An Endoglycosidase with Alternative Glycan Specificity Allows Broadened Glycoprotein Remodelling
Jonathan Joseph Goodfellow(Mansfield University), Benjamin G. Davis(Rosalind Franklin Institute), Kavitha Baruah(University of Oxford), Camille Bonomelli(University of Oxford), David J. Harvey(Center for NanoScience), Benjamin A. Krishna(University of Cambridge), Max Crispin(University of Southampton), Keisuke Yamamoto(Mansfield University), Christopher N. Scanlan(University of Oxford)
Cited by 130
Related Papers
Selective chemical protein modification
|Nature Communications|2014|963
Defining the Transcriptional Landscape during Cytomegalovirus Latency with Single-Cell RNA Sequencing
|mBio|2018|184
Neurodevelopmental protein Musashi-1 interacts with the Zika genome and promotes viral replication
|Science|2017|181
Structural analysis of glycoproteins: building N-linked glycans with<i>Coot</i>
|Acta Crystallographica Section D Structural Biology|2018|142
Glycan clustering stabilizes the mannose patch of HIV-1 and preserves vulnerability to broadly neutralizing antibodies
|Nature Communications|2015|136