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3.
Chembiochem ; 15(10): 1446-51, 2014 Jul 07.
Article in English | MEDLINE | ID: mdl-24904006

ABSTRACT

The ability of cells to incorporate azidosugars metabolically is a useful tool for extracellular glycan labelling. The exposed azide moiety can covalently react with alkynes, such as bicyclo[6.1.0]nonyne (BCN), by strain-promoted alkyne-azide cycloaddition (SPAAC). However, the use of SPAAC can be hampered by low specificity of the cycloalkyne. In this article we describe the synthesis of more polar BCN derivatives and their properties for selective cellular glycan labelling. The new polar derivatives [amino-BCN, glutarylamino-BCN and bis(hydroxymethyl)-BCN] display reaction rates similar to those of BCN and are less cell-permeable. The labelling specificity in HEK293 cells is greater than that of BCN, as determined by confocal microscopy and flow cytometry. Interestingly, amino-BCN appears to be highly specific for the Golgi apparatus. In addition, the polar BCN derivatives label the N-glycan of the membrane calcium channel TRPV5 in HEK293 cells with significantly enhanced signal-to-noise ratios.


Subject(s)
Alkynes/chemistry , Azides/chemistry , Bridged Bicyclo Compounds/chemical synthesis , Fluorescent Dyes/chemical synthesis , Polysaccharides/analysis , Bridged Bicyclo Compounds/analysis , Click Chemistry , Cycloaddition Reaction , Flow Cytometry , Fluorescent Dyes/analysis , Glycosylation , HEK293 Cells , Humans , Microscopy, Confocal , Optical Imaging , Polysaccharides/chemistry
4.
Amino Acids ; 24(3): 263-6, 2003 Apr.
Article in English | MEDLINE | ID: mdl-12707807

ABSTRACT

Novel synthetic procedures for the modification of non-proteinogenic acetylene-containing amino acids have been developed. The functionalization either proceeds via zinc/copper-mediated introduction of alkyl substituents, or via tungsten-catalyzed ring-closing alkyne metathesis reactions.


Subject(s)
Acetylene/chemistry , Amino Acids/chemical synthesis , Amino Acids/chemistry , Catalysis , Copper/chemistry , Models, Chemical , Zinc/chemistry
5.
Chemistry ; 6(17): 3095-115, 2000 Sep 01.
Article in English | MEDLINE | ID: mdl-11002992

ABSTRACT

In this first of a series of four articles we introduce everninomicin 13,384-1 (1), a powerful antibiotic effective against drug resistant bacteria, as a target for total synthesis and discuss its retrosynthetic analysis. From the three defined fragments required for the synthesis (2: A1B(A)C fragment; 4: DE fragment; 5: FGHA2 fragment), we describe herein two approaches to the A1B(A)C block. The first strategy relied on an olefin metathesis reaction to construct a common intermediate for rings B and C, but was faced with final protecting group problems. The second, and successful approach, involved a 1,2-phenylsulfeno migration and a sulfur directed glycosidation procedure to link rings B and C, as well as an acyl fluoride intermediate to install the sterically hindered aryl ester moiety (ring A1). The final stages of the synthesis of the required 2-phenylseleno glycosyl fluoride 2 required introduction of a phenylseleno group at C-1 of ring C followed by a novel, DAST-promoted 1,2-migration to produce the desired 2-beta-phenylseleno glycosyl fluoride moiety.


Subject(s)
Aminoglycosides , Anti-Bacterial Agents/chemical synthesis , Anti-Bacterial Agents/chemistry , Molecular Structure , Spectrum Analysis
6.
Chemistry ; 6(17): 3166-85, 2000 Sep 01.
Article in English | MEDLINE | ID: mdl-11002995

ABSTRACT

Methods for the stereocontrolled construction of 1,1'-disaccharides, 2-deoxy glycosides, and orthoesters are reported. Specifically, a tin-acetal moiety was utilized to fix the anomeric stereochemistry of a carbohydrate acceptor leading to an efficient and stereoselective synthesis of 1,1'-disaccharides, while a newly discovered 1,2-phenylseleno migration reaction in carbohydrates opened entries to 2-deoxy glycosides and orthoesters. Thus, reaction of 2-hydroxy phenylselenoglycosides with DAST led to 2-phenylselenoglycosyl fluorides which reacted with carbohydrate acceptors to afford, stereoselectively, 2-phenylselenoglycosides. The latter compounds could be reductively deselenated to 2-deoxy glycosides or oxidatively converted to orthoesters via the corresponding ketene acetals.


Subject(s)
Aminoglycosides , Anti-Bacterial Agents/chemical synthesis , Carbohydrates/chemistry , Disaccharides/chemical synthesis , Glycosides/chemical synthesis , Anti-Bacterial Agents/chemistry , Esters/chemical synthesis , Molecular Structure , Solutions , Spectrum Analysis
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