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  The influence of the electron density in acyl protecting groups on the selectivity of galactose formation

Greis, K., Leichnitz, S., Kirschbaum, C., Chang, C.-W., Lin, M.-H., Meijer, G., et al. (2022). The influence of the electron density in acyl protecting groups on the selectivity of galactose formation. Journal of the American Chemical Society, 144(44), 20258-20266. doi:10.1021/jacs.2c05859.

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Greis, Kim, Author
Leichnitz, Sabrina1, Author           
Kirschbaum, Carla, Author
Chang, Chun-Wei, Author
Lin, Mei-Huei2, Author           
Meijer, Gerard, Author
von Helden, Gert, Author
Seeberger, Peter H.2, Author                 
Pagel, Kevin, Author
Affiliations:
1Peter H. Seeberger - Vaccine Development, Biomolekulare Systeme, Max Planck Institute of Colloids and Interfaces, Max Planck Society, ou_1863308              
2Peter H. Seeberger - Automated Systems, Biomolekulare Systeme, Max Planck Institute of Colloids and Interfaces, Max Planck Society, ou_1863306              

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 Abstract: The stereoselective formation of 1,2-cis-glycosidic bonds is a major bottleneck in the synthesis of carbohydrates. We here investigate how the electron density in acyl protecting groups influences the stereoselectivity by fine-tuning the efficiency of remote participation. Electron-rich C4-pivaloylated galactose building blocks show an unprecedented α-selectivity. The trifluoroacetylated counterpart with electron-withdrawing groups, on the other hand, exhibits a lower selectivity. Cryogenic infrared spectroscopy in helium nanodroplets and density functional theory calculations revealed the existence of dioxolenium-type intermediates for this reaction, which suggests that remote participation of the pivaloyl protecting group is the origin of the high α-selectivity of the pivaloylated building blocks. According to these findings, an α-selective galactose building block for glycosynthesis is developed based on rational considerations and is subsequently employed in automated glycan assembly exhibiting complete stereoselectivity. Based on the obtained selectivities in the glycosylation reactions and the results from infrared spectroscopy and density functional theory, we suggest a mechanism by which these reactions could proceed.

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Language(s): eng - English
 Dates: 2022-10-262022
 Publication Status: Issued
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 Identifiers: DOI: 10.1021/jacs.2c05859
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Title: Journal of the American Chemical Society
  Other : JACS
  Abbreviation : J. Am. Chem. Soc.
Source Genre: Journal
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Publ. Info: Washington, DC : American Chemical Society
Pages: - Volume / Issue: 144 (44) Sequence Number: - Start / End Page: 20258 - 20266 Identifier: ISSN: 0002-7863