Abstract
Oxidation of Met affects the stability of proteins, and was identified as a step in the beta amyloid-dependent pathogenesis of Alzheimer's disease. One-electron oxidation of Met is facilitated through stabilization of sulfide radical cations with electron-rich heteroatoms. The formation of such 2-center-3-electron bonds, formed between sulfide radical cations and amides, leads to pronounced product selectivity during biologically relevant oxidation conditions. Conformationally constrained methionine analogs embedded within a norbornane framework, i.e., 2,6-endo, endo- and 2,6-exo, endo-pyrrolidine amide thiomethyl bicyclo[2.2.1]heptanes were synthesized. Oxidation of both methionine analogs in the Fenton oxidation yielded some sulfoxide. In addition, the oxidation of the endo, endo-derivative generated a vinyl sulfide while the exo, endo-derivative was converted into a ketone, indicating a selective influence of a sulfur-oxygen 2-center-3-electron bond on product formation. Mechanistic details of product formation were investigated through the incorporation of stable isotopes.
Original language | English (US) |
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Pages (from-to) | 7770-7789 |
Number of pages | 20 |
Journal | Tetrahedron |
Volume | 72 |
Issue number | 48 |
DOIs | |
State | Published - 2016 |
Keywords
- Conformationally constrained sulfide
- Fenton oxidation
- Neighboring group effect
- Sulfide radical cation
- Two center–three electron (2c–3e) bond
- methionine
ASJC Scopus subject areas
- Biochemistry
- Drug Discovery
- Organic Chemistry
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CCDC 1945776: Experimental Crystal Structure Determination
Mozziconacci, O. (Contributor), Bhagavathy, G. V. (Contributor), Yamamoto, T. (Contributor), Wilson, G. S. (Contributor), Glass, R. S. (Contributor) & Schöneich, C. (Contributor), Cambridge Crystallographic Data Centre, 2019
DOI: 10.5517/ccdc.csd.cc239qz4, http://www.ccdc.cam.ac.uk/services/structure_request?id=doi:10.5517/ccdc.csd.cc239qz4&sid=DataCite
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