAE-cellulose this [14C]DCCD binding component of Mr 18 000 was absent.

Adenosine Triphosphatases↗