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Critical role of evolutionarily conserved glycosylation at Asn211 in the intracellular trafficking and activity of sialyltransferase ST3Gal-II.

Biochem J. 2015; 
Ruggiero FM, Vilcaes AA, Iglesias-Bartolomé R, Daniotti JL.
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Gene Synthesis Ruggiero and others EXPERIMENTAL Plasmids and site-directed mutagenesis The plasmid coding for the human ST3Gal-II tagged at the C-terminus with the epitope c-myc (pCi-hST3Gal-II-myc) was synthesized by Genscript. Get A Quote

摘要

ST3Gal-II, a type II transmembrane protein, is the main mammalian sialyltransferase responsible for GD1a and GT1b ganglioside biosynthesis in brain. It contains two putative N-glycosylation sites (Asn(92) and Asn(211)). Whereas Asn(92) is only conserved in mammalian species, Asn(211) is highly conserved in mammals, birds and fish. The present study explores the occupancy and relevance for intracellular trafficking and enzyme activity of these potential N-glycosylations in human ST3Gal-II. We found that ST3Gal-II distributes along the Golgi complex, mainly in proximal compartments. By pharmacological, biochemical and site-directed mutagenesis, we observed that ST3Gal-II is mostly N-glycosylated at Asn(211) and ... More

关键词

Golgi complex; N-glycan trimming; N-glycosylation; ST3Gal-II; ganglioside; glycolipid; sialyltransferase