Plant‐specific glycosylation patterns in the context of therapeutic protein production
Специфичные для растений паттерны гликозилирования в контексте производства терапевтических белков
2010-03-11
SCID: 54.1/w9pj4vrc
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N-glycosylation humanizationO-glycosylationplant expression systemsplant-specific glycosylationtherapeutic glycoproteins
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Abstract (AI)
While N-glycan synthesis in the endoplasmic reticulum (ER) is relatively well conserved in eukaryotes, N-glycan processing and O-glycan biosynthesis in the Golgi apparatus are kingdom specific and result in different oligosaccharide structures attached to glycoproteins in plants and mammals. With the prospect of using plants as alternative hosts to mammalian cell lines for the production of therapeutic glycoproteins, significant progress has been made towards the humanization of protein N-glycosylation in plant cells. To date, successful efforts in this direction have mainly focused on the targeted expression of therapeutic proteins, the knockout of plant-specific N-glycan-processing genes, and/or the introduction of the enzymatic machinery catalyzing the synthesis, transport and addition of human sugars. By contrast, very little attention has been paid until now to the O-glycosylation status of plant-made therapeutic proteins, which is surprising considering that hundreds of human proteins represent good candidates for Hyp-O glycosylation when produced in a plant expression system. This review describes protein N- and O-linked glycosylation in plants and highlights the limitations and advantages of plant-specific glycosylation on plant-made biopharmaceuticals.
Key Findings
1
Existing glycosylation-humanization efforts have focused primarily on N-glycans, while O-glycosylation of plant-produced therapeutics has received little attention.
2
Hundreds of human proteins may be suitable for plant-specific Hyp-O glycosylation, making O-glycosylation an important consideration in plant biopharmaceutical production.
3
Plant and mammalian glycosylation differ mainly in Golgi N-glycan processing and O-glycan biosynthesis, despite conserved ER N-glycan synthesis.
4
Plant-based therapeutic protein production has advanced humanization of N-glycosylation through targeted expression, plant-specific glycan gene knockout, and introduction of human glycosylation machinery.
5
Plant-specific N- and O-glycosylation patterns present both potential advantages and limitations for the development of plant-made therapeutic proteins.
Research Object
Plant-produced therapeutic glycoproteins and biopharmaceuticals
Research Subject
Plant-specific N- and O-linked glycosylation patterns, including their limitations and advantages for therapeutic protein production
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2010-03-11
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