Codon optimization, expression, purification, and Functional characterization of recombinant human IL-25 in Pichia pastoris

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Abstract

Interleukin (IL)-25 (also known as IL-17E) is a distinct member of the IL-17 cytokine family which induces IL-4, IL-5, and IL-13 expression and promotes pathogenic T helper (Th)-2 cell responses in various organs. IL-25 has been shown to have crucial role between innate and adaptive immunity and also a key component of the protection of gastrointestinal helminthes. In this study, to produce bioactive recombinant human IL-25 (rhIL-25), the cDNA of mature IL-25 was performed codon optimization based on methylotropic yeast Pichia pastoris codon bias and cloned into the expression vector pPICZαA. The recombinant vector was transformed into P. p ic h ia strain X-33 and selected by zeocin resistance. Benchtop fermentation and simple purification strategy were established to purify the rhIL-25 with about 17 kDa molecular mass. Functional analysis showed that purified rhIL-25 specifically bond to receptor IL-17BR and induce G-CSF production in vitro. Further annexin V-FITC/PI staining assay indicated that rhIL-25 induced apoptosis in two breast cancer cells, MDA-MB-231 and HBL-100. This study providesanew strategy for the large-scale production of bioactive IL-25 for biological and therapeutic applications. © The Author(s) 2013. This article is published with open access at Springerlink.com.

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Liu, Y., Wu, C., Wang, J., Mo, W., & Yu, M. (2013). Codon optimization, expression, purification, and Functional characterization of recombinant human IL-25 in Pichia pastoris. Applied Microbiology and Biotechnology, 97(24), 10349–10358. https://doi.org/10.1007/s00253-013-5264-4

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