Gene/Protein
Disease
Symptom
Drug
Enzyme
Compound
Pivot Concepts:
Gene/Protein
Disease
Symptom
Drug
Enzyme
Compound
Target Concepts:
Gene/Protein
Disease
Symptom
Drug
Enzyme
Compound
Query: CAS:75-07-0 (
aldehyde
)
25,023
document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)
We have studied the binding nature of an aromatic
aldehyde
to the catalytic site of liver alcohol dehydrogenase from horse (LADH) using preresonance Raman spectroscopy. The compound p-(dimethylamino)
benzaldehyde
(DABA) is converted to the corresponding alcohol in the presence of nicotinamide adenine dinucleotide (NADH) and a catalytic amount of enzyme at neutral pH. A stable ternary complex of LADH/NADH/DABA can be formed if enzyme and coenzyme are in excess at high pH [Jagodzinski, P. W., Funk, G. F., & Peticolas, W. L. (1982) Biochemistry 21, 2193-2202]. We have obtained the preresonance Raman spectrum of bound DABA by subtracting the contribution of the binary complex of LADH/NADH from the spectrum of this stable ternary complex. In order to understand the normal mode patterns of DABA, four isotopically labeled DABA derivatives were synthesized and their Raman spectra, in solution and in the ternary complex, were measured. Three of these compounds contain substitutions in the functionally important
aldehyde
moiety: (i) In one such substitution, the aldehydic hydrogen atom was replaced by a deuterium; (ii) in another, this hydrogen atom was replaced by deuterium, and the aldehydic carbon atom was replaced by 13C; and (iii) in the third derivative, only the carbon atom was replaced by 13C. The fourth derivative has had the two hydrogen atoms at the 3- and 5-positions of the DABA ring replaced by deuterium atoms. We find that many of the spectral modes are fairly extended, involving both stretching and bending motions of the entire molecule, although a few modes are quite localized. We find that the normal mode structure of DABA changes considerably when it binds to LADH/NADH. As a model for the bound DABA, we have examined the zinc complexes of DABA (and all four isotopically labeled samples) in anhydrous diethyl ether and methylene chloride. A striking correspondence between the Raman spectra of the enzyme-bound DABA and DABA-Zn complexes in solution is found, which extends to all the isotopically labeled derivatives. This suggests that one of the major roles of LADH in the binding of DABA is to provide a divalent zinc ion to form a first-sphere Lewis acid complex. The data also suggest other interactions between enzyme-bound DABA with its protein surroundings and with the coenzyme NADH are quite minor. An estimate of the carbonyl bond character of bound DABA had been made on the basis of the response of Raman bands to isotopic labeling and on trends observed in spectra of DABA in solvents of various polarities.(ABSTRACT TRUNCATED AT 400 WORDS)
...
PMID:Molecular properties of p-(dimethylamino)benzaldehyde bound to liver alcohol dehydrogenase: a Raman spectroscopic study. 340 20
We have synthesized acetal and ketal derivatives of 4'-demethylepipodophyllotoxin-beta-D-glucoside (DMEPG) and epipodophyllotoxin-beta-D-glucoside (EPG) with a number of different aldehydes (viz.
