Abstract
In this account, recent accomplishments in the field of target-oriented
synthesis involving allenes are summarized. Allenic α-amino
acid derivatives 9, which are of interest
as possible vitamin B6 decarboxylase inhibitors, were
prepared by 1,6-addition of the cyano-Gilman reagent t-Bu2CuLi·LiCN to
2-amino-substituted enynoates 8, and selective
deprotection at either the amino or the ester group was realized.
2,5-Dihydrofurans 18 were obtained by cyclization
of the corresponding α-hydroxyallenes; for this step, new methods
(treatment with hydrogen chloride gas or acidic ion exchange resin;
gold(III)-chloride catalysis) were developed. The 2-hydroxy-3,4-dienoates 14 were obtained by diastereoselective
oxidation of titanium enolates formed from 3,4-dienoates 12 with dimethyl dioxirane (DMDO),
whereas hydroxyallenes 16 were prepared
by copper-mediated SN2′-substitution of propargylic
epoxides 15.
Key words
allenes - amino acids - gold catalysis - 2,5-dihydrofurans - organocopper reagents
References
1a
The
Chemistry of Ketenes Allenes and Related Compounds
Patai S.
Wiley;
New York:
1980.
1b
The Chemistry
of Allenes
Landor SR.
Academic Press;
London:
1982.
1c
Schuster HF.
Coppola GM.
Allenes
in Organic Synthesis
Wiley;
New York:
1984.
2a
Review: Zimmer R.
Synthesis
1993,
165
2b
Black TG.
Tetrahedron
2001,
57:
5263
3a
Krause N.
Liebigs Ann. Chem.
1993,
521
3b
Koop U.
Handke G.
Krause N.
Liebigs
Ann. Chem.
1996,
1487 ;
and literature cited therein
4 Review: Zimmer R.
Dinesh CU.
Nandanan E.
Khan FA.
Chem. Rev.
2000,
100:
3067
5a Enprostil: Gooding OW.
Beard CC.
Cooper GF.
Jackson DY.
J. Org. Chem.
1993,
58:
3681
5b
Cooper GF.
Wren DL.
Jackson DY.
Beard CC.
Galeazzi E.
VanHorn AR.
Li TT.
J. Org. Chem.
1993,
58:
4280
5c
Ono N.
Kawanaka Y.
Yoshida Y.
Sato F.
J. Chem. Soc., Chem. Commun.
1994,
1251
5d
Lee YS.
Nam KH.
Jung SH.
Park H.
Synthesis
1994,
792
5e Allenic nucleoside analogues: Zemlicka J. In Nucleosides and Nucleotides
as Antitumor and Antiviral Nucleoside Analogues
Chu CK.
Baker DC.
Plenum;
New York:
1993.
p.73-100
5f
Jones BCNM.
Silverton JV.
Simons C.
Megati S.
Nishimura H.
Maeda Y.
Mitsuya H.
Zemlicka J.
J.
Med. Chem.
1995,
38:
1397
5g
Zemlicka J.
Nucleosides
Nucleotides
1997,
16:
1003
5h Allenic isocarbacyclin
analogues: Mikami K.
Yoshida A.
Matsumoto Y.
Tetrahedron Lett.
1996,
37:
8515
Some selected examples:
6a
Yamono Y.
Ito M.
J. Chem. Soc., Perkin. Trans. 1
1993,
1599
6b
Evans PA.
Murthy VS.
Roseman JD.
Rheingold AL.
Angew.
Chem. Int. Ed.
1999,
38:
3175 ; Angew. Chem. 1999, 111, 3370
6c
VanBrunt MP.
Standaert RF.
Org.
Lett.
2000,
2:
705
6d
Crimmins MT.
Emmitte KA.
J.
Am. Chem. Soc.
2001,
123:
1533
7a
Krause N.
Gerold A.
Angew.
Chem., Int. Ed. Engl.
1997,
36:
186 ; Angew. Chem. 1997, 109, 194
7b
Krause N.
Thorand S.
Inorg. Chim. Acta
1999,
296:
1
7c
Krause N.
Zelder C. In The Chemistry of Dienes
and Polyenes
Vol. 2:
Rappoport Z.
Wiley;
New
York:
2000.
p.645-691
7d
Krause N.
Hoffmann-Röder A. In Modern Organocopper
Chemistry
Krause N.
Wiley-VCH;
Weinheim:
2002.
p.145-166
8a
Rando RR.
Science
1974,
185:
320
8b
Walsh C.
