Limited Addition of the 6-Arm beta 1,2-linked N-Acetylglucosamine (GlcNAc) Residue Facilitates the Formation of the Largest N-Glycan in Plants

  • Yoo, Jae Yong
  • Ko, Ki Seong
  • Seo, Hyun-Kyeong
  • Park, Seongha
  • Fanata, Wahyu Indra Duwi
  • ... Lee, Kyun Oh
  • 외 6명
Citations

WEB OF SCIENCE

18
Citations

SCOPUS

17

초록

The most abundant N-glycan in plants is the paucimannosidic N-glycan with core beta 1,2-xylose and alpha 1,3-fucose residues (Man(3)XylFuc(GlcNAc)(2)). Here, we report a mechanism in Arabidopsis thaliana that efficiently produces the largest-N-glycan in plants. Genetic and biochemical evidence indicates that the addition of the 6-arm beta 1,2-GlcNAc residue by N-acetylglucosaminyltransferase II (GnTII) is less effective than additions of the core beta 1,2-xylose and alpha 1,3-fucose residues by XylT, FucTA, and FucTB in Arabidopsis. Furthermore, analysis of gnt2 mutant and 35S:GnTII transgenic plants shows that the addition of the 6-arm non-reducing GlcNAc residue to the common N-glycan acceptor GlcNAcMan(3)(GlcNAc)(2) inhibits additions of the core beta 1,2-xylose and alpha 1,3-fucose residues. Our findings indicate that plants limit the rate of the addition of the 6-arm GlcNAc residue to the common N-glycan acceptor as a mechanism to facilitate formation of the prevalent N-glycans with Man(3)XylFuc(GlcNAc)(2) and (GlcNAc)(2)Man(3)XylFuc(GlcNAc)(2) structures.

키워드

ALPHA-MANNOSIDASE-IICORE ALPHA-1,3-LINKED FUCOSEENDOPLASMIC-RETICULUMARABIDOPSIS-THALIANALINKED OLIGOSACCHARIDESSECRETORY PATHWAYMOLECULAR-CLONINGGOLGI-APPARATUSIN-VIVOCOMPLEX
제목
Limited Addition of the 6-Arm beta 1,2-linked N-Acetylglucosamine (GlcNAc) Residue Facilitates the Formation of the Largest N-Glycan in Plants
저자
Yoo, Jae YongKo, Ki SeongSeo, Hyun-KyeongPark, SeonghaFanata, Wahyu Indra DuwiHarmoko, RiknoRamasamy, Nirmal KumarThulasinathan, ThiyagarajanMengiste, TesfayeLim, Jae-MinLee, Sang YeolLee, Kyun Oh
DOI
10.1074/jbc.M115.653162
발행일
2015-07-03
유형
Article
저널명
Journal of Biological Chemistry
290
27
페이지
16560 ~ 16572