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3-N-Substituted aminomethyl derivatives of rifamycin SV. A convenient method of synthesis, cyclization of certain derivatives, and anticellular and antiviral activities of several derivatives.

A new synthesis of Mannich bases of rifamycin SV using the Borch2 procedure with rifaldehyde is described. This new synthesis offers two advantages over the previously published method. It provides a route to monoalkyl-aminomethylrifamycins (le-h) and to unsubstituted aminomethylrifamycins that were not accessible by the old procedure. The new method also offers a preparative route to Mannich bases 1a and 1b were needed in multigram quantities for biological testing. In addition, the cyclization of certain of the monoalkylaminomethylrifamycins to the novel N,15-didehydro-15-epi[methano(alkylimino)]rifamycin SV derivatives (2) is described. The anticellular and antiviral effects of representatives of both series of compounds against cultured mouse cells and murine oncornavirus are are discussed.

Animals

Quinazolines and 1,4-benzodiazepines. 81. s-Triazolo[4,3-a][1,4]benzodiazepines by oxidative cyclization of hydrazones.

s-Triazolo[4,3-a][1,4]benzodiazepines bearing various substituents in the 1 position were prepared by oxidative cyclization of the appropriate aldehyde hydrazones of 2-hydrazinobenzodiazepines. Diethyl azodicarboxylate and activated manganese dioxide were used as oxidizing agents. The new triazolo compounds were active in the CNS tests but none of them reached the potency of the known triazolobenzodiazepines.

Animals

The metabolism of a substituted aminoacetamido-benzophenone and cyclization to the corresponding benzodiazepine in the rat in vivo.

1. 2-(5-Cyano-N-methyl-3,5-dimethyl-3-aza-pentanamido)-5-nitrobenzophenone, administered orally to the rat, is well absorbed and extensively metabolized with only minimal quantities of parent compound detected in plasma, bile or urine. 2. Urinary t.l.c. metabolite profiles after oral administration of a substituted aminoacetamidobenzophenone, [14C]C 72 0045, and [14C]nimetazepam were qualitatively similar but differed quantitatively. 3. Analysis by t.l.c. of plasma extracts obtained after oral administration of [14C]C 72 0045 demonstrated that nimetazepam and nitrazepam accounted for 20% of the plasma total radioactivity. Nimetazepam and nitrazepam had a combined concentration up to 22 times greater than the concentration of C 72 0045. 4. The presence of nimetazepam in plasma after oral administration of C 72 0045 was confirmed by mass spectrometry. 5. In the liver, [14C]C 72 0045 was rapidly metabolized to polar metabolites. In the same rats, the major brain metabolites were nimetazepam and nitrazepam. 6. It is concluded that [14C]C 72 0045 undergoes metabolic cyclization in the rat to form nimetazepam, which is further metabolized to form nitrazepam.

Animals

Ring formation in a pentapeptide with alternating L and D residues: an analogy to cyclization in the biosynthesis of peptide antibiotics.

Acetylation of L-isoleucyl-D-alanyl-D-alanyl-L-valyl-D-leucine with acetic anhydride followed by methylation with diazomethane yielded the expected acetylpentapeptide methyl ester with molecular weight 541, but also resulted in the formation of a by-product with molecular weight 555. The incorporation of the mass corresponding to CH2 seems to be due to ring closure--via a mixed anhydride--and methylation of the cyclol derivative thus formed. A preferred, ring-like conformation stabilized by intramolecular hydrogen bonds that in turn are the consequences of the alternation of D- and L- residues in the sequence, is invoked as explanation for the unexpected cyclization. This assumption is supported by the conversion of the pentapeptide methyl ester to desthiomalformain in molten imidazole.

Acetylation

[Research on substances with psychotropic activity. IV. Synthesis of 2,3-diphenyl-4-methyl-4H-1,4-benzothiazin-1,1-dioxide by thermal cyclization of N-(2-desylsolfonylphenyl) glycine].

Treatment of the ethyl ester of N-benzoyl-N-(2-benzylsolfonylphenyl)glycine with potassium in benzene gave, by rearrangement, N-(2-desylsolfonylphenyl)glycine, which via thermal intramolecular cyclization and simultaneous decarboxylation gave 2,3-diphenyl-4-methyl-4H-1,4-benzothiazin-1,1-dioxide. The structure of the latter compound was confirmed chemically by oxidising the known 2,3-diphenyl-4-methyl-4H-1,4-benzothiazine with hydrogen peroxide in formic acid and by I;R. and N.M,R; spectral data.

Cyclization

Preferential cyclization of 2,3(S):22(S),23-dioxidosqualene by mammalian 2,3-oxidosqualene-lanosterol cyclase.

