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Expression and purification of the extracellular domains of human glycoprotein VI (GPVI) and the receptor for advanced glycation end products (RAGE) from Rattus norvegicus in Leishmania tarentolae. | LitMetric

AI Article Synopsis

  • Glycosylation is a complex modification that affects protein function, and while bacteria and yeast are commonly used for protein expression, they have limitations in glycosylation.
  • Insect and mammalian cells can produce more complex glycosylation but are harder to manage and more expensive.
  • The study explored using the protozoa Leishmania tarentolae as an alternative system, successfully expressing and properly glycosylating proteins from humans and rats.

Article Abstract

Glycosylation is one of the most complex post-translational modifications and may have significant influence on the proper function of the corresponding proteins. Bacteria and yeast are, because of easy handling and cost reasons, the most frequently used systems for recombinant protein expression. Bacteria generally do not glycosylate proteins and yeast might tend to hyperglycosylate. Insect cell- and mammalian cell-based expression systems are able to produce complex N-glycosylation structures but are more complex to handle and more expensive. The nonpathogenic protozoa Leishmania tarentolae is an easy-to-handle alternative expression system for production of proteins requiring the eukaryotic protein folding machinery and post-translational modifications. We used and evaluated the system for the secretory expression of extracellular domains from human glycoprotein VI and the receptor for advanced glycation end products from rat. Both proteins were well expressed and homogeneously glycosylated. Analysis of the glycosylation pattern identified the structure as the conserved core pentasaccharide ManGlcNac.

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Source
http://dx.doi.org/10.1080/10826068.2017.1365252DOI Listing

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