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O-Glycome Beam Search Arrays for Carbohydrate Ligand Discovery.


ABSTRACT: O-glycosylation is a post-translational modification of proteins crucial to molecular mechanisms in health and disease. O-glycans are typically highly heterogeneous. The involvement of specific O-glycan sequences in many bio-recognition systems is yet to be determined because of a lack of efficient methodologies. We describe here a targeted microarray approach: O-glycome beam search that is both robust and efficient for O-glycan ligand-discovery. Substantial simplification of the complex O-glycome profile and facile chromatographic resolution is achieved by arraying O-glycans as branches, monitoring by mass spectrometry, focusing on promising fractions, and on-array immuno-sequencing. This is orders of magnitude more sensitive than traditional methods. We have applied beam search approach to porcine stomach mucin and identified extremely minor components previously undetected within the O-glycome of this mucin that are ligands for the adhesive proteins of two rotaviruses. The approach is applicable to O-glycome recognition studies in a wide range of biological settings to give insights into glycan recognition structures in natural microenvironments.

SUBMITTER: Li Z 

PROVIDER: S-EPMC5750842 | biostudies-other | 2018 Jan

REPOSITORIES: biostudies-other

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O-Glycome Beam Search Arrays for Carbohydrate Ligand Discovery.

Li Zhen Z   Gao Chao C   Zhang Yibing Y   Palma Angelina S AS   Childs Robert A RA   Silva Lisete M LM   Liu Yang Y   Jiang Xi X   Liu Yan Y   Chai Wengang W   Feizi Ten T  

Molecular & cellular proteomics : MCP 20171128 1


<i>O</i>-glycosylation is a post-translational modification of proteins crucial to molecular mechanisms in health and disease. <i>O</i>-glycans are typically highly heterogeneous. The involvement of specific <i>O</i>-glycan sequences in many bio-recognition systems is yet to be determined because of a lack of efficient methodologies. We describe here a targeted microarray approach: <i>O</i>-glycome <i>beam search</i> that is both robust and efficient for <i>O</i>-glycan ligand-discovery. Substan  ...[more]

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