Chemical Synthesis and Biological Evaluation of Sulfated DK4 Derivatives from Escherichia coli K4 Polysaccharide
Yajia Wang, Yue Chen, Meiling Qiu, Shuqin XuThree sulfated derivatives were synthesized using microbially derived defructosylated K4 (DK4) polysaccharide as a chondroitin-like polysaccharide backbone. The obtained derivatives were structurally characterized by nuclear magnetic resonance spectroscopy, Fourier-transform infrared spectroscopy, elemental analysis, and disaccharide composition analysis. The results demonstrated that sulfate groups were successfully introduced into the DK4 structure, while the main chondroitin-like polysaccharide backbone of DK4 was largely preserved after sulfation. Further biological evaluation indicated that the sulfated DK4 derivatives differentially altered the expression levels of Ras homolog family member A/Rho-associated coiled-coil-containing protein kinase 1 (RhoA/ROCK1) and myelin basic protein (MBP). This work provides an experimental basis for further elucidating the structure–activity relationship between sulfation patterns and glial cell functions.