acetaldehyde
, propionaldehyde, 2-thiophenecarboxaldehyde, 3-thiophenecarboxaldehyde, 2-furancarboxaldehyde,
benzaldehyde
, phenylacetaldehyde, hydrocinnamaldehyde) and acetone. The cross resistance of these compounds towards a set of Chinese hamster ovary cell mutants resistant to either podophyllotoxin (PodR mutants) or VM26 (VpmR mutants) which exhibit mutually exclusive cross-resistance patterns toward compounds that show either podophyllotoxin- or VM26-like activities have been examined. Results of our studies show that, with the exception of 2-furan derivatives, all the remaining acetals and ketals of DMEPG and EPG showed similar cross-resistance patterns towards the VpmR and the PodR mutants, as seen with VM26 and VP16-213. These results provide strong suggestive evidence that all of these derivatives (except 2-furan) possess biological activities similar to VM26 and VP16-213, and that their cellular toxicities were due to this type of activity. The VM26-like behavior of different EPG derivatives, which lack the free 4'-OH group, provide evidence that a free 4'-OH group is not essential for VM26-like activity. However, in comparison to the EPG derivatives, the corresponding DMEPG compounds showed 10- to 30-fold higher activities, indicating an enhancing effect of the free 4'-OH group on this kind of activity. Some of the newly synthesized DMEPG and EPG derivatives show higher activity in comparison to VM26 and VP16-213, and structure-activity relationship among this group of compounds is discussed.
...
PMID:Synthesis and structure-activity relationships among glycosidic derivatives of 4'-demethylepipodophyllotoxin and epipodophyllotoxin, showing VM26- and VP16-213-like activities. 344 81
Substitution of Co(II) for the catalytic site Zn(II) of horse liver alcohol dehydrogenase (LADH) yields an active enzyme derivative, CoIIE, with characteristic Co(II) charge-transfer and d-d electronic transitions that are sensitive to the events which take place during catalysis [Koerber, S. C., MacGibbon, A. K. H., Dietrich, H., Zeppezauer, M., & Dunn, M. F. (1983) Biochemistry 22, 3424-3431]. In this study, UV-visible spectroscopy and rapid-scanning stopped-flow (RSSF) kinetic methods are used to detect and identify intermediates in the LADH catalytic mechanism. In the presence of the inhibitor isobutyramide, the pre-steady-state phase of alcohol (RCH2OH) oxidation at pH above 7 is characterized by the formation and decay of an intermediate with lambda max = 570, 640, and 672 nm for both aromatic and aliphatic alcohols (benzyl alcohol, p-nitrobenzyl alcohol, anisyl alcohol, ethanol, and methanol). By comparison with the spectrum of the stable ternary complex formed with oxidized nicotinamide adenine dinucleotide (NAD+) and 2,2',2''-trifluoroethoxide ion (TFE-), CoIIE(NAD+, TFE-), the intermediate which forms is proposed to be the alkoxide ion (RCH2O-) complex, CoIIE(NAD+, RCH2O-). The timing of reduced nicotinamide adenine dinucleotide (NADH) formation indicates that intermediate decay is limited by the interconversion of ternary complexes, i.e., CoIIE(NAD+, RCH2O-) in equilibrium CoIIE(NADH, RCHO). From competition experiments, we infer that, at pH values below 5, NAD+ and alcohol form a CoIIE(NAD+, RCH2OH) ternary complex. RSSF studies carried out as a function of pH indicate that the apparent pKa values for the ionization of alcohol within the ternary complex, i.e., CoIIE(NAD+, RCH2OH) in equilibrium CoIIE(NAD+, RCH2O-) + H+, fall in the range 5-7.5. Using pyrazole as the dead-end inhibitor, we find that the single-turnover time courses for the reduction of
benzaldehyde
, p-nitrobenzaldehyde, anisaldehyde, and
acetaldehyde
at pH above 7 all show evidence for the formation and decay of an intermediate. Via spectral comparisons with CoIIE-(NAD+, TFE-) and with the intermediate formed during alcohol oxidation, we identify the intermediate as the same CoIIE(NAD+, RCH2O-) ternary complex detected during alcohol oxidation.
...