Kinetic studies on the cyclization of 2,3(S)-oxido and 2,3(S):22(S),23-dioxido[14C]squalene catalyzed by liver oxidosqualene-lanosterol cyclase revealed a specificity (in terms of V/Km) of the enzyme for the diepoxide. The specificity ratio was dependent on the enzyme preparation, i.e. purified or microsomal, and was highest (about 5) with the microsomal enzyme in the presence of supernatant protein factors. These results explain why, in the presence of cyclase inhibitors, the squalene epoxides can be channeled into a cholesterol biosynthesis regulatory pathway via 24(S),25-epoxylanosterol and 24(S),25-epoxycholesterol.

3T3 Cells

Cyclization of the phosphorus chain of the methylene-bridged analogs of adenosine triphosphate.

The phosphorus-containing side chains of two methylene-bridged analogs of adenosine triphosphate have been cyclized to produce the corresponding analogs of monoadenosine-5'-trimetaphosphate. (The structures are given in the journal.) The molecules, which were generated in anhydrous media through a carbodimide-mediated condensation, were characterized by 31P nuclear-magnetic resonance, and the white-noise 1H decoupled spectra were simulated. These molecules are quite reactive and readily converted to their corresponding linear forms upon hydrolysis. The second structure contains an asymmetric phosphorus atom, and both of the possible cyclic molecules have been observed and the diasteroisomeric mixture has been isolated.

Adenosine Triphosphate

Proton nuclear magnetic resonance study of the conformation and configuration of the cyclized pyridine nucleotide adducts.

We have closely examined by high-frequenty 1H nuclear magnetic resonance spectroscopy the structure of the adducts which form when various carbonyl compounds react with pyridine nucleotides at elevated pH. These studies show that the adducts of N-(2,6-dichlorobenzyl)nicotinamide-acetone, n-(2,6-dichlorobenzyl)nicotinamide-pyruvate, NMN-pyruvate, NAD-pyruvate, NAD-acetaldehyde, and NAD-oxaloacetate form with identical structural features as well as configuration. The following structural features are observed: (1) the adducts are pyridine N-4-substituted compounds; (2) a second six-membered ring forms by addition of the nicotinamide amido to the carbonyl group of the compound forming the addition complex; (3) cyclization occurs stereospecifically, indicating that the stereochemistry is predetermined by the initial attack at the N-4 position; (4) two diastereomeric forms are observed for each nucleotide adduct. Finally, the determination of configuration at all symmetric carbon atoms in these adducts will be discussed.

Acetaldehyde

Cyclized dipeptide model for a beta-bend.

A cyclic dipeptide in which L-Ala-Gly was cyclized with epsilon-aminocaproic acid has been synthesized as a model for a beta-bend. Its conformational properties have been examined by means of conformational energy calculations and nuclear magnetic resonance, infrared, Raman, and circular dichroism spectroscopy in various solvents. These calculations and experiments suggest that a type II beta-bend exists in the Ala-Glymoiety, with an NH...O = C hydrogen bond in the epsilon-aminocaproic acid portion of the molecule, and that the molecule adopts a unique conformation in solution. In contrast, an open-chain analog of this compound exists in solution as an ensemble of conformations but with a significant amount of a type II beta-bend structure in the ensemble.

Circular Dichroism

Palladium-catalyzed intramolecular cyclization of vinyl and aryl triflates. Associated regioselectivity of the beta-hydride elimination step.

The Pd(0)-catalyzed intramolecular olefination of vinyl and aryl triflates has been studied with a view to gaining insight into the question of kinetically preferred reductive elimination when at least two options are available. In either series, a non-activated alkene participant was found to be converted most readily into the non-conjugated cyclization product. This trend is seen despite the more forcing conditions necessary to engage the less reactive aryl triflates in ring closure. On the other hand, when the pendant chain is terminated by an alpha-methyl acrylate unit, the conjugated diene is kinetically preferred. The two reactions appear to be closely balanced energetically since product distributions are not greatly disparate. Nevertheless, their complementarity could be utilized to advantage in the synthesis of polycyclic molecules possessing multiple sterogenic centers.

Catalysis

Antiinflammatory and antiproteolytic properties of naphthlthiosemicarbazides and cyclized oxadiazoles.

Eight 1-(naphth-1-ylacetyl)-4-substituted thiosemicarbazides and eight 2-(naphth-1-ylmethyl)-5-arylamino-1,3,4-oxadiazoles were synthesized and evaluated for antiinflammatory and antiproteolytic properties. All thiosemicarbazides (100 mg/kg) provided 14-43% protection against carrageenin-induced edema in rats. Cyclization of thiosemicarbazides to oxadiazoles resulted in significant reduction in the antiinflammatory activity. Some of these thiosemicarbazides also possessed low antiinflammatory activity against cotton-pellet-induced granuloma formation and formaldehyde-induced arthritis in rats. Hydrocortisone and oxyphenbutazone, used as reference drugs, exhibited greater antiinflammatory activity. All compounds possessed antiproteolytic activity. The in vitro protection of trypsin-induced hydrolysis of bovine serum albumin, unlike antiinflammatory activity, was greater with oxadiazoles (30-90%) than the precursor thiosemicarbazides (4-50%) at a final concentration of 1 mM.

Animals