无细胞系统原位制备蛋白质芯片及其应用
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国家重点基础研究发展计划(973)资助项目(2006CB910803).


In situ Fabrication and Application of Protein Microarray With Cell-free System
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This work was supported by a grant from National Basic Research Program of China (2006CB910803).

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    摘要:

    主要介绍了目前在生物芯片表面进行蛋白质无细胞表达与定向制备蛋白质芯片的研究进展,包括各种基因植入芯片的方法、蛋白质体外不同表达的途径、蛋白质固定的策略以及可能的应用发展前景等.蛋白质芯片以其高通量、高灵敏和检测迅速等优点正成为蛋白质组学研究中的重要工具之一.蛋白质的高效表达与纯化、蛋白质在芯片表面的有效固定与蛋白质活性的保持等内容是蛋白质芯片技术发展的关键.采用纳米生物技术与无细胞表达系统,已经可以在生物芯片表面通过植入基因的方式制备相关的蛋白质芯片,从而为蛋白质芯片的原位制备开辟了新的方向.

    Abstract:

    Protein is one of major bio-functional performers. As one of several crucial proteomic research approaches, protein microarray has these following advantages: high-throughput, high sensitivity, quick detection and so on. Meanwhile, there are some critical factors that are important to the further development of protein microarray technology, for example, how to express and purify proteins for the research of protein microarray, how to immobilize proteins onto the substrate and keep the bio-function of proteins immobilized. Nano-biotechnology and cell-free expression system have been used to fabricate protein microarray by the way of immobilizing target genes onto the substrate and directly expressing corresponding proteins, which provides a new strategy to fabricate more complicated microarray. The stragegy and its progress were summarized——fabrication of protein microarray based on DNA, including immobilization of target genes, cell-free expression to proteins, immobilization of renascence proteins, advantages and drawbacks of the methods of protein chip fabrication etc.

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章杰,刘琼明,许丹科,贺福初.无细胞系统原位制备蛋白质芯片及其应用[J].生物化学与生物物理进展,2009,36(4):391-397

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  • 收稿日期:2008-07-17
  • 最后修改日期:2008-09-16
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  • 在线发布日期: 2008-10-29
  • 出版日期: 2009-04-20