This proposal describes free radical-mediated aryl and vinyl amination reactions to synthesize indoline and pyrrolidine heterocycles, respectively. By virtue of the pH-neutral conditions involved, this technology is superior to most alternative methods by measures of chemoselectivity. The strategy differs conceptually in that activation of a nitrogen carbon pi bond in the amine is involved instead of nitrogen-hydrogen sigma bond activation. To accomplish amination, carbon radicals are regioselectively added to the nitrogen of the azomethine. In so far as carbon radicals are known to add efficiently to the carbon of a variety of azomethinecontaining functional groups, the additions described are highly nonconventional and nearly without precedent. The mild reaction conditions are uniquely well-suited to transformations of structurally complex and highly functionalized intermediates used in target-oriented synthesis. The use of radical intermediates also allows development of tandem bond-forming processes. The development of radical-mediated aryl amination is extended to convergent indoline annulation strategies. These processes are unique in their ability to enantioselectively construct indoline heterocycles, including alpha-amino acids. To illustrate some of the important characteristics of this method, a total synthesis is proposed of a member of the ambiguine indole alkaloids for which no synthesis route exists. The development of free radical-mediated vinyl amination includes use of the enamine products as intermediates toward functionalized pyrrolidines. The importance of these pyrrolidinyl enamines is demonstrated by the convergent and concise synthesis of nat-mitomycin C for which no enantioselective synthesis currently exists.

Agency
National Institute of Health (NIH)
Institute
National Institute of General Medical Sciences (NIGMS)
Type
Research Project (R01)
Project #
5R01GM063557-04
Application #
6890271
Study Section
Medicinal Chemistry Study Section (MCHA)
Program Officer
Schwab, John M
Project Start
2002-03-01
Project End
2005-12-31
Budget Start
2005-05-01
Budget End
2005-12-31
Support Year
4
Fiscal Year
2005
Total Cost
$103,509
Indirect Cost
Name
Indiana University Bloomington
Department
Chemistry
Type
Schools of Arts and Sciences
DUNS #
006046700
City
Bloomington
State
IN
Country
United States
Zip Code
47401
Batiste, Suzanne M; Johnston, Jeffrey N (2018) Evidence for Ion-Templation During Macrocyclooligomerization of Depsipeptides. J Am Chem Soc 140:4560-4568
Tokumaru, Kazuyuki; Bera, Kalisankar; Johnston, Jeffrey N (2017) 1,3,4-Oxadiazole and Heteroaromatic-Fused 1,2,4-Triazole Synthesis using Diverted Umpolung Amide Synthesis. Synthesis (Stuttg) 49:4670-4675
Tokumaru, Kazuyuki; Johnston, Jeffrey N (2017) A convergent synthesis of 1,3,4-oxadiazoles from acyl hydrazides under semiaqueous conditions. Chem Sci 8:3187-3191
Lim, Victoria T; Tsukanov, Sergey V; Stephens, Amanda B et al. (2016) Enantioselective Synthesis of ?-Bromonitroalkanes for Umpolung Amide Synthesis: Preparation of tert-Butyl ((1R)-1-(4-(benzyloxy)phenyl)-2-bromo-2-nitroethyl)carbamate. Organic Synth 93:88-99
Batiste, Suzanne M; Johnston, Jeffrey N (2016) Rapid synthesis of cyclic oligomeric depsipeptides with positional, stereochemical, and macrocycle size distribution control. Proc Natl Acad Sci U S A 113:14893-14897
Schwieter, Kenneth E; Johnston, Jeffrey N (2015) Enantioselective Synthesis of D-?-Amino Amides from Aliphatic Aldehydes. Chem Sci 6:2590-2595
Schwieter, Kenneth E; Johnston, Jeffrey N (2015) Enantioselective Addition of Bromonitromethane to Aliphatic N-Boc Aldimines Using a Homogeneous Bifunctional Chiral Organocatalyst. ACS Catal 5:6559-6562
Makley, Dawn M; Johnston, Jeffrey N (2014) Silyl imine electrophiles in enantioselective catalysis: a Rosetta Stone for peptide homologation, enabling diverse N-protected aryl glycines from aldehydes in three steps. Org Lett 16:3146-9
Schwieter, Kenneth E; Shen, Bo; Shackleford, Jessica P et al. (2014) Umpolung amide synthesis using substoichiometric N-iodosuccinimide (NIS) and oxygen as a terminal oxidant. Org Lett 16:4714-7
Pigza, Julie A; Han, Jeong-Seok; Chandra, Aroop et al. (2013) Total synthesis of the Lycopodium alkaloid serratezomine A using free radical-mediated vinyl amination to prepare a ýý-stannyl enamine linchpin. J Org Chem 78:822-43

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