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Query: UNIPROT:Q9UMR3 (
NMR
)
150,598
document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)
A chemoenzymatic synthesis of the C(21)-C(27) fragment of the marine macrolide family of bryostatin antibiotics is presented. The approach commences from achiral starting materials and has as its crucial step the enzymatic resolution of a racemic mixture of soluble polymer-supported alcohols (syn-10 and syn-11). The immobilized
lipase
from Candida antarctica (Novozym 435) catalyzes the enantioselective acetylation of syn-10 (in 40% conversion and >99% ee), allowing isolation of the key intermediate (R)-14 in enantiomerically pure form following its cleavage from the poly(ethylene) glycol (PEG) scaffold. The PEG matrix is both compatible with the multipolymer enzymatic transformation and allows for rapid purification and facile
NMR
characterization of all intermediates throughout the synthesis.
...
PMID:Soluble polymer-supported chemoenzymatic synthesis of the C(21)-C(27) fragment of the bryostatins. 1111 72
The interaction between a charged surfactant and a
lipase
has been investigated by several methods. Interactions in aqueous bulk phase was studied by
NMR
and by microcalorimetry. Surface tension and neutron reflectivity were used for studies at the air-water interface. Interactions at the interface between a hydrophobic solid surface and water was investigated by ellipsometry. The results obtained are as follows. The cationic surfactant, tetradecyltrimethylammonium bromide (iodide in the
NMR
experiments), showed strong interaction at the air-water and the hydrophobic solid-water interfaces but no clear indication of an interaction in bulk phase was seen. The anionic surfactant showed no interaction with the
lipase
neither at the interfaces, nor in bulk. The difference in behavior of the system cationic surfactant-
lipase
in bulk and at the interfaces may be due to the change in enzyme conformation that is known to occur at interfaces between water and an apolar phase.
...
PMID:Interactions between a lipase and charged surfactants--a comparison between bulk and interfaces. 1118 99
The cyclic derivative of 13(S)-hydroperoxolinolenic acid, 12-oxophytodienoic acid, serves as a signal transducer in higher plants, mediating mechanotransductory processes and plant defenses against a variety of pathogens, and also serves as a precursor for the biosynthesis of jasmonic acid, a mediator of plant herbivore defense. Biosynthesis of 12-oxophytodienoic acid from alpha-linolenic acid occurs in plastids, mainly in chloroplasts, and is thought to start with free linolenic acid liberated from membrane lipids by
lipase
action. In Arabidopsis thaliana, the glycerolipid fraction contains esterified 12-oxophytodienoic acid, which can be released enzymatically by sn1-specific, but not by sn2-specific, lipases. The 12-oxophytodienoyl glycerolipid fraction was isolated, purified, and characterized. Enzymatic, mass spectrometric, and
NMR
spectroscopic data allowed us to establish the structure of the novel oxylipin as sn1-O-(12-oxophytodienoyl)-sn2-O-(hexadecatrienoyl)-monogalactosyl diglyceride. The novel class of lipids is localized in plastids. Purified monogalactosyl diglyceride was not converted to the sn1-(12-oxophytodienoyl) derivative by the combined action of (soybean) lipoxygenase and (A. thaliana) allene oxide synthase, an enzyme ensemble that converts free alpha-linolenic acid to free 12-oxophytodienoic acid. When leaves were wounded, a significant and transient increase in the level of (12-oxophytodienoyl)-monogalactosyl diglyceride was observed. In A. thaliana, the major fraction of 12-oxophytodienoic acid occurs esterified at the sn1 position of the plastid-specific glycerolipid, monogalactosyl diglyceride.
...
PMID:A novel class of oxylipins, sn1-O-(12-oxophytodienoyl)-sn2-O-(hexadecatrienoyl)-monogalactosyl Diglyceride, from Arabidopsis thaliana. 1127 36
Enzymatic hydrolysis of a mixture of (chloromethyldimethylsilyl)-2-propenyl acetate isomers was investigated by using immobilized Candida antarctica
lipase
as biocatalyst. TLC analysis and 1H
NMR
spectroscopy were used to monitor the extent of the reaction. At 60 degrees C, the enzyme exhibited a high selectivity towards 3-(chloromethyldimethylsilyl)-2-propenyl acetate which was almost quantitatively hydrolyzed, whereas, only 11% of 2-(chloromethyldimethylsilyl)-2-propenyl acetate reacted with the
lipase
. Consequently, the unreacted acetate was readily purified from the reaction medium by flash column chromatography and deacetoxylated in acidic methanol to give the corresponding hydroxy compound in a 71% global yield. On the other hand, without
lipase
, chemical treatment of the acetate mixture resulted in much lower yields in hydroxy compounds followed by a tedious purification process.