PMID:Active-site cobalt(II)-substituted horse liver alcohol dehydrogenase: characterization of intermediates in the oxidation and reduction processes as a function of pH. 356 50
The mechanism of chiral recognition has been investigated for a series of enantiomeric cis-oxazolidines on a commercially available high-performance liquid chromatographic chiral stationary phase (HPLC-CSP). The oxazolidine molecules were synthesized through the condensation of ephedrine and ephedrine-related molecules with aromatic aldehydes. The resulting molecules are rigid five-membered rings whose configuration has been determined by proton magnetic resonance and single-crystal X-ray diffraction. The oxazolidines derived from the condensation of ephedrine and aldehydes containing a pi-basic moiety such as naphthaldehyde were resolved on the HPLC-CSP as were those oxazolidines synthesized by using a pi-acidic
aldehyde
such as p-nitrobenzaldehyde. However, there was a reversal in the elution order for the two types of oxazolidines. Oxazolidines resulting from the condensation of ephedrine and a pi-neutral
aldehyde
such as
benzaldehyde
were not resolved. The results of this study suggest a chiral recognition model based on the formation of diastereomeric solute-CSP complexes through a single attractive interaction and chiral discrimination resulting from the difference in steric fit.
...
PMID:Chiral recognition model for the resolution of ephedrine and related alpha,beta-aminoalcohols as enantiomeric oxazolidine derivatives. 370 May 41
Oxidation of p-nitro- and p-dimethylaminomethyl derivatives of benzylamine, catalyzed by amine oxidases from human placenta and blood serum, was studied. The amine oxidase activity was estimated by means of a spectrophotometric procedure involving measurement of
aldehyde
formed during the reaction after extraction with hexane. For extraction of
benzaldehyde
and p-nitrobenzaldehyde in the samples HCl was added up to the concentration of 0.17 M and for extraction of p-dimethylaminomethyl
benzaldehyde
--NaHCO3 up to the 0.5 M concentration. The reaction products were extracted with a yield of 94%, 83% and 78% respectively; molar extinction coefficients for aldehydes at the maximal absorption were equal to 13,080 (241 mn), 16,520 (258 nm), and 11,547 (248 nm), respectively. Analysis of the oxidative reactions using inhibitors Lilly 51,641, deprenyl, aminoguanidine and semicarbazide showed that monoamine oxidase of the A type (95%) and benzylamine oxidase (7%) catalyzed oxidation of 0.1 mM p-nitrobenzylamine in mitochondria and microsomes but oxidation of the substrate at 1 mM concentration was catalyzed by monoamine oxidase of the B type (20% in mitochondria and 35% in microsomes). In the soluble fraction oxidation of p-nitrobenzylamine was catalyzed mainly by diamine oxidase (55%); monoamine oxidase of the A type catalyzed oxidation of 30% of the amine, benzylamine oxidase-15%. The molecular activity of the mitochondrial monoamine oxidase of the A type with p-nitrobenzylamine as a substrate was equal to 61 nmol of the product per 1 mole of the enzyme per 1 min.(ABSTRACT TRUNCATED AT 250 WORDS)
...
PMID:[Oxidation of p-nitrobenzylamine and p-dimethylaminomethylbenzylamine by amine oxidases from the human placenta and serum]. 370 5
Three ozonolysis reactions were tested in the solid phase for reproducibility and quantitative yield of an
aldehyde
reaction product. The three starting olefins were t-stilbene, 4,4'-dimethoxystilbene and 1,2-di-(4-pyridyl) ethylene which, when reacted with ozone, gave
benzaldehyde
, p-anisaldehyde and pyridine-4-
aldehyde
, respectively. The starting olefins were coated on a variety of solid substrates, exposed to known ozone concentrations and then analyzed for the corresponding
aldehyde
with a gas chromatograph equipped with a flame-ionization detector. The best combination found for all three reactions was with the starting olefin coated on 30/60 mesh Florisil. Consistent yield was obtained for the methoxystilbene reaction within one batch of sorbent; very reproducible results were obtained within four replicate samples for the pyridyl ethylene reaction. No consistency was obtained, however, with any of the reactions between batches of sorbents and between different sets of samples. Several problems were identified which led to the inconsistent results. The t-stilbene and pyridyl ethylene sorbents oxidized over time while stored to form high
aldehyde
blanks. All three aldehydes, once formed on the sorbent, were volatilized off the sorbent bed as a result of airflow through the bed. Several different solid sorbents were tried unsuccessfully as traps for the purged aldehydes. Finally, lower flow rates resulted in the finding that significant amounts of the aldehydes also were being formed by oxygen in the air sample. Since oxygen was a strong positive interferent, these reactions were considered unacceptable as indicators of ozone.
