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[C. Omics & Fusion Biology] C-4




               Mouse Brain N-Glycome DB: Investigation of brain region-


                     specific N-glycome diversity using nanoLC-MS/MS





                                    Dongtan Yin¹,², Hee Young Jo¹,², Hyun Joo An¹,²*

          ¹Graduate School of Analytical Science and Technology, Chungnam National University, Daejeon 34134, Korea,

                  ²Asia-pacific Glycomics Reference Site, Chungnam National University, Daejeon 34134, Korea





        In the mammalian brain, over 70% of proteome is known to be glycosylated, and a large fraction of the glycosylation

        is N-glycome. Protein N-glycosylation plays an important role in neuro-biological, including neural development,
        and neurotransmitter receptor regulation. However, our current understanding of N-glycome for exploring brain

        biological  function  remains  largely  limited  due  to  structurally  complexity  and  heterogeneity.  To  facilitate  brain
        glycosylation studies, we built a glycome database using PGC nanoLC-MS/MS, an isomer-sensitive and reproducible

        glycan  analysis  platform.  In  detail,  putative  brain  glycan  structures  were  elucidated  by  considering  diagnostic
        fragment peaks in MS/MS and RT together. A total of 130 N-glycans were found in brain including 44 glycans (~90%

        NAPI), detected in all brain samples. Interestingly, the major 44 N-glycans exhibited unique glycomic characteristics
        of the brain, consisting predominantly of high-mannose and fucosylated/bisected glycans. In addition, at least 87

        N-glycans such as bisected/sialylated hybride type,  sialylated LacdiNAc/HexNAc, outer  fucosylated  glycans with
        sialylated HexNAc, highly branched and fucosylated, and Lewis Y(B) contributed to the diversity of brain region-

        speicfic N-glycome, A total of 130 N-glycans, including structural information of glyco biosynthesis, were entered
        into the database for each brain region. This will be used as an excellent resource for brain glycome research.
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