References
<A NAME="RG28405ST-1A">1a</A>
Hocek M.
Hol∅ A.
Votruba I.
Dvořáková H.
J. Med. Chem.
2000,
43:
1817
<A NAME="RG28405ST-1B">1b</A>
Hocek M.
Hol A.
Votruba I.
Dvořáková H.
Collect. Czech. Chem. Commun.
2001,
66:
483
<A NAME="RG28405ST-1C">1c</A>
Andresen G.
Gundersen L.-L.
Nissen-Meyer J.
Rise F.
Spilsberg B.
Bioorg. Med. Chem. Lett.
2002,
12:
567
<A NAME="RG28405ST-1D">1d</A>
Gundersen L.-L.
Nissen-Meyer J.
Spilsberg D.
J. Med. Chem.
2002,
45:
1383
<A NAME="RG28405ST-1E">1e</A>
Hocek M.
Nau P.
Pohl R.
Votruba I.
Furman PA.
Tharnish PM.
Otto MJ.
J. Med. Chem.
2005,
48:
5869
<A NAME="RG28405ST-2">2</A>
Huber R.
Fiebig T.
Wagenknecht H.-A.
Chem. Commun.
2003,
1878
<A NAME="RG28405ST-3A">3a</A>
Sessler JL.
Jayawickramarajah J.
Sherman CL.
Brodbelt JS.
J. Am. Chem. Soc.
2004,
126:
11460
<A NAME="RG28405ST-3B">3b</A>
Sessler JL.
Jayawickramarajah J.
Sathiosatham M.
Sherman CL.
Brodbelt JS.
Org. Lett.
2003,
5:
2627
<A NAME="RG28405ST-4A">4a</A>
Hocek M.
Eur. J. Org. Chem.
2003,
245
<A NAME="RG28405ST-4B">4b</A>
Agrofoglio LA.
Gillaizeau I.
Saito Y.
Chem. Rev.
2003,
103:
1875
<A NAME="RG28405ST-5">5</A>
Čapek P.
Pohl R.
Hocek M.
J. Org. Chem.
2004,
69:
7985
<A NAME="RG28405ST-6">6</A>
Čapek P.
Pohl R.
Hocek M.
J. Org. Chem.
2005,
70:
8001
<A NAME="RG28405ST-7">7</A>
Hocek M.
Heterocycles
2004,
63:
1673
<A NAME="RG28405ST-8">8</A>
Rao SN.
Kollman PA.
J. Am. Chem. Soc.
1986,
108:
3048
<A NAME="RG28405ST-9">9</A>
Tierney MT.
Grinstaff MW.
Org. Lett.
2000,
2:
3413
<A NAME="RG28405ST-10">10</A>
Jäger S.
Rasched G.
Kornreich-Leshem H.
Engeser M.
Thum O.
Famulok M.
J. Am. Chem. Soc.
2005,
127:
15071
<A NAME="RG28405ST-11A">11a</A>
Havelková M.
Dvořák D.
Hocek M.
Synthesis
2001,
1704
<A NAME="RG28405ST-11B">11b</A>
Hocek M.
Hocková D.
Štambaský J.
Collect. Czech. Chem. Commun.
2003,
68:
837
<A NAME="RG28405ST-11C">11c</A>
Hocek M.
Hocková D.
Dvořáková H.
Synthesis
2004,
889
<A NAME="RG28405ST-12">12</A>
Western EC.
Daft JR.
Johnson EM.
Gannett PM.
Shaughnessy KH.
J. Org. Chem.
2003,
68:
6767
<A NAME="RG28405ST-13A">13a</A>
Western EC.
Shaughnessy KH.
J. Org. Chem.
2005,
70:
6378
<A NAME="RG28405ST-13B">13b</A>
Amann N.
Wagenknecht HA.
Synlett
2002,
687
<A NAME="RG28405ST-13C">13c</A>
Mayer E.
Valis L.
Huber R.
Amann N.
Wagenknecht HA.
Synthesis
2003,
2335
<A NAME="RG28405ST-13D">13d</A>
Valis L.
Wagenknecht HA.
Synlett
2005,
2281
<A NAME="RG28405ST-13E">13e</A>
Kohyama N.
Katashima T.
Yamamoto Y.
Synthesis
2004,
2799
<A NAME="RG28405ST-13F">13f</A>
Gubala V.
Betancourt JE.
Rivera JM.
Org. Lett.
2004,
6:
4735
<A NAME="RG28405ST-14">14</A>
Gong Y.
He W.
Org. Lett.
2002,
4:
3803
<A NAME="RG28405ST-15">15</A>
Typical Procedure - Preparation of Compound 13.
