Over‐expression of secreted proteins from mammalian cell lines
Сверхэкспрессия секретируемых белков из клеточных линий млекопитающих
2014-02-10
SCID: 54.1/7j6282bt
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expression vectorsfusion tagsmammalian cell linesprotein over-expression systemssecreted mammalian proteins
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Abstract (AI)
Secreted mammalian proteins require the development of robust protein over-expression systems for crystallographic and biophysical studies of protein function. Due to complex disulfide bonds and distinct glycosylation patterns preventing folding and expression in prokaryotic expression hosts, many secreted proteins necessitate production in more complex eukaryotic expression systems. Here, we elaborate on the methods used to obtain high yields of purified secreted proteins from transiently or stably transfected mammalian cell lines. Among the issues discussed are the selection of appropriate expression vectors, choice of signal sequences for protein secretion, availability of fusion tags for enhancing protein stability and purification, choice of cell line, and the large-scale growth of cells in a variety of formats.
Key Findings
1
Expression-vector selection and signal-sequence design are identified as important determinants of efficient protein secretion.
2
Fusion tags can improve secreted-protein stability and facilitate purification.
3
Secreted mammalian proteins often require eukaryotic expression systems because prokaryotic hosts cannot reliably reproduce their complex disulfide bonds and glycosylation patterns.
4
Successful large-scale production depends on selecting suitable mammalian cell lines and scalable cell-growth formats.
5
The paper details strategies for obtaining high yields of purified secreted proteins from transiently or stably transfected mammalian cell lines.
Research Object
secreted mammalian proteins expressed in transiently or stably transfected mammalian cell lines
Research Subject
high-yield production of purified, properly folded secreted proteins, including the effects of expression vectors, signal sequences, fusion tags, cell lines, and large-scale culture formats
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2014-02-10
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