Synthesis 2017; 49(16): 3576-3581
DOI: 10.1055/s-0036-1588804
special topic
© Georg Thieme Verlag Stuttgart · New York

Nickel-Promoted Reductive Cyclization Cascade: A Short Synthesis of a New Aromatic Strigolactone Analogue

Jian Xiao
State Key Laboratory of Applied Organic Chemistry, Lanzhou University, Lanzhou, Gansu 730000, P. R. of China   eMail: pengyu@lzu.edu.cn
,
Ya-Wen Wang
State Key Laboratory of Applied Organic Chemistry, Lanzhou University, Lanzhou, Gansu 730000, P. R. of China   eMail: pengyu@lzu.edu.cn
,
Yu Peng  *
State Key Laboratory of Applied Organic Chemistry, Lanzhou University, Lanzhou, Gansu 730000, P. R. of China   eMail: pengyu@lzu.edu.cn
› Institutsangaben
Gefördert durch: This work was supported by the National Natural Science Foundation of China (21472075) and the Ministry of Education of China (PCSIRT-15R28, lzujbky-2016-51, lzujbky-2016-ct02).
Weitere Informationen

Publikationsverlauf

Received: 13. März 2017

Accepted after revision: 29. März 2017

Publikationsdatum:
04. Mai 2017 (online)


Published as part of the Special Topic Advanced Strategies in Synthesis with Nickel

Abstract

A stereospecific synthesis of the tetrahydro-2H-indeno[1,2-b]furan skeleton, which is embedded in bioactive aromatic strigolactones such as GR24, is realized by a nickel-mediated tandem cross-coupling for the first time. The observed cis-stereoselectivity during the intramolecular formation of the Csp3–Csp2 bond is rationalized through conformation analysis and DFT calculations.

Supporting Information

 
  • References

    • 3a Akiyama K. Matsuzaki K.-I. Hayashi H. Nature (London) 2005; 435: 824
    • 3b Umehara M. Hanada A. Yoshida S. Akiyama K. Arite T. Takeda-Kamiya N. Magome H. Kamiya Y. Shirasu K. Yoneyama K. Kyozuka J. Yamaguchi S. Nature (London) 2008; 455: 195
    • 3c Jiang L. Liu X. Xiong G. Liu H. Chen F. Wang L. Meng X. Liu G. Yu H. Yuan Y. Yi W. Zhao L. Ma H. He Y. Wu Z. Melcher K. Qian Q. Xu HE. Wang Y. Li J. Nature (London) 2013; 504: 401
    • 3d Toh S. Holbrook-Smith D. Stogios PJ. Onopriyenko O. Lumba S. Tsuchiya Y. Savchenko A. McCourt P. Science (Washington, D. C.) 2015; 350: 203
  • 4 Johnson AW. Gowda G. Hassanali A. Knox J. Monaco S. Razavi Z. Rosebery G. J. Chem. Soc., Perkin Trans. 1 1981; 1734
  • 9 Peng Y. Xiao J. Xu X.-B. Duan S.-M. Ren L. Shao Y.-L. Wang Y.-W. Org. Lett. 2016; 18: 5170
  • 10 See the CIF file in the Supporting Information for more details. CCDC-1484087 (9) and CCDC-1484088 (epi-10) contain the supplementary crystallographic data for this paper. The data can be obtained free of charge from The Cambridge Crystallographic Data Centre via www.ccdc.cam.ac.uk/getstructures.
  • 11 Frisch MJ. Trucks GW. Schlegel HB. Scuseria GE. Robb MA. Cheeseman JR. Scalmani G. Barone V. Mennucci B. Petersson GA. Nakatsuji H. Caricato M. Li X. Hratchian HP. Izmaylov AF. Bloino J. Zheng G. Sonnenberg JL. Hada M. Ehara M. Toyota K. Fukuda R. Hasegawa J. Ishida M. Nakajima T. Honda Y. Kitao O. Nakai H. Vreven T. Montgomery JA. Jr. Peralta JE. Ogliaro F. Bearpark M. Heyd JJ. Brothers E. Kudin KN. Staroverov VN. Kobayashi R. Normand J. Raghavachari K. Rendell A. Burant JC. Iyengar SS. Tomasi J. Cossi M. Rega N. Millam JM. Klene M. Knox JE. Cross JB. Bakken V. Adamo C. Jaramillo J. Gomperts R. Stratmann RE. Yazyev O. Austin AJ. Cammi R. Pomelli C. Ochterski J. Martin RL. Morokuma K. Zakrzewski VG. Voth GA. Salvador P. Dannenberg JJ. Dapprich S. Daniels AD. Farkas O. Foresman JB. Ortiz JV. Cioslowski J. Fox DJ. Gaussian09 (Revision A.1) . Gaussian Inc; Wallingford CT: 2009
  • 13 They were easily prepared from the corresponding o-iodobenzaldehyde or o-iodobenzoic acids.
  • 14 It was prepared according to a known procedure, see: MacAlpine GA. Raphael RA. Shaw A. Taylor AW. Wild H.-J. J. Chem. Soc., Perkin Trans. 1 1976; 410