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1.
The photoreactions of 4 and 2-pyridinecarbonitrile with cyclopentene carried out in acetone or in acetonitrile solutions lead, respectively, to 4-(2 cyclopentenyl)-pyridine 1 and 2-(2 cyclopentenyl)pyridine 2. From 2-pyridinecarbonitrile a little amount of ketone 3 is obtained.  相似文献   

2.
The protection of uracil and 2-N-acyl guanine residues with 4-O-phenyl [or 4-O-(2,4-dimethylphenyl)] and 6-O-(2-nitrophenyl) groups as in 7a [or 7b] and 9, respectively, is described. These O-aryl protecting groups, which appear to withstand the usual conditions of oligonucleotide synthesis, may readily be removed by treatment with 2-nitrobenzaldoximate ions.  相似文献   

3.
In the presence of 1-methylimidazole, 2-N-acyl guanine (as in 4a), thymine (as in 5a) and uracil (as in 5b) residues react readily with the phosphorylating agent derived from 2-chlorophenyl phosphorodichloridate (1a) and 1-hydroxybenzotriazole.  相似文献   

4.
Direct ring-opening of the epoxide ring in 1-(5′-O-trityl-2′,3′-anhydro-β-D-lyxo-furanosyl) uracil (1) by lithium acetylide or vinylmagnesium bromide/cuprous iodide affords the corresponding 5′-O-trity]-3′-C-substituted-3′-deoxy-ara-uridine species.  相似文献   

5.
1,3-Di-N-substituted uracil and its derivatives have been reduced with lithium-tri-sec-butyl borohydride to the corresponding 5,6-dihydro compounds in excellent yields. Alkylation of 5-position of uracil is also very conveniently accomplished.  相似文献   

6.
7.
A recent theoretical study on the vibrational spectrum and force field of maleimide (ref.1) lead to scale factors transferable to molecules of similar structure (ref.2). The theoretical vibrational spectrum of uracil (refs.2–3) calculated from scaled CNDO/2 force constants using the scale factors of ref.1 agrees better with the experimental results (ref.4) than former calculations by ab initio STO-3G (ref.5) or MINDO/3 (ref.6) methods. The scaled CNDO/2 force field of uracil has also been used to predict the normal frequencies of a set of its deuterated derivatives.  相似文献   

8.
A theory of the infrared spectra of hydrogen bonds in molecular crystals of C52h symmetry, containing, like uracil, four molecules and eight hydrogen bonds in the unit cell, is presented. The theoretical spectra are in good agreement in both the frequency and intensity distribution with experiment. The changes in the fine structure introduced by deuteration are quantitatively reproduced.  相似文献   

9.
10.
The absolute configuration at C-6 and C-7 of serricornin was established as (6S, 7S) by synthesizing its (6R, 7S-erythro and (6R, 7R-threo isomers.  相似文献   

11.
Methyl 4-0-benzoyl-6-bromo-6-deoxy-α-D-glucopyranoside (1, Figure 1) was converted, via the corresponding ditosylate 2, into methyl 2,3-di-0-p-toluenesulfonyl-4-0-benzoyl-6-S-acetyl-6-thio-α-D-glucopyranoside (3) by a selective nucleophilic displacement of 6-bromo-group with thioacetate. Unexpectedly, on treating the compound 3 with an excess of sodium methoxide in benzene-methanol (1:1) at room temperature, methyl 2-0-p-toluenesulfonyl-4,6-thioanhydro-α-D-gulopyranoside (4) was obtained in a yield of 84%. In order to determine the structure of the relatively unstable oily product 4, some stable crystalline derivatives (5, 6 and 7) were prepared. Detailed analysis of the 1H-NMR-spectra (200 MHz) of 6 and 7 gave the conclusive evidence for the structure of 4 A self-imposing mechanism of the clean and smooth transformation of 3 to 4 is proposed, involving: a) formation of 9 (Figure 2) as a crucial intermediate and b) a highly regioselective epoxide opening in 9 (at C-4) by an intramolecular nucleophilic attack of the mercaptide anion from C-6.  相似文献   

