Co- and posttranslational engineering of erythropoietin
with unnatural amino acids
Erythropoietin is the most important drug to treat different types of anaemia. Glycosylation accounts for 40% of its molecular weight and is very important for the protein stability. Until now, glycoproteins are produced in eukaryotic cells resulting in a heterogeneous glycosylation pattern. This structural heterogeneity of N-linked oligosaccharides encumbers the correlation of glycan structure with glycoprotein function. Herein, a semi-synthetic approach is presented for the production of EPO with well-defined glycan structures at specific positions. E. coli cells were used to incorporate non-natural amino acids into EPO by amber stop codon…
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Produktdetails
- ISBN: 978-620-2-32182-2
- EAN: 9786202321822
- Produktnummer: 37484547
- Verlag: Südwestdeutscher Verlag für Hochschulschriften
- Sprache: Englisch
- Erscheinungsjahr: 2017
- Seitenangabe: 184 S.
- Masse: H22.0 cm x B15.0 cm x D1.1 cm 292 g
- Abbildungen: Paperback
- Gewicht: 292
Über den Autor
Katharina Streichert was born in Nuremberg in 1986. She studied biological sciences at the University of Konstanz and completed her master studies on epigenetics and directed evolution in the department of chemistry. During her PhD thesis, she focussed on protein engineering with non-natural amino acids and click chemistry.
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