A H2O-MeCN mixture (1.5:1, 3 mL) was added through septum to an argon purged vial containing
adenosine 11 (69 mg, 0.2 mmol), boronic acid 10 (52 mg, 0.26 mmol), Pd(OAc)2 (2.3 mg, 0.01 mmol), P(m-C6H4SO3Na)3 (14.2 mg, 0.025 mmol), Na2CO3 (42 mg, 0.4 mmol). The mixture was stirred at 90 °C on oil bath for 2 h. The pH of
the reaction mixture was adjusted to 7 by HCl (2%) and solvents were evaporated in
vacuo. The solid was dissolved in hot H2O-DMSO mixture (1:1, 6 mL), and the product was isolated by HPLC on C18 column with
0.3% aq AcOH-MeOH gradient to give 66 mg (71%) of 13 as white solid after lyophilization from H2O. MS (FAB): m/z (%) = 432 (28) [M + 1], 299 (100) [M - ribofuranose + 2]. HRMS (FAB): m/z calcd for C19H23N6O6: 431.1679; found: 431.1701. 1H NMR (400 MHz, D2O, refdioxane = 3.75 ppm): δ = 3.20 (dd, 1 H, J
gem = 14.4 Hz, J
bCH2,CH = 7.5 Hz, bCH2), 3.32 (dd, 1 H, J
gem = 14.4 Hz, J
aCH2,CH = 5.3 Hz, aCH2), 3.82 (dd, 1 H, J
gem = 12.9, J
5
′
b,4
′ = 3.0 Hz, H-5′b), 3.88 (dd, 1 H, J
gem = 12.9 Hz, J
5
′
a,4
′ = 2.4 Hz, H-5′a), 4.04 (dd, 1 H, J
CH,bCH2 = 7.5 Hz, J
CH,aCH2 = 5.3 Hz, CH), 4.20 (q, 1 H, J
4
′
,5
′
b = 3.0 Hz, J
4
′
,5
′
a = 2.4 Hz, J
4
′
,3
′ = 2.3 Hz, H-4′), 4.40 (dd, 1 H, J
3
′
,2
′ = 5.5 Hz, J
3
′
,4
′ = 2.3 Hz, H-3′), 5.07 (dd, 1 H, J
2
′
,1
′ = 7.2 Hz, J
2
′
,3
′ = 5.5 Hz, H-2′), 5.92 (d, 1 H, J
1
′
2
′ = 7.2 Hz, H-1′), 7.42 (m, 2 H, H-m-phenylene), 7.63 (m, 2 H, H-o-phenylene), 8.19 (s, 1 H, H-2). 13C NMR (100.6 MHz, D2O, refdioxane = 67.19 ppm): δ = 36.87 (CH2), 56.38 (CH), 62.77 (CH2-5′), 71.56 (CH-3′), 72.71 (CH-2′), 87.08 (CH-4′), 89.88 (CH-1′), 119.29 (C-5), 127.29
(C-i-phenylene), 130.54 and 130.77 (CH-phenylene), 138.96 (C-p-phenylene), 149.78 (C-4), 151.04 (CH-2), 153.46 (C-8), 154.83 (C-6), 174.15 (CO).
IR (KBr): 3335, 3191, 1641, 1484, 1397, 1336, 1085, 1034, 799. [α]D
20 -41.0 (c 3.50, DMSO).
<A NAME="RG28405ST-16">16</A>
Compound 14: white solid by lyophilization. MS (FAB): m/z (%) = 415 (70) [M + 1], 299 (100) [M - deoxyribo-furanose + 2]. HRMS (FAB): m/z calcd for C19H23N6O5: 415.1730; found: 415.1716. 1H NMR (400 MHz, D2O, refdioxane = 3.75 ppm): δ = 2.29 (ddd, 1 H, J
gem = 14.0, J
2
′
b,1
′ = 6.2 Hz, J
2
′
b,3
′ = 2.2 Hz, H-2′b), 3.01 (ddd, 1 H, J
gem = 14.0, J
2
′
a,1
′= 8.9 Hz, J
2
′
a,3
′ = 6.2 Hz, H-2′b), 3.22 (dd, 1 H, J
gem = 14.4 Hz, J
bCH2,CH = 7.5 Hz, bCH2), 3.32 (dd, 1 H, J
gem = 14.4 Hz, J
aCH2,CH = 5.4 Hz, aCH2), 3.81 (dd, 1 H, J
gem = 12.6 Hz, J
5
′
b,4
′ = 3.5 Hz, H-5′b), 3.87 (dd, 1 H, J
gem = 12.6 Hz, J
5
′
a,4
′ = 2.7 Hz, H-5′a), 4.05 (dd, 1 H, J
CH,bCH2 = 7.5 Hz, J
CH,aCH2 = 5.4 Hz, CH), 4.10 (q, 1 H, J
4
′
,5
′ = 3.5, 2.7 Hz, J
4
′
,3
′ = 2.2 Hz, H-4′), 4.63 (dt, 1 H, J
3
′
,2
′ = 6.2, 2.2 Hz, J
3
′
,4
′ = 2.2 Hz, H-3′), 6.29 (dd, 1 H,
J
1
′
2
′ = 8.9, 6.2 Hz, H-1′), 7.44 (m, 2 H, H-m-phenylene), 7.55 (m, 2 H, H-o-phenylene), 8.17 (s, 1 H, H-2). 13C NMR (100.6 MHz, D2O, refdioxane = 67.19 ppm): δ = 36.87 (CH2), 38.82 (CH2-2′), 56.37 (CH), 62.95 (CH2-5′), 72.52 (CH-3′), 87.13 (CH-1′), 88.53 (CH-4′), 119.36 (C-5), 127.57 (C-i-phenylene), 130.48 and 130.58 (CH-phenylene), 138.95 (C-p-phenylene), 149.73 (C-4), 150.76 (CH-2), 152.91 (C-8), 154.79 (C-6), 174.17 (CO).
IR (KBr): 3354, 3205, 1642, 1526, 1483, 1406, 1337, 1091, 1055, 1032, 798. [α]D
20 -35.0 (c 4.15, DMSO).
<A NAME="RG28405ST-17">17</A>
Szókán G.
Mezö G.
Hudec F.
J. Chromatogr.
1988,
444:
115