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Chemical synthesis and improved expression of recombinant human granulocyte colony-stimulating factor cDNA

机译:重组人粒细胞集落刺激因子cDNA的化学合成及表达改良

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Recently, granulocyte colony-stimulating factor (G-CSF) has been recognized as a useful molecule for the treatment of a wide range of complex ailments, such as cancer, AIDS, H1N1 influenza, cardiac and neurological diseases. The vast therapeutic potential of G-CSF has induced scientists to develop biotechnological approaches for the synthesis of this pharmacologically active agent. We used a synthetic G-CSF cDNA molecule to produce the target protein by a simple cloning protocol. We constructed the synthetic cDNA using a DNA synthesizer with the aim to increase its expression level by specific sequence modifications at the 5' end of the G-CSF-coding region, decreasing the GC content without altering the predicted amino acid sequences. The identity of the resulting protein was confirmed by a highly specific enzyme-linked immunosorbent assay. In conclusion, a synthetic G-CSF cDNA in combination with the recombinant DNA protocol offers a rapid and reliable strategy for synthesizing the target protein. However, commercial utilization of this methodology will require rigorous validation and quality control.
机译:近来,粒细胞集落刺激因子(G-CSF)已被认为是治疗多种复杂疾病(如癌症,艾滋病,H1N1流感,心脏病和神经疾病)的有用分子。 G-CSF的巨大治疗潜力已诱使科学家们开发出生物技术方法来合成这种药理活性剂。我们使用合成的G-CSF cDNA分子通过简单的克隆方案产生目标蛋白。我们使用DNA合成仪构建了合成cDNA,目的是通过在G-CSF编码区5'端进行特定的序列修饰来提高其表达水平,从而在不改变预测氨基酸序列的情况下降低GC含量。通过高度特异性的酶联免疫吸附测定法确认了所得蛋白质的身份。总之,合成的G-CSF cDNA与重组DNA方案相结合,为合成目标蛋白提供了一种快速而可靠的策略。但是,这种方法的商业应用将需要严格的验证和质量控制。

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