A Click-Chemistry Linked 2'3'-cGAMP Analogue

2'3'-cGAMP is an uncanonical cyclic dinucleotide where one A and one G base are connected via a 3'-5' and a unique 2'-5' linkage. The molecule is produced by the cyclase cGAS in response to cytosolic DNA binding. cGAMP activates STING and hence one of the most powerful...

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Veröffentlicht in:Chemistry : a European journal 2019-02, Vol.25 (8), p.2089-2095
Hauptverfasser: Dialer, Clemens Reto, Stazzoni, Samuele, Drexler, David Jan, Müller, Felix Moritz, Veth, Simon, Pichler, Alexander, Okamura, Hidenori, Witte, Gregor, Hopfner, Karl-Peter, Carell, Thomas
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Sprache:eng
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Zusammenfassung:2'3'-cGAMP is an uncanonical cyclic dinucleotide where one A and one G base are connected via a 3'-5' and a unique 2'-5' linkage. The molecule is produced by the cyclase cGAS in response to cytosolic DNA binding. cGAMP activates STING and hence one of the most powerful pathways of innate immunity. cGAMP analogues with uncharged linkages that feature better cellular penetrability are currently highly desired. Here, the synthesis of a cGAMP analogue with one amide and one triazole linkage is reported. The molecule is best prepared via a first Cu -catalyzed click reaction, which establishes the triazole, while the cyclization is achieved by macrolactamization.
ISSN:1521-3765
DOI:10.1002/chem.201805409