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Nonenzymatic synthesis of anomerically pure, mannosyl-based molecular probes for scramblase identification studies.


ABSTRACT: The chemical synthesis of molecular probes to identify and study membrane proteins involved in the biological pathway of protein glycosylation is described. Two short-chain glycolipid analogs that mimic the naturally occurring substrate mannosyl phosphoryl dolichol exhibit either photoreactive and clickable properties or allow the use of a fluorescence readout. Both probes consist of a hydrophilic mannose headgroup that is linked to a citronellol derivative via a phosphodiester bridge. Moreover, a novel phosphoramidite chemistry-based method offers a straightforward approach for the non-enzymatic incorporation of the saccharide moiety in an anomerically pure form.

SUBMITTER: Picca G 

PROVIDER: S-EPMC7385334 | biostudies-literature | 2020

REPOSITORIES: biostudies-literature

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Nonenzymatic synthesis of anomerically pure, mannosyl-based molecular probes for scramblase identification studies.

Picca Giovanni G   Probst Markus M   Langenegger Simon M SM   Khorev Oleg O   Bütikofer Peter P   Menon Anant K AK   Häner Robert R  

Beilstein journal of organic chemistry 20200720


The chemical synthesis of molecular probes to identify and study membrane proteins involved in the biological pathway of protein glycosylation is described. Two short-chain glycolipid analogs that mimic the naturally occurring substrate mannosyl phosphoryl dolichol exhibit either photoreactive and clickable properties or allow the use of a fluorescence readout. Both probes consist of a hydrophilic mannose headgroup that is linked to a citronellol derivative via a phosphodiester bridge. Moreover,  ...[more]

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