个性化文献订阅>期刊> Journal of Biological Chemistry
 

Engineering Mammalian Mucin-type O-Glycosylation in Plants

  作者 Yang, Z; Drew, DP; Jorgensen, B; Mandel, U; Bach, SS; Ulvskov, P; Levery, SB; Bennett, EP; Clausen, H; Petersen, BL  
  选自 期刊  Journal of Biological Chemistry;  卷期  2012年287-15;  页码  11911-11923  
  关联知识点  
 

[摘要]Mucin-type O-glycosylation is an important post-translational modification that confers a variety of biological properties and functions to proteins. This post-translational modification has a particularly complex and differentially regulated biosynthesis rendering prediction and control of where O-glycans are attached to proteins, and which structures are formed, difficult. Because plants are devoid of GalNAc-type O-glycosylation, we have assessed requirements for establishing human GalNAc O-glycosylation de novo in plants with the aim of developing cell systems with custom-designed O-glycosylation capacity. Transient expression of a Pseudomonas aeruginosa Glc(NAc) C4-epimerase and a human polypeptide GalNActransferase in leaves of Nicotiana benthamiana resulted in GalNAc O-glycosylation of co-expressed human O-glycoprotein substrates. A chimeric YFP construct containing a 3.5 tandem repeat sequence of MUC1 was glycosylated with up to three and five GalNAc residues when co-expressed with GalNAc-T2 and a combination of GalNAc-T2 and GalNAc-T4, respectively, as determined by mass spectrometry. O-Glycosylation was furthermore demonstrated on a tandem repeat of MUC16 and interferon alpha 2b. In plants, prolines in certain classes of proteins are hydroxylated and further substituted with plant-specific O-glycosylation; unsubstituted hydroxyprolines were identified in our MUC1 construct. In summary, this study demonstrates that mammalian type O-glycosylation can be established in plants and that plants may serve as a host cell for production of recombinant O-glycoproteins with custom-designed O-glycosy-lation. The observed hydroxyproline modifications, however, call for additional future engineering efforts.

 
      被申请数(0)  
 

[全文传递流程]

一般上传文献全文的时限在1个工作日内