Intramolecular free radical functionalisation of the methyl group of 5′-deoxyadenosine

Author(s):  
David Gani ◽  
Alan W. Johnson ◽  
Michael F. Lappert
Keyword(s):  
2013 ◽  
Vol 69 (12) ◽  
pp. o1792-o1793
Author(s):  
Praveen Pitliya ◽  
Ray J. Butcher ◽  
A. Karim ◽  
Paul F. Hudrlik ◽  
Anne M. Hudrlik ◽  
...  

The title compound, C22H30BrNO, is an alkoxyamine compound, an effective initiator in nitroxide-mediated free radical polymerization. It was prepared as a mixture of two diasteromers; the crystal for the X-ray analysis showed one of these as a pair ofR,SandS,Renantiomers. Thetert-butyl and isopropyl groups are in an almostanticonformation in the crystal [C—N—C—C torsion angle = −168.8 (1)°], and the methyl group of the ethoxy group is in an approximateantirelationship to thetert-butyl group. The dihedral angle between the phenyl and benzene rings is 33.12 (7)°. The Br atom is disordered over two positions, with occupancies of 0.9139 (16) and 0.0861 (16). In the crystal, weak C—H...Br contacts link the molecules into chains along [-110].


Author(s):  
Douglass F. Taber

The diterpene vinigrol 3, isolated from Virgaria nigra F-5408, has eluded total synthesis for more than 20 years. Attempts to construct the four-carbon bridge on a preformed cis-decalin have been unavailing. Phil S. Baran of Scripps/La Jolla solved (Angewandte Chem. Int. Ed. 2008, 47, 3054; J. Am. Chem. Soc. 2009, 131, 17066) this problem by adding the extra C-C bond of 1, which could then be cleaved in course of a Grob fragmentation, leading to 2. The preparation of 1 started with the dihydroresorcinol derivative 4. Diels-Alder addition of the ester 5 gave 6, with a modest 2:1 dr. Addition of allyl MgCl to the derived aldehyde 7 proceeded with 6:1 dr. The resulting triene was conformationally sufficiently constrained that cyclization to 8 proceeded at room temperature over 2 weeks, or more conveniently at 105°C for 90 minutes. With 8 in hand, oxidation to the ketone allowed installation of the additional methyl group of 9. Desilylation followed by OH-directed reduction set the relative configuration of 1 correctly for the Grob fragmentation to the Z -alkene 2. There were two remaining problems in the synthesis. The alkene of 2 had to be converted to the methylated tertiary alcohol, and the ketone had to be elaborated to the ene diol. Though seemingly straightforward, the congested tricyclic skeleton of 2 made many common transformations difficult. The solution to the first problem was found in the selective dipolar addition of bromonitrile oxide. Reduction of the ketone then enabled HO-directed hydrogenation of the alkene, which otherwise was resistant. Dehydration followed by reduction with LiAlH4 gave the desired methyl group bearing a primary amine, which was removed by free radical reduction of the corresponding isonitrile, to give 12. With 12 in hand, the end of the synthesis appeared to be in sight. In fact, the reduction of a variety of oxidized intermediates proved difficult. In the end, a sequence that did not require reduction proved effective. Dihydroxylation of 12 gave a diol, selective oxidation of which delivered the α-hydroxy ketone 13. Formation of the trisylhydrazone followed by Shapiro reaction gave the intermediate alkenyl anion, which was trapped with formaldehyde to give the long-sought vinigrol 3.


2004 ◽  
Vol 69 (10) ◽  
pp. 737-747 ◽  
Author(s):  
Goran Petrovic ◽  
Radomir Saicic ◽  
Ljiljana Dosen-Micovic ◽  
Zivorad Cekovic

A stereoselective free radical introduction of a phenylthio group onto a nonactivated methyl group in the ?-position, adjacent to a prochiral carbon atom, was achieved by photolysis of (-)-menthyl benzenesulfenate in the presence of hexabutylditin and (1R, 3R, 4S, 8S)-9-phenylthiomenthol (4) was obtained with 91%optical purity. High stereoselectivity of the reaction was calculated (ab initio MP2/6-31G**) to be the consequence of the difference in the transition state eneregies (??G# = 5.08 kJ/mol) favouring 4 relative to (1R,3R,4S,8R)-9-phenylthiomenthol (5). The absolute configuration of a the new chiral carbon atom was confirmed by its correlation with the corresponding menthane-3,9-diol of known stereochemistry.


2011 ◽  
Vol 64 (6) ◽  
pp. 833 ◽  
Author(s):  
Uta Wille ◽  
Catrin Goeschen

Analysis of the products formed in the reaction of nitrate radicals, NO3 •, with the N- and O-methylated and acetylated thymidines 1a and 1b revealed, for the first time, insight regarding how this important atmospheric free-radical oxidant can cause irreversible damage to DNA building blocks. Mechanistic studies indicated that the initial reaction step likely proceeds via NO3 • induced electron transfer at the pyrimidine ring, followed by deprotonation of the methyl group at C5. The oxidation ultimately leads to formation of nitrates 2, aldehydes 4 and, in the case of high [NO3 •], also to carboxylic acids 5. In addition to this, through a very minor pathway, loss of the methyl group at C5 also occurred to give the respective 2′-deoxyuridines 6. The nitrates 2 are highly labile compounds that undergo rapid hydrolysis during work-up and purification of the reaction mixtures, which could lead to serious misinterpretation of the experimental findings and reaction mechanism. Products resulting from NO3 • addition to the C5=C6 double bond in the pyrimidine ring were not observed. Also, no reaction of NO3 • with the 2′-deoxyribose moiety was detected.


2002 ◽  
Vol 43 (9) ◽  
pp. 1697-1700 ◽  
Author(s):  
Sébastien Bedel ◽  
Gilles Ulrich ◽  
Claude Picard

1978 ◽  
Vol 56 (3) ◽  
pp. 410-418 ◽  
Author(s):  
D. Mukherjee ◽  
CH. R. Engel

It is shown that enolate ions, in particular lithium enolates obtained from enol acetates of saturated ketones by reaction with methyllithium, may not only be alkylated and carboxylated, but also alkoxycarbonylated (in position a to the original saturated keto group). By this method, saturated 20-keto steroids were transformed into 17α-methoxycarbonyl 20-ketones. Thus, from pregnenolone, 17-methoxycarbonylpregnenolone was prepared and was then converted to 17-hydroxymethylprogesterone and to some of its esters. This method for preparing 17-hydroxymethylated hormone analogues of the progesterone-corticoid group is simpler and more efficient than the pathway implying a free-radical functionalization of a 17α-methyl group.


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