...
PMID:Investigation of solid-phase ozonolysis reactions for use in a personal sampling method for ozone. 373 1
Homogeneous lignin peroxidase (diarylpropane oxygenase) oxidized veratryl alcohol to veratryl
aldehyde
under anaerobic conditions in the presence of either H2O2, m-chloroperoxybenzoic acid (mCPBA), or p-nitroperoxybenzoic acid (pNPBA). Lignin peroxidase also oxidized the 1-(3',4'-diethoxyphenyl)-1,2-dihydroxy-(4"-methoxyphenyl)-propane I under anaerobic conditions in the presence of mCPBA to yield 3,4-diethoxybenzaldehyde III and 1-(4'-methoxyphenyl)-1,2-dihydroxyethane IV. In contrast to what occurs under aerobic conditions, under anaerobic conditions no 2-hydroxy-1-(4'-methoxyphenyl)-1-oxoethane V was obtained. During the diarylpropane I cleavage under anaerobic conditions, 18O from H2(18)O was incorporated into the alpha-position of the phenylglycol IV. Lignin peroxidase also hydroxylated 1-(4'-ethoxy-3'-methoxyphenyl)propane II at the alpha-position to yield 1-(4'-ethoxy-3'-methoxyphenyl)-1-hydroxypropane VI under anaerobic conditions in the presence of mCPBA. During the phenylpropane II hydroxylation under anaerobic conditions, 18O from H2(18)O was incorporated into the alpha-position of VI. These results are rationalized according to a mechanism involving an initial one-electron oxidation of the diarylpropane I by the lignin peroxidase compound I to form a benzene pi cation radical which undergoes alpha, beta cleavage to produce a
benzaldehyde
and a C6C2 benzylic radical. The latter is then attacked by O2 to form a hydroperoxy radical which may decompose through a tetroxide to form the phenylglycol IV and phenylketol V. Under anaerobic conditions the C6C2 benzylic radical is probably oxidized to a carbonium ion which would be subsequently attacked by H2O to yield the phenylglycol V.
...
PMID:Role of molecular oxygen in lignin peroxidase reactions. 375 12
Human liver aldehyde dehydrogenase isozymes E1 and E2 (EC 1.2.1.3) are both completely and irreversibly inactivated by bromoacetophenone (2-bromo-1-phenylethanone). Steady-state kinetics with both acetophenone and chloroacetophenone indicated interaction with the same enzyme form as the
aldehyde
substrate. Saturation kinetics with chloroacetophenone and bromoacetophenone indicated interaction at a specific site on the enzyme surface and gave a dissociation constant similar to that from steady-state kinetics, suggesting that the same processes were being observed by both methods and that the active site may be involved. Protection against inactivation was afforded by chloral and NAD together. Stoichiometry of inactivation showed the first 2 equiv per tetramer to abolish the majority of catalytic activity; 4 equiv inactivated both isozymes with complete loss of esterase, NAD-stimulated esterase, and dehydrogenase activities. Peptide mapping of enzyme modified with [carbonyl-14C]bromoacetophenone of CNBr digests (E1) and tryptic digests (E1 and E2) showed one peptide to be preferentially labeled. The above results together with the similarity of bromoacetophenone to the substrate
benzaldehyde
suggest bromoacetophenone may react with a residue in the active site of aldehyde dehydrogenase. Amino acid analysis of the labeled E1 tryptic fragment indicated reaction with a different peptide from that with which iodoacetamide reacts.
...
