All N-linked glycoproteins, a fundamental class of glycoconjugates responsible for many recognition phenomena and susceptible to modify the conformations and activities of proteins in many disease states, consists of a common core pentasaccharide to which are attached usually two, sometimes three, antennary saccharides which modify activity and confer post-translational specificity. At the branch point of the common core pentasaccahride is a beta-mannopyranoside residue, one of the more difficult types of glycosidic linkage to synthesize. Beta- Mannospyranoside linkages are also found in numerous other natural oligosaccharides such as in a series of glycolipids from Hyriopsis schlegelli, in components of the phosphomannan-protein complex of Candida albicans, and in a novel phospholipase C inhibitor known as caloporoside. The closely related beta-rhamnopyranosides (6-deoxy- betamannopyranosides) occur very frequently as constituents of the repeating units of capsular polysaccharides, especially those from Streptococcus pneumoniae, and Escherichia hermanni. The isolation of pure glycoconjugates from nature is extremely tedious and hampers any thorough investigation of their properties and potential medical use. Chemical synthesis is therefore a very attractive entry into these molecules.
The aims of this project are: i)to develop technology for the efficient, highly stereoslective synthesis of the 1,2-cis-equatorial class of pyranosides, as found in the beta-mannosides and beta- rhamnosides, ii)to illustrate this technology through its application to the synthesis of biologically relevant target molecules; and iii)to adapt the chemistry to the solid and fluorous phases.

Agency
National Institute of Health (NIH)
Institute
National Institute of General Medical Sciences (NIGMS)
Type
Research Project (R01)
Project #
5R01GM057335-04
Application #
6386856
Study Section
Medicinal Chemistry Study Section (MCHA)
Program Officer
Schwab, John M
Project Start
1998-05-01
Project End
2002-04-30
Budget Start
2001-05-01
Budget End
2002-04-30
Support Year
4
Fiscal Year
2001
Total Cost
$212,012
Indirect Cost
Name
University of Illinois at Chicago
Department
Chemistry
Type
Schools of Arts and Sciences
DUNS #
121911077
City
Chicago
State
IL
Country
United States
Zip Code
60612
Crich, David; Rahaman, Md Yeajur (2011) Synthesis and structural verification of the xylomannan antifreeze substance from the freeze-tolerant Alaskan beetle Upis ceramboides. J Org Chem 76:8611-20
Crich, David (2011) Methodology development and physical organic chemistry: a powerful combination for the advancement of glycochemistry. J Org Chem 76:9193-209
Sharma, Indrajeet; Crich, David (2011) Direct Fmoc-chemistry-based solid-phase synthesis of peptidyl thioesters. J Org Chem 76:6518-24
Crich, David; Rahaman, Md Yeajur (2010) Dihydro-3-(triphenylphosphoranylidene)-2,5-thiophendione: A Convenient Synthon for the Preparation of Substituted 1,4-Thiazepin-5-ones and Piperidinones via the Intermediacy of Thioacids. Tetrahedron 66:6383-6390
Crich, David; Picard, Sebastien (2009) Highly stereoselective synthesis of alpha-D-mannopyranosyl phosphosugars. J Org Chem 74:9576-9
Crich, David; Li, Linfeng; Shirai, Michio (2009) The 4-(tert-butyldiphenylsiloxy)-3-fluorobenzyl group: a new alcohol protecting group, fully orthogonal with the p-methoxybenzyl group and removable under desilylation conditions. J Org Chem 74:2486-93
Crich, David; Li, Linfeng (2009) Stereocontrolled synthesis of D- and L-beta-rhamnopyranosides with 4-O-6-S-alpha-cyanobenzylidene-protected 6-thiorhamnopyranosyl thioglycosides. J Org Chem 74:773-81
Crich, David; Karatholuvhu, Maheswaran S (2008) Application of the 4-trifluoromethylbenzenepropargyl ether group as an unhindered, electron deficient protecting group for stereoselective glycosylation. J Org Chem 73:5173-6
Crich, David; Li, Ming (2008) Block synthesis of tetra- and hexasaccharides (beta-D-glycero-D-manno-Hep p-(1-->4)-[alpha-l-Rha p-(1-->3)-beta-D-glycero-D-manno-Hep p-(1-->4)]n-alpha-L-Rha p-OMe (n = 1 and 2)) corresponding to multiple repeat units of the glycan from the surface-layer J Org Chem 73:7003-10
Crich, David; Wu, Baolin; Jayalath, Prasanna (2007) Convergent synthesis of a beta-(1-->3)-mannohexaose. J Org Chem 72:6806-15

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