Identification of site-specific degradation in bacterially expressed human fibroblast growth factor 4 and generation of an aminoterminally truncated, stable form
Autor: | Shiori Sato, Masayuki Kobayashi, Kano Kasuga, Toshihiko Ito, Yuki Sato, Ikuo Kojima, Saiko Sugawara |
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Rok vydání: | 2013 |
Předmět: |
BALB 3T3 Cells
Fibroblast Growth Factor 4 Gene Expression Bioengineering Biology Fibroblast growth factor medicine.disease_cause Protein Engineering Applied Microbiology and Biotechnology Biochemistry 3T3 cells Substrate Specificity Mice FGF4 medicine Escherichia coli Animals Humans Molecular Biology Histidine Cell Proliferation Cell growth Protein Stability General Medicine Fibroblast growth factor receptor 4 Fibroblast growth factor receptor 3 Peptide Fragments medicine.anatomical_structure Biotechnology |
Zdroj: | Applied biochemistry and biotechnology. 172(1) |
ISSN: | 1559-0291 |
Popis: | Fibroblast growth factor 4 (FGF4) is considered as a crucial gene for tumorigenesis in humans and the development of mammalian embryos. The secreted, mature form of human FGF4 is thought to be comprised of 175 amino acid residues (proline(32) to leucine(206), Pro(32)-Leu(206)). Here, we found that bacterially expressed, 6× histidine (His)-tagged human FGF4 (Pro(32)-Leu(206)) protein, referred to as HishFGF4, was unstable such as in phosphate-buffered saline. In these conditions, site-specific cleavage, including between Ser(54) and Leu(55), in HishFGF4 was identified. In order to generate stable human FGF4 derivatives, a 6× His-tagged human FGF4 (Leu(55)-Leu(206)), termed HishFGF4L, was expressed in Escherichia coli. HishFGF4L could be purified from the supernatant of cell lysates by heparin column chromatography. In phosphate-buffered saline, HishFGF4L was considered as sufficiently stable. HishFGF4L exerted significant mitogenic activities in mouse embryonic fibroblast Balb/c 3T3 cells. In the presence of PD173074, an FGF receptor inhibitor, the growth-stimulating activity of HishFGF4L disappeared. Taken together, we suggest that HishFGF4L is capable of promoting cell growth via an authentic FGF signaling pathway. Our study provides a simple method for the production of a bioactive human FGF4 derivative in E. coli. |
Databáze: | OpenAIRE |
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