PMID:Bromoacetophenone as an affinity reagent for human liver aldehyde dehydrogenase. 376 40
Whereas disulfiram (DSF) is known to inhibit tumor formation resulting from a number of chemical carcinogens, such inhibition does not apply to nitrosamines. In the present study, biochemical and morphological findings were examined to elucidate the effect of DSF on long-term application of N-nitroso-N-methylbenzylamine (NMBA). HPLC and fluorescence detection were used to determine O6-methylguanine (O6-MG) in DNA obtained from the respiratory tract of rats subjected to long-term simultaneous application of DSF and NMBA. After 2 days of treatment, more O6-MG was detected in the proximal portion of the respiratory tract, including the trachea and main bronchi, than in the distal portion. The findings were reversed after 10 and 30 days, at which time formation of the DNA adduct was substantially higher in the distal portion of the respiratory tract, despite increases in both portions. The biochemical results corresponded to morphological findings. Initially, increased numbers of metabolizing goblet cells appeared in mucous cell hyperplasia in the proximal respiratory tract. Subsequently, the hyperplasia migrated to distal regions of the respiratory tract; at this stage, the goblet cells disappeared from the proximal portion, which now revealed toxic degeneration, atrophy and subsequent squamous metaplasia of the mucous lining and squamous papillomas. At various times during a 40-day period, 2 to 7 times more O6-MG in pulmonary DNA was detected in rats treated with DSF and NMBA, than with NMBA alone, whereby distinct amounts of O6-MG were found in the latter animals. In contrast to the above-mentioned morphological findings, no morphological alterations occurred in the respiratory tract of the animals treated with NMBA alone. It is therefore conceivable that the above pathological lesions resulted not merely from the presence of DNA adducts, but also from an additional, previously unspecified effect. As
benzaldehyde
(BA) is formed in equimolar amounts in NMBA metabolism and DSF has been demonstrated to inhibit
aldehyde
metabolism, this
aldehyde
is a possible candidate for such an effect. In the present study, rats were therefore treated with BA, DSF, or NMBA, or combinations thereof. Histomorphological evaluation of these experiments revealed that long-term application of BA alone led to the following alterations in the respiratory tract: goblet cell hyperplasia, hyperplasia of the peribronchial lymphatic system, mucous epithelial atrophy and accompanying perivasculitis--the same alterations seen under long-term application of NMBA and DSF.(ABSTRACT TRUNCATED AT 400 WORDS)
...
PMID:Modifying effects of disulfiram on DNA adduct formation and persistence of benzaldehyde in N-nitroso-N-methyl-benzylamine-induced carcinogenesis in rats. 377 26
The in vitro metabolism of phenelzine (2-phenylethylhydrazine) by phenobarbital-pretreated rat liver microsomes yields ethylbenzene, 2-phenylethanol, 2-phenylacetaldehyde,
benzaldehyde
, benzylalcohol, and toluene as metabolites. Isotopic studies demonstrate that the oxygen atom of 2-phenylethanol derives from molecular oxygen and that this alcohol is not produced by reduction of 2-phenylacetaldehyde. The rates of destruction of cytochrome P-450, accumulation of spin-trapped 2-phenylethyl radicals, and formation of ethylbenzene and 2-phenylethanol are the same for [1,1-2H]-2-phenylethylhydrazine as for the undeuterated substrate. Small primary isotope effects are observed, however, for the formation of 2-phenylacetaldehyde (kH/kD greater than 1) and
benzaldehyde
(kH/kD less than 1). Synthetic 2-phenylethylhydroperoxide is converted by liver microsomes to the same alcohol and
aldehyde
metabolites. The results indicate that the metabolism of phenelzine by rat liver microsomes proceeds primarily via the 2-phenylethyl radical.
...
PMID:Free radical pathways in the in vitro hepatic metabolism of phenelzine. 380 96
<< Previous
1
2
3
4
5
6
7
8
9
10
Next >>