Shrestha Ganesh, Panza Matteo, Singh Yashapal, Stine Keith J, Demchenko Alexei V
Department of Chemistry and Biochemistry, University of Missouri - St. Louis, One University Boulevard, St. Louis, Missouri 63121, USA.
Department of Chemistry, Saint Louis University, 3501 Laclede Ave, St. Louis, Missouri, 63103, USA.
European J Org Chem. 2022 May 13;2022(18). doi: 10.1002/ejoc.202200300. Epub 2022 Apr 21.
While studying indolylthio glycosides, previously we determined their activation profile that required large excess of activators. This drawback was partially addressed in the present study of N-alkylated SInR derivatives. The activation process was studied by NMR and the increased understanding of the mechanism led to a discovery of different activation pathways taking place with SIn versus SInR derivatives. Also investigated was orthogonality of the SInR leaving groups versus thioglycosides and selective activation of thioimidates over SInR glycosides.
在研究吲哚硫代糖苷时,我们之前确定了它们的活化特征,这需要大量过量的活化剂。在目前对N-烷基化SInR衍生物的研究中,这一缺点得到了部分解决。通过核磁共振研究了活化过程,对其机制的进一步了解导致发现了SIn与SInR衍生物发生的不同活化途径。还研究了SInR离去基团与硫代糖苷的正交性以及硫代亚胺酸酯相对于SInR糖苷的选择性活化。