Origins of Selectivity in Pericyclic Reaction Cascades for the Synthesis of Gambogin and Lateriflorone

2006 ◽  
Vol 8 (14) ◽  
pp. 2989-2992 ◽  
Author(s):  
Amy E. Hayden ◽  
Hao Xu ◽  
K. C. Nicolaou ◽  
K. N. Houk
2004 ◽  
Vol 6 (23) ◽  
pp. 4273-4275 ◽  
Author(s):  
Zeve R. Akerling ◽  
Joseph E. Norton ◽  
K. N. Houk

ChemInform ◽  
2005 ◽  
Vol 36 (13) ◽  
Author(s):  
Zeve R. Akerling ◽  
Joseph E. Norton ◽  
K. N. Houk

2019 ◽  
Author(s):  
Clare Bakewell ◽  
Martí Garçon ◽  
Richard Y Kong ◽  
Louisa O'Hare ◽  
Andrew J. P. White ◽  
...  

The reactions of an aluminium(I) reagent with a series of 1,2-, 1,3- and 1,5-dienes are reported. In the case of 1,3-dienes the reaction occurs by a pericyclic reaction mechanism, specifically a cheletropic cycloaddition, to form aluminocyclopentene containing products. This mechanism has been interrogated by stereochemical experiments and DFT calculations. The stereochemical experiments show that the (4+1) cycloaddition follows a suprafacial topology, while calculations support a concerted albeit asynchronous pathway in which the transition state demonstrates aromatic character. Remarkably, the substrate scope of the (4+1) cycloaddition includes dienes that are either in part, or entirely, contained within aromatic rings. In these cases, reactions occur with dearomatisation of the substrate and can be reversible. In the case of 1,2- or 1,5-dienes complementary reactivity is observed; the orthogonal nature of the C=C π-bonds (1,2-diene) and the homoconjugated system (1,5-diene) both disfavour a (4+1) cycloaddition. Rather, reaction pathways are determined by an initial (2+1) cycloaddition to form an aluminocyclopropane intermediate which can in turn undergo insertion of a further C=C π-bond leading to complex organometallic products that incorporate fused hydrocarbon rings.


Author(s):  
Santanu Panda ◽  
Kanak Kanti Das ◽  
Parveen Kumar ◽  
Debraj Ghorai ◽  
Buddhadeb Mondal

2021 ◽  
Author(s):  
Derik Wilbers ◽  
Joseph Brehm ◽  
Richard Lewis ◽  
Jacqueline Van Marwijk ◽  
Thomas Davies ◽  
...  

The combination of heterogeneous catalysis and biocatalysis into one-pot reaction cascades is a potential approach to integrate enzymatic transformations into existing chemical infrastructure. Peroxygenases, which can achieve clean C-H activation,...


2020 ◽  
Vol 3 (1) ◽  
Author(s):  
Simon Bachler ◽  
Dominik Haidas ◽  
Marion Ort ◽  
Todd A. Duncombe ◽  
Petra S. Dittrich

AbstractIn the field of bottom-up synthetic biology, lipid membranes are the scaffold to create minimal cells and mimic reactions and processes at or across the membrane. In this context, we employ here a versatile microfluidic platform that enables precise positioning of nanoliter droplets with user-specified lipid compositions and in a defined pattern. Adjacent droplets make contact and form a droplet interface bilayer to simulate cellular membranes. Translocation of molecules across membranes are tailored by the addition of alpha-hemolysin to selected droplets. Moreover, we developed a protocol to analyze the translocation of non-fluorescent molecules between droplets with mass spectrometry. Our method is capable of automated formation of one- and two-dimensional droplet networks, which we demonstrated by connecting droplets containing different compound and enzyme solutions to perform translocation experiments and a multistep enzymatic cascade reaction across the droplet network. Our platform opens doors for creating complex artificial systems for bottom-up synthetic biology.


2005 ◽  
Vol 117 (39) ◽  
pp. 6542-6545 ◽  
Author(s):  
Brett Helms ◽  
Steven J. Guillaudeu ◽  
Yu Xie ◽  
Meredith McMurdo ◽  
Craig J. Hawker ◽  
...  

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