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Methicillin-resistant Staphylococcus aureus alters cell wall glycosylation to evade immunity
Gerlach, David,Guo, Yinglan,De Castro, Cristina,Kim, Sun-Hwa,Schlatterer, Katja,Xu, Fei-Fei,Pereira, Claney,Seeberger, Peter H.,Ali, Sara,Codé,e, Jeroen,Sirisarn, Wanchat,Schulte, Berit,Wolz, Ch Springer Science and Business Media LLC 2018 Nature Vol.563 No.7733
Synthetic GPI array to study antitoxic malaria response
Kamena, Faustin,Tamborrini, Marco,Liu, Xinyu,Kwon, Yong-Uk,Thompson, Fiona,Pluschke, Gerd,Seeberger, Peter H NATURE PUBLISHING GROUP 2008 NATURE CHEMICAL BIOLOGY Vol. No.
Parasite glycosylphosphatidylinositol (GPI) is an important toxin in malaria disease, and people living in malaria-endemic regions often produce high levels of anti-GPI antibodies. The natural anti-GPI antibody response needs to be understood to aid the design of an efficient carbohydrate-based antitoxin vaccine. We present a versatile approach based on a synthetic GPI glycan array to correlate anti-GPI antibody levels and protection from severe malaria.