A time- and cost-efficient system for high-level protein production in mammalian cells
Экономичная по времени и затратам система для получения белка в высоких количествах в клетках млекопитающих
2006-09-19
SCID: 54.1/3rpgpkrb
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N-linked glycosylationmammalian cellsprotein crystallographyselenomethionine incorporationtransient protein expression
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Abstract (AI)
Most proteins for structural biology studies are produced by high-level expression in Escherichia coli. However, prokaryotic based expression systems fail to generate correctly folded functional forms of many proteins and hence a variety of eukaryotic based expression systems have been developed. Of these, yeast and baculovirus-infected insect cells currently represent the expression systems of choice for structural biologists. Here, protocols for a simple, fast and affordable method for transient protein expression in mammalian cells are reported. The results demonstrate that it combines several features necessary for the production of suitable samples for structural biology, in particular protein crystallography, namely high protein yield, straightforward purification, selenomethionine incorporation and control of N-linked glycosylation. The system is suitable for use in conventional laboratories or can be implemented in a medium- or high-throughput pipeline.
Key Findings
1
N-linked glycosylation can be controlled, helping generate suitable protein samples for structural studies.
2
The mammalian-cell system produces high protein yields and enables straightforward purification, supporting structural biology sample preparation.
3
The method allows selenomethionine incorporation, an important capability for protein crystallography.
4
The protocol is adaptable to conventional laboratories and medium- or high-throughput production pipelines.
5
The study presents a simple, fast, and affordable protocol for transient high-level protein expression in mammalian cells.
Research Object
Transient protein expression in mammalian cells
Research Subject
The system’s efficiency and suitability for structural biology, including protein yield, purification, selenomethionine incorporation, and control of N-linked glycosylation
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2006-09-19
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