This subproject is one of many research subprojects utilizing the resources provided by a Center grant funded by NIH/NCRR. The subproject and investigator (PI) may have received primary funding from another NIH source, and thus could be represented in other CRISP entries. The institution listed is for the Center, which is not necessarily the institution for the investigator. Polar rearrangements of peroxides are the only synthetically useful carbon-to-oxygen migrations available for synthesis. While these transformations are potentially powerful, the peroxide starting materials are often hazardous to work with and not readily available. Herein we propose to develop a novel carbon-to-oxygen rearrangement applicable to tertiary alcohols and benzylic or allylic secondary alcohols. This will be achieved by tuning sulfur-oxygen linkages to provide electrophilic oxygen species with a good leaving group on oxygen. Specifically, we propose that carefully designed alkoxysulfonium ions will display the same rearrangement reactivity profile as peroxides. These transformations are predicted to provide an oxocarbenium ion intermediate, which opens the possibility of performing tandem reactions to produce complex oxygen-containing polycyclic products from simple alcohol starting materials. This methodology would find utility in the synthesis of a wide variety of oxygen-containing heterocycles found in both non-natural medicinal agents and natural products. It would also provide a solution to the current lack of general methodology available for the construction of medium- and large-size cyclic ethers and functionalized pyrans and furans, and would be particularly useful for the synthesis of complex unnatural monosaccharides. This methodology would represent a significant advance in the synthesis of oxycycles and in general would fill a void in polar rearrangement methodology. It is likely to be as synthetically useful as the analogous carbon-to-nitrogen rearrangements.

Agency
National Institute of Health (NIH)
Institute
National Center for Research Resources (NCRR)
Type
Exploratory Grants (P20)
Project #
5P20RR016462-05
Application #
7381409
Study Section
Special Emphasis Panel (ZRR1-RI-4 (02))
Project Start
2006-07-01
Project End
2007-06-30
Budget Start
2006-07-01
Budget End
2007-06-30
Support Year
5
Fiscal Year
2006
Total Cost
$16,940
Indirect Cost
Name
University of Vermont & St Agric College
Department
Chemistry
Type
Schools of Arts and Sciences
DUNS #
066811191
City
Burlington
State
VT
Country
United States
Zip Code
05405
Wagner, Benjamin A; Braddick, Valerie C; Batson, Christopher G et al. (2018) Effects of testosterone dose on spatial memory among castrated adult male rats. Psychoneuroendocrinology 89:120-130
Mireault, Gina C; Crockenberg, Susan C; Heilman, Keri et al. (2018) Social, cognitive, and physiological aspects of humour perception from 4 to 8 months: Two longitudinal studies. Br J Dev Psychol 36:98-109
Mireault, Gina C; Rainville, Brady S; Laughlin, Breanna (2018) Push or Carry? Pragmatic Opportunities for Language Development in Strollers vs. Backpacks. Infancy 23:616-624
Mireault, Gina C (2017) Laughing MATTERS. Sci Am Mind 28:33-37
Nock, Adam M; Wargo, Matthew J (2016) Choline Catabolism in Burkholderia thailandensis Is Regulated by Multiple Glutamine Amidotransferase 1-Containing AraC Family Transcriptional Regulators. J Bacteriol 198:2503-14
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Reddy, Vasudevi; Mireault, Gina (2015) Teasing and clowning in infancy. Curr Biol 25:R20-3
Symeonides, Menelaos; Murooka, Thomas T; Bellfy, Lauren N et al. (2015) HIV-1-Induced Small T Cell Syncytia Can Transfer Virus Particles to Target Cells through Transient Contacts. Viruses 7:6590-603
Xie, Yi; Jin, Yu; Merenick, Bethany L et al. (2015) Phosphorylation of GATA-6 is required for vascular smooth muscle cell differentiation after mTORC1 inhibition. Sci Signal 8:ra44

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