Tetrahedron
1982,
38:
871
9
Castelhano AL.
Pliura DH.
Taylor GJ.
Hsieh KC.
Krantz A.
J. Am. Chem. Soc.
1984,
106:
2734
10
Chilton WS.
Tsou G.
Kirk L.
Benedict RG.
Tetrahedron Lett.
1968,
6283
11a
Dunn MJ.
Jackson RFW.
Pietruszka J.
Wishart N.
Ellis D.
Wythes MJ.
Synlett
1993,
499
11b
Hunter C.
Jackson RFW.
Rami HK.
J. Chem. Soc., Perkin Trans. 1
2001,
1349
12
Cazes B.
Djahanbini D.
Goré J.
Genêt J.-P.
Gaudin J.-M.
Synthesis
1988,
983
13
Castelhano AL.
Horne S.
Taylor GJ.
Billedeau R.
Krantz A.
Tetrahedron
1988,
44:
5451
14a
Kazmaier U.
Görbitz CH.
Synthesis
1996,
1489
14b
Kazmaier U.
Liebigs
Ann. Recl.
1997,
285
15a
Evans DA.
Britton TC.
J. Am. Chem. Soc.
1987,
109:
6881
15b
Evans DA.
Britton TC.
Ellman JA.
Dorow RL.
J.
Am. Chem. Soc.
1990,
112:
4011
16a
Mitsunobu O.
Synthesis
1981,
1
16b
Hughes DL.
Org. React.
1992,
42:
335
16c
Thompson AS.
Humphrey GR.
DeMarco AM.
Mathre DJ.
Grabowski EJJ.
J. Org.
Chem.
1993,
58:
5886
17
Canisius J.
Ph.D.
Thesis
Dortmund University;
Germany:
2000.
18a
Wadsworth WS.
Org. React.
1978,
25:
73
18b
Stec WJ.
Acc. Chem. Res.
1983,
16:
411
18c
Maryanoff BE.
Reitz A.
Chem. Rev.
1989,
89:
863
19 Attempts to prepare 2-en-4-ynoates
with unprotected amino functions in 2-position by using the corresponding aminophosphonate
failed: Seki M.
Matsumoto K.
Synthesis
1996,
580 . Ref. 11
20a
Brandsma L.
Preparative Acetylenic Chemistry
Elsevier;
Amsterdam:
1988.
p.102-103
20b
Journet M.
Cai D.
Dimichele L.
Larsen RD.
Tetrahedron Lett.
1998,
39:
6427
21a
Boronoeva TR.
Belyaev NN.
Stadnichuk MD.
Petrov AA.
J. Gen. Chem. USSR
1974,
44:
1914
21b
Belyaev NN.
Komissarova EV.
Stadnichuk MD.
J. Gen. Chem.
USSR
1982,
52:
1854
22
Miossec B.
Danion-Bougot R.
Danion D.
Synthesis
1994,
1171
23
Canisius J.
Schürmann M.
Preut H.
Krause N.
Acta Cryst.
1999,
C55:
IUC99001118
24
Canisius J.
Schürmann M.
Preut H.
Krause N.
Z. Kristallogr. New Cryst. Struct.
2001,
216:
599
25 The protonation of allenyl enolates
bearing alkyl substituents at C-2 also occurs without diastereoselectivity: Krause,
N. Unpublished results.
26a
Gelin R.
Gelin S.
Albrand M.
Bull. Soc. Chim. Fr.
1972,
1946
26b
Olsson L.-I.
Claesson A.
Synthesis
1979,
743
26c
Beaulieu PL.
Morisset VM.
Garratt DG.
Tetrahedron Lett.
1980,
21:
129
26d
Marshall JA.
Wang X.
J. Org. Chem.
1990,
55:
2995
26e
Marshall JA.
Wang X.-j.
J. Org.
Chem.
1991,
56:
4913
26f
Marshall JA.
Pinney KG.
J.
Org. Chem.
1993,
58:
7180
26g
Marshall JA.
Bartley GS.
J.
Org. Chem.
1994,
59:
7169
26h
Corey EJ.
Jones GB.
Tetrahedron
Lett.
1991,
32:
5713
26i
Aurrecoechea JM.
Solay M.
Tetrahedron
Lett.
1995,
36:
2501
26j
Ma S.
Gao W.
Tetrahedron Lett.
2000,
41:
8933
27a
Franck B.
Gehrken H.-P.
Angew.
Chem., Int. Ed. Engl.
1980,
19:
461 ; Angew. Chem. 1980, 92, 484
27b
Ganguli M.
