Expression of bioactive soluble human stem cell factor (SCF) from recombinant Escherichia coli by coproduction of thioredoxin and efficient purification using arginine in affinity chromatography

•We report enhanced soluble expression of rhSCF in E. coli.•The eXact tag and hSCF fusion gene was codon-optimized for expression in E. coli.•Soluble expression of hSCF was obtained by thioredoxin coexpression.•l-Arginine enabled the purification of hSCF in Profinity eXact™ chromatography.•Activity...

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Veröffentlicht in:Protein expression and purification 2015-01, Vol.105, p.1-7
Hauptverfasser: Akuta, Teruo, Kikuchi-Ueda, Takane, Imaizumi, Keitaro, Oshikane, Hiroyuki, Nakaki, Toshio, Okada, Yoko, Sultana, Sara, Kobayashi, Kenichiro, Kiyokawa, Nobutaka, Ono, Yasuo
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Sprache:eng
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Zusammenfassung:•We report enhanced soluble expression of rhSCF in E. coli.•The eXact tag and hSCF fusion gene was codon-optimized for expression in E. coli.•Soluble expression of hSCF was obtained by thioredoxin coexpression.•l-Arginine enabled the purification of hSCF in Profinity eXact™ chromatography.•Activity testing by TF-1 cell viability and LAD2 cell differentiation. Stem cell factor (SCF) known as the c-kit ligand is a two disulfide bridge-containing cytokine in the regulation of the development and function of hematopoietic cell lineages and other cells such as mast cells, germ cells, and melanocytes. The secreted soluble form of SCF exists as noncovalently associated homodimer and exerts its activity by signaling through the c-Kit receptor. In this report, we present the high level expression of a soluble recombinant human SCF (rhSCF) in Escherichia coli. A codon-optimized Profinity eXact™-tagged hSCF cDNA was cloned into pET3b vector, and transformed into E. coli BL21(DE3) harboring a bacterial thioredoxin coexpression vector. The recombinant protein was purified via an affinity chromatography processed by cleavage with sodium fluoride, resulting in the complete proteolytic removal the N-terminal tag. Although almost none of the soluble fusion protein bound to the resin in standard protocol using 0.1M sodium phosphate buffer (pH 7.2), the use of binding buffer containing 0.5M l-arginine for protein stabilization dramatically enhanced binding to resin and recovery of the protein beyond expectation. Also pretreatment by Triton X-114 for removing endotoxin was effective for affinity chromatography. In chromatography performance, l-arginine was more effective than Triton X-114 treatment. Following Mono Q anion exchange chromatography, the target protein was isolated in high purity. The rhSCF protein specifically enhanced the viability of human myeloid leukemia cell line TF-1 and the proliferation and maturation of human mast cell line LAD2 cell. This novel protocol for the production of rhSCF is a simple, suitable, and efficient method.
ISSN:1046-5928
1096-0279
DOI:10.1016/j.pep.2014.09.015