...
PMID:Enzymatic hydrolysis of (chloromethyldimethylsilyl)-2-propenyl acetate isomers: atypic specificity of Candida antarctica lipase. 1160 73
Enzymatic copolymerization of lactones, divinyl esters, and glycols has been performed using
lipase
as catalyst to produce ester copolymers. The monomers used in this study were 12-, 13-, and 16-membered lactones, divinyl esters of adipic and sebasic acids, and alpha,omega-glycols. Candida antarctica and Pseudomonas cepacia lipases showed relatively high catalytic activity for the present copolymerization, yielding the copolymer having relatively high molecular weight in moderate yields. From 13C
NMR
analysis, the resulting product was not a mixture of homopolymers, but a copolymer derived from the monomers.
NMR
data and reaction monitoring results indicate that two different modes of polymerization, ring-opening polymerization and polycondensation, simultaneously take place through enzyme catalysis in one-pot to produce ester copolymers.
...
PMID:Enzymatic synthesis of polyesters from lactones, dicarboxylic acid divinyl esters, and glycols through combination of ring-opening polymerization and polycondensation. 1171 Jan 21
Racemates of cis- and trans-2-cyanocyclopentanol and -cyclohexanol, cis- and trans-2-dialkylaminomethylcyclopentanol, -cyclohexanol and -cycloheptanol and Boc-protected cis- and trans-2-methylhydrazinocyclopentanol and -cyclohexanol were resolved through
lipase
PS (from Pseudomonas cepacia) or Novozym 435 (from Candida antarctica B)-catalysed asymmetric acylation. High enantioselectivity (E > 200) was observed when vinyl acetate was used as acylating agent, with diethyl ether or with diisopropyl ether as solvent. Reaction rates were markedly affected by the solvent and by the quantity of the enzyme. The size of the cycloalkane ring had a clear effect on the rate of enantioselective acylation: the acetylations of the five-membered cycloalcanols proceeded more rapidly than those of the six-membered ones and much more rapidly than those of the seven-membered systems. It can also be concluded that the trans isomers react more rapidly than the cis counterparts, the only exception being found in the case of 2-cyanocyclohexanols. In good correlation with the "Kazlauskas rule", in all cases, the (R) enantiomer is acylated faster than the (S) enantiomer, yielding an (R) ester and an (S) alcohol, which products from large-scale experiments were separated by column chromatography. During these studies, a total of 18 racemates of cis- and trans-2-substituted cycloalkanols were resolved by using lipases as catalysts, and 52 enantiomers (50 of them new) were characterized by
NMR
, elemental analysis and ocasionally MS.
...
PMID:[Lipase-catalyzed kinetic resolution of 2-substituted cycloalkanols]. 1176 92
Three putative intermediates in the biosynthesis of the
lipase
inhibitor lipstatin were synthesized in stable isotope-labeled form and were added to fermentation cultures of Streptomyces toxytricini. Biosynthetic lipstatin was isolated and analyzed by
NMR
spectroscopy. [3,10,11,12-(2)H]-(3S,5Z,8Z)-3-hydroxytetradeca-5,8-dienoic acid (9) was shown to serve as a direct biosynthetic precursor of lipstatin. [7,8-(2)H(2)]Hexylmalonate (11) was also incorporated into lipstatin, albeit at a relatively low rate. The leucine moiety of [(13)C-formyl,(15)N]-N-formylleucine (10) was diverted to lipstatin under loss of the (13)C-labeled formyl residue.
...
