The codon optimised gene produces an active human basic fibroblastic growth factor in rice cell suspension culture.

IF 1.8 4区 生物学 Q4 CELL BIOLOGY
Meysam Bastami, Ramin Hosseini
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引用次数: 0

Abstract

The coding sequence of human basic fibroblast growth factor (hbFGF) was optimised for expression in rice. An expression cassette was constructed by fusing the PCR-amplified RAmy3D promoter, along with its 5'UTR, 3'UTR, and terminator sequences, to the codon-optimised hbFGF sequence. This cassette was inserted into the pCAMBIA1304 shuttle vector, which also contained the RAmy3D signal peptide. Agrobacterium tumefaciens strain LBA 4404 was used to transform rice callus. Among the transformed lines, the callus expressing the highest level of bFGF (38.1 mg/kg fresh weight) was identified via ELISA and selected for establishing a cell suspension culture. Expression and secretion of the recombinant bFGF into the culture medium were observed three days after incubating the transgenic rice cells in sucrose-free medium. The presence of recombinant bFGF was confirmed through Western blot and SDS-PAGE analyses. Furthermore, the rice-derived bFGF effectively stimulated the proliferation of NIH/3T3 cells, demonstrating a comparable biological activity to that of commercial bFGF.

经过密码子优化的基因能在水稻细胞悬浮培养中产生活性人碱性成纤维细胞生长因子。
对人碱性成纤维细胞生长因子(hbFGF)的编码序列进行了优化,以便在水稻中表达。通过将 PCR 扩增的 RAmy3D 启动子及其 5'UTR、3'UTR 和终止子序列与经过密码子优化的 hbFGF 序列融合,构建了一个表达盒。该基因盒被插入 pCAMBIA1304 穿梭载体,该载体还包含 RAmy3D 信号肽。农杆菌菌株 LBA 4404 被用来转化水稻胼胝体。在转化的品系中,通过 ELISA 鉴定出表达最高水平的 bFGF(38.1 毫克/千克鲜重)的胼胝体,并选择其建立细胞悬浮培养。在无蔗糖培养基中培养转基因水稻细胞三天后,观察到重组 bFGF 在培养基中的表达和分泌。通过 Western 印迹和 SDS-PAGE 分析证实了重组 bFGF 的存在。此外,水稻衍生的 bFGF 能有效刺激 NIH/3T3 细胞增殖,显示出与商业 bFGF 相当的生物活性。
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来源期刊
Growth factors
Growth factors 生物-内分泌学与代谢
CiteScore
2.60
自引率
0.00%
发文量
20
审稿时长
>12 weeks
期刊介绍: Growth Factors is an international and interdisciplinary vehicle publishing new knowledge and findings on the regulators of cell proliferation, differentiation and survival. The Journal will publish research papers, short communications and reviews on current developments in cell biology, biochemistry, physiology or pharmacology of growth factors, cytokines or hormones which improve our understanding of biology or medicine. Among the various fields of study topics of particular interest include: •Stem cell biology •Growth factor physiology •Structure-activity relationships •Drug development studies •Clinical applications
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