12.
The biomimetic reactions of epoxygermacrene-D (1) with basic alumina afforded three new interesting compounds (4, 5, and 6), two of which (4 and 6) have the same carbon skeleton as that of periplanone-A (3), a sexual stimulant for the American cockroach. The remaining one (5) is a bicyclo[3.1.0]hexane derivative, from whch an axisonitrile-3 type compound (14) has been produced. Finally, preisocalamendiol (2) was also converted into 6.  相似文献   

13.
Reactions of allylides (1) with nitrile oxides (2) afforded furanylglyoxylate oxime (3) and 6H-l,2-oxazine (4). Ring transformations of 3 and 4 gave 4 and pyrrolinone (6), respectively.  相似文献   

14.
Upon photooxidation bicyclopropylidene (1) yields spiro[2.3]hexan-4-one (4) and 7-oxatrispiro[2.0.2.1]heptane (6). The formation of these is rationalized. Authentic 6 was prepared by epoxidation of 1, and 4 by isomerization of 6.  相似文献   

15.
A short and convenient synthesis of phosphatidyl-α-diglucosyldiglyceride (i.e. compound 8d) and two related Streptococci glycolipids (i.e. compounds 6a and 6b) will be presented. 4',6'-Tetraisopropyl-disiloxane-1,3-diyl (TIPS) protected α-glucosyl diglyceride (i.e. compound 2) turned out to be a suitable protected precursor. Thus, compound 2 was selectively condensed with glucosyl bromide 3 to afford 4. Removal of the protecting groups from 4 gave glycolipid 6a. The “dynamic” properties of the TIPS pro- tecting group were utilized to convert 4',6'-TIPS protected 4 into 3',4'- TIPS protected derivative 5a. Compound 5a could then be condensed with either a stearoyl fatty acid or a phosphatidyl moiety to give the fully protected derivatives 5c and 8a, respectively. Finally, removal of all the protecting groups from 5c and 8a afforded the glycolipid 6b and glycophospholipid 8d, respectively.  相似文献   

16.
The thermal rearrangement of 2,4-di(N-aryl)amino-1,3,5-triazin-6yl-prop-2-ynyl ethers 1 yield a mixture of 6-methyleneimidazo(1,2-a)-1,3,5-triazine-4-one 6 and 6-methylimidazo(1,2-a)-1,3,5-triazine-4-one 7, whereas under the influence of mercuric trifluroacetate the ethers 1 yield only 6, at room temperature. Mechanisms invoking [3,3] sigmatropic rearrangement of ethers 1 were proposed to account for the product formation.  相似文献   

17.
N,N-Dimethylformamide (4a) and N,N-dimethylpivalamide (4b) react with carbonyl chloride isocyanate (5) in the presence of antimony pentachloride to afford the amino substituted 1-oxa-3-azabutatrienium hexachloroantimonates 6a,b. An X-ray diffraction analysis of 6a confirms the proposed structure. The heterocumulenes 6a,b react with aldehydes, ketones and tertiary carboxamides to give the amino substituted 2-azaallenium salts 13a-O in high yields.  相似文献   

18.
The cyclocoupling reaction of 2-oxyallyl-Fe(II) cation (1) with cycloheptatrieneiron tricarbonyl (4) gave the σ,π-allyliron tricarbonyl complex (6). Structure of the complex (6) was fully established by X-ray analysis. Oxidative degradation of the complex (6) with o-chloranil afforded a single iron free compound (7) which was indicated that a carbonyl insertion took place during oxidation.  相似文献   

19.
(±)-O-methylperezone (1b) was obtained by selective oxidative demethylation of (±)-leucoperezone trimethyl ether (4a). Compound (4a) was prepared by condensation of 2,3,5-trimethoxytoluene (5e) with 6-methyl-5-hepten-2-one, followed by reductive removal of the tertiary alcohol. The aromatic precursor 5e was prepared in four steps from 2,3-dimethoxytoluene (5a) and, alternatively, in three steps from 5-bromoveratraldehyde (6a). Racemic 1b and 4a were directly compared with the optically active molecules prepared from natural R(-)-perezone (1a).  相似文献   

20.
In an approach to SRS-A and analogues thereof, the key (5S, 6S)-epoxy alcohol 9 and its 6-epimer 18 were prepared starting from D-araboascorbic acid and L-diethyl tartrate, respectively.  相似文献   

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