PMID:Biosynthetic precursors of the lipase inhibitor lipstatin. 1192 37
Ethylglucoside lactate, a novel Alpha-Hydroxy Acids Derivative, was synthesized by transesterification in non-aqueous phase using immobilized
lipase
as biocatalyst. Based on the studies of the factors effecting initial rate and conversion under atmospheric pressure (solvent, acyl donor, different immobilized
lipase
, substrate concentration, enzyme concentration and temperature), the results show that solvent-free medium using butyllactate as acyl donor is suitable to the ester synthesis. The reaction conditions have been optimized as the following: the amount of enzyme = 75 g/L, the ethylglucoside concentration = 0.4 mol/L, 70 degrees C, 200 r/min, 50 h, which the conversion was 71%. A 90% conversion and a 60.7 mmol.L-1.h-1 initial rate can be obtained under reduced pressure, which the conditions are enzyme 75 g/L, ethylglucoside 0.35 mol/L, 65 degrees C, 200 r/min and 40 h. The product purified by extraction and SIO2 chromatography was identified by infrared spectroscopy and 1H
NMR
.
...
PMID:[Studies on lipase-catalyzed synthesis of ethylglucoside lactate in non-aqueous phase]. 1197 9
Block copolymers were prepared by ring-opening polymerization of epsilon-caprolactone in the presence of monohydroxyl or dihydroxyl poly(ethylene glycol) (PEG), using Zn powder as catalyst. The resulting poly(epsilon-caprolactone) (PCL)-PEG diblock and PCL-PEG-PCL triblock copolymers were characterized by various analytical techniques such as
NMR
, size-exclusion chromatography, differential scanning calorimetry, and X-ray diffraction. Both copolymers were semicrystalline polymers, the crystalline structure being of the PCL type. Films were prepared by casting dichloromethane solutions of the polymers on a glass plate. Square samples with dimensions of 10 x 10 mm were allowed to degrade in a pH = 7.0 phosphate buffer solution containing Pseudomonas
lipase
. Data showed that the introduction of PEG blocks did not decrease the degradation rate of poly(epsilon-caprolactone).
...
PMID:Enzymatic degradation of block copolymers prepared from epsilon-caprolactone and poly(ethylene glycol). 1200 24
Enzymatic degradability has been investigated for a series of bacterial poly(3-hydroxybutyrate-co-3-hydroxypropionate)s (P(3HB-co-3HP)s) with 3-hydroxypropionate (3HP) unit contents from 11 to 86 mol % as well as poly(3-hydroxybutyrate) (P(3HB)) and chemosynthesized poly(3-hydroxypropionate) (P(3HP)). The behavior of degradation by two types of extracellular poly(3-hydroxyalkanoate) (PHA) depolymerases purified from Ralstonia pikettii T1 and Acidovorax Sp. TP4, defined respectively as PHA depolymerase types I and II according to the position of the
lipase
box in the catalytic domain, were compared in relation to the thermal properties and crystalline structures of the PHA samples elucidated by differential scanning calorimetry and wide-angle X-ray diffraction. The degradation products were characterized by high-performance liquid chromatography and one- (1D) and two-dimension (2D) (1)H
NMR
spectroscopy. It was found that the PHA depolymerase of Acidovorax Sp. TP4 showed degradation behavior different from that shown by depolymerase of R. pikettii T1. PHA depolymerase from Acidovorax Sp. TP4 degraded the P(3HB-co-3HP) films with lower crystallinity in higher rates than those with higher crystallinity, no matter what kinds of crystalline structures they formed. In contrast, PHA depolymerase from R. pikettii T1 degraded P(3HB-co-3HP) films forming P(3HB) crystalline structure in higher rates than those forming P(3HP)s. The increase in amorphous nature of the P(3HB-co-3HP) films with P(3HB)-homopolymer-like crystalline structure increases and then decreases the rate of degradation by depolymerase from R. pikettii T1. The 3-hydroxybutyrate (3HB) monomer was produced as a major product by the hydrolysis of P(3HB) film by PHA depolymerase from Acidovorax Sp. TP4. The P(3HB-co-3HP) films could be degraded into 3HB and 3-hydroxypropionate (3HP) monomer at last, indicating that the catalytic domain of the enzyme recognized at least two monomeric units as substrates. While the PHA depolymerase from R. pikettii T1 hydrolyzed P(3HB) film into 3HB dimer as a major product, and the catalytic domain recognized at least three monomeric units. The degradation behavior of P(3HB-co-3HP) films by the PHA depolymerase of Acidovorax Sp. TP4 could be distinguished from that by the depolymerase of R. pikettii T1.
...
PMID:Enzymatic hydrolysis of bacterial poly(3-hydroxybutyrate-co-3-hydroxypropionate)s by poly(3-hydroxyalkanoate) depolymerase from Acidovorax Sp. TP4. 1209 29
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