Burka LT.
Harris TM.
J. Org. Chem.
1984,
49:
3762
28a
Boivin TLB.
Tetrahedron
1987,
43:
3309
28b
Koert U.
Stein M.
Wagner H.
Chem.-Eur.
J
1997,
3:
1170
29
Perron F.
Albizati KF.
Chem. Rev.
1989,
89:
1617
30
VanBrunt MP.
Standaert RF.
Org. Lett.
2000,
2:
705
31a With
Grignard reagents: Alexakis A.
Marek I.
Mangeney P.
Normant JF.
Tetrahedron
1991,
47:
1677
31b With organocuprates:
see ref.
[26f]
32
Krause N.
Laux M.
Hoffmann-Röder A.
Tetrahedron Lett.
2000,
41:
9613
33 Without transmetalation of the lithium
enolate to the less basic titanium enolate the only product obtained
by treatment with the acetone soln of DMDO is the aldol adduct of
the ester enolate with acetone.
34a
Adam W.
Hadjarapoglou L.
Top.
Curr. Chem.
1993,
164:
45
34b
Adam W.
Müller M.
Prechtl F.
J.
Org. Chem.
1994,
59:
2358
35 Hoffmann-Röder, A.; Krause,
N. Manuscript in preparation.
36a
Hoffmann-Röder A.
Krause N.
Org.
Lett.
2001,
3:
2537
36b For the corresponding
gold-catalyzed cyclization allenyl ketones to furans see: Hashmi ASK.
Schwarz L.
Choi J.-K.
Frost TM.
Angew.
Chem. Int. Ed.
2000,
39:
2285 ; Angew. Chem. 2000, 112, 2382
37
Shizuri Y.
Nishiyama S.
Imai D.
Yamamura S.
Tetrahedron Lett.
1984,
25:
4771
38
Mitchell P.
FEBS
Lett.
1977,
78:
1
Syntheses of racemic citreoviral:
39a
Ebenezer W.
Pattenden G.
Tetrahedron Lett.
1992,
33:
4053; and references cited therein
39b
Shizuri Y.
Nishiyama S.
Shigemori H.
Yamamura S.
J. Chem. Soc., Chem. Commun.
1985,
292
Syntheses of (+)-citreoviral
by stereoselective oxidations:
40a
Hatakeyama S.
Matsui Y.
Suzuki M.
Sakurai K.
Takano S.
Tetrahedron
Lett.
1985,
26:
6485
40b
Trost BM.
Lynch JK.
Angle SR.
Tetrahedron Lett.
1987,
28:
375
40c
Hatakeyama S.
Sakurai K.
Numata H.
Ochi N.
Takano S.
J.
Am. Chem. Soc.
1988,
110:
5201
41a
Nishiyama S.
Shizuri Y.
Yamamura S.
Tetrahedron Lett.
1985,
26:
231
41b
Suh H.
Wilcox CS.
J. Am. Chem. Soc.
1988,
110:
470
41c
Whang K.
Venkataraman H.
Kim YG.
Cha JK.
J. Org. Chem.
1991,
56:
7174
42
Mulzer J.
Bilow J.
Wille G.
J.
Prakt. Chem.
2000,
342:
773
43a
Williams DR.
White FH.
Tetrahedron Lett.
1985,
26:
2529
43b
Williams DR.
White FH.
J.
Org. Chem.
1987,
52:
5067
43c
Hanaki N.
Link JT.
MacMillan DWC.
Overman LE.
Trankle WG.
Wurster JA.
Org. Lett.
2000,
2:
223
44
Hoffmann HMR.
Krumwiede D.
Mucha B.
Oehlerking HH.
Prahst GW.
Tetrahedron
1993,
49:
8999
45
Kofron WG.
Baclawski LM.
J. Org. Chem.
1976,
41:
1879
46
Seki M.
Matsumoto K.
Synthesis
1996,
580
47
Kober R.
Steglich W.
Liebigs Ann. Chem.
1983,
599
48
Haubrich A.
Van Klaveren M.
Van Koten G.
Handke G.
Krause N.
J.
Org. Chem.
1993,
58:
5849
49
Arndt S.
Handke G.
Krause N.
Chem.
Ber.
1993,
126:
251
50a
Marshall JA.
DuBay WJ.
J. Org. Chem.
1993,
58:
3435
50b
Piotti ME.
Alper H.
J. Org. Chem.
1997,
62:
8484
51
Marshall JA.
Tang Y.
J. Org. Chem.
1994,
59:
1457