TY - JOUR
T1 - Expression of potein complexes using multiple E. coli protein co-expression systems: a benchmarking study
AU - Busso, D.
AU - Peleg, Y.
AU - Folkers, G.E.
AU - Celie, P.H.N.
PY - 2011
Y1 - 2011
N2 - Escherichia coli (E. coli) remains the most commonly used host for recombinant protein expression. It is
well known that a variety of experimental factors influence the protein production level as well as the
solubility profile of over-expressed proteins. This becomes increasingly important for optimizing production
of protein complexes using co-expression strategies. In this study, we focus on the effect of the
choice of the expression vector system: by standardizing experimental factors including bacterial strain,
cultivation temperature and growth medium composition, we compare the effectiveness of expression
technologies used by the partners of the Structural Proteomics in Europe 2 (SPINE2-complexes) consortium.
Four different protein complexes, including three binary and one ternary complex, all known to be
produced in the soluble form in E. coli, are used as the benchmark targets. The respective genes were
cloned by each partner into their preferred set of vectors. The resulting constructs were then used for
comparative co-expression analysis done in parallel and under identical conditions at a single site. Our
data show that multiple strategies can be applied for the expression of protein complexes in high yield.
While there is no ‘silver bullet’ approach that was infallible even for this small test set, our observations
are useful as a guideline to delineate co-expression strategies for particular protein complexes.
AB - Escherichia coli (E. coli) remains the most commonly used host for recombinant protein expression. It is
well known that a variety of experimental factors influence the protein production level as well as the
solubility profile of over-expressed proteins. This becomes increasingly important for optimizing production
of protein complexes using co-expression strategies. In this study, we focus on the effect of the
choice of the expression vector system: by standardizing experimental factors including bacterial strain,
cultivation temperature and growth medium composition, we compare the effectiveness of expression
technologies used by the partners of the Structural Proteomics in Europe 2 (SPINE2-complexes) consortium.
Four different protein complexes, including three binary and one ternary complex, all known to be
produced in the soluble form in E. coli, are used as the benchmark targets. The respective genes were
cloned by each partner into their preferred set of vectors. The resulting constructs were then used for
comparative co-expression analysis done in parallel and under identical conditions at a single site. Our
data show that multiple strategies can be applied for the expression of protein complexes in high yield.
While there is no ‘silver bullet’ approach that was infallible even for this small test set, our observations
are useful as a guideline to delineate co-expression strategies for particular protein complexes.
U2 - 10.1016/j.jsb.2011.03.004
DO - 10.1016/j.jsb.2011.03.004
M3 - Article
SN - 1047-8477
VL - 175
SP - 159
EP - 170
JO - Journal of Structural Biology
JF - Journal of Structural Biology
ER -