The synthesis of three series of quinol fatty alcohols (QFAs) and their biological activities on the promotion of axonal growth are described. Interestingly, the 15-(2,5-dimethoxyphenyl)pentadecan-1-ol, the QFA bearing 15 carbon atoms on the side chain (n=15), shows the most potent promotion of axonal growth in the presence of both permissive and non-permissive naturally occurring substrates such as Sema3A and myelin proteins.
Neural stem cells cultured as neurospheres were used to assess the effects of P. notoginseng on the production of neurons and glia. The crude saponins (PNS) and ginsenoside-Rd promote the differentiation of neurospheres into astrocytes. Ginsenoside-Rd increases the production of astrocytes in a dose-dependent manner. On the other hand, both PNS and ginsenoside-Rd induce a weak but significant effect by decreasing the number of neurons. The other ginsenosides do not induce any differentiation on both neurons and astrocytes.
The synthesis of a series of Tocopherol long chain Fatty Alcohols (TEA) and their biological activities on the modulation of microglial activation are described. Specifically, the 2-(12-hydroxy-dodecyl)-2,5,7,8-tetramethyl-chroman-6-ol, the TEA bearing 12 carbon atoms on the side chain (n = 12), shows the most potent inhibition of secretion on nitric oxide (NO) and tumour necrosis factor-alpha (TNF-alpha) by lipopolysaccharide (LPS)-activated microglia. (C) 2004 Elsevier Ltd. All rights reserved.
In a search for inducers of neuronal differentiation to treat neurodegenerative diseases such as Alzheimer's disease, a series of indole fatty alcohols (IFAs) were prepared. 13c (n = 18) was able to promote the differentiation of neural stem cell derived neurospheres into neurons at a concentration of 10 nM. Analysis of the expression of the Notch pathway genes in neurospheres treated during the differentiation phase with 13c (n = 18) revealed a significant decrease in the transcription of the Notch 4 receptor.
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.
The crystal structures of two homologous inhibitors (PMP-C and PMP-D2v) from the insect Locusta migratoria have been determined in complex with bovine α-chymotrypsin at 2.1- and 3.0-Å resolution, respectively. PMP-C is a potent bovine α-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 α-chymotrypsin inhibitor. The two peptides have a similar overall conformation, which consists of a triple-stranded antiparallel β-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 α-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).
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.
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, 7β-hydroxycholesterol (7β-OHC), 25-hydroxycholesterol (25-OHC) and 7β,25-dihydroxycholesterol (7,25-OHC), inhibit viral replication at micromolar concentrations. The selectivity indexes for 7β-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.
The four diastereomers 3 , elongated analogues of perhydroretinol, are synthesized starting from both optically pure 3-bromo-2-methyl-1-propanol enantiomers. All exhibit neurotrophic activity on cultured neuronal cells derived from fetal rat cerebral hemispheres.
The solution structure and the disulfide pairings of a 36-residue proteinase inhibitor isolated from the insectLocusta migratoriahave been determined using NMR spectroscopy and simulated annealing calculations. The peptide, termed PMP-C, was previously shown to inhibit bovine α-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, β-sheet that demarcates a cavity, together with a linear amino-terminal segment oriented almost perpendicular to the three strands of the β-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.
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.
Three insect peptides showing high sequence similarity and belonging to the same structural family incorporating a cysteine knot and a short three-stranded antiparallel 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 (K-i = 0.2 nM) and interacts with leukocyte elastase with a K-i of 0.12 mu M. 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-DB and RI were converted into powerful inhibitors of both alpha-chymotrypsin and leukocyte elastase, the most potent elastase inhibitor obtained in this study having a K-i of 3 nM.
PMP-D2, a novel 35 amino acid peptide isolated from the brain of the locust Locusta migratoria, is localised specifically in neurosecretory cells and nerve tracts of the Pars intercerebralis. When PMP-D2 is applied onto rat sensory neurones it blocks high voltage-activated inward Ca2+ currents at concentrations ranging from 0.1 mu M to 10 mu M. The inhibitory effect of PMP-D2 is more marked on the sustained inward Ca2+ current measured at the end of 100 ms voltage step commands than on the maximum inward Ca2+ current. These results suggests that PMP-D2 may differentially inhibit the two components of the high voltage-activated inward Ca2+ currents of rat sensory neurones.
PMP-D2, a 35-residue peptide containing three disulfide bonds, was synthesized on solid-phase using 9-fluorenylmethoxy-carbonyl (Fmoc) as alpha-NH2 protection and simultaneous air oxidation of the six cysteines for formation of its disulfide bonds. The overall yield was 13%. As very little research has been done on the regioselective formation of three disulfide bonds, we decided to investigate different strategies using either trityl (Trt), acetamidomethyl (Acm) and methoxybenzyl (Mob), or methoxytrityl (Mmt), trityl and acetamidomethyl, as cysteine-protecting groups and Fmoc as alpha-NH2 protection. In the first strategy, the first disulfide bond was formed by air oxidation and the second was formed by iodine oxidation of the Cys(Acm). Then, the Cys (Mob) was deprotected using TFMSA/TFA treatment for formation of the third disulfide bond. This last step was poorly reproducible on a large scale. The overall yield was 2.5%. In the second strategy, the first disulfide was formed on the resin after removal of the methoxytrityl group, and the two remaining disulfide bonds were formed classically in solution. The overall yield was 2%. From the overall yields using these strategies, it appears clear that simultaneous oxidation of the six cysteines is particularly appropriate for the synthesis of PMP D2.
Acetylenic derivatives of cholesterol designed to be inhibitors of ecdysteroid biosynthesis were prepared. The side chains of these compounds differ additionally from that of cholesterol by stereochemical modifications at C-17 and C-20. A bicyclic acetylenic compound containing the partial structure of the C and D rings of the cholesterol nucleus was also synthesized. These compounds were devised with the aim of inhibiting the C-22 hydroxylation of ecdysone biosynthesis by a suicide substrate mechanism. One of these molecules inhibits very efficiently the synthesis of ecdysone in prothoracic glands in vitro.
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