He Mingyue, Wang Ming-Wei
Technology Research Group, The Babraham Institute, Cambridge CB22 3AT, United Kingdom.
Biomol Eng. 2007 Oct;24(4):375-80. doi: 10.1016/j.bioeng.2007.05.002. Epub 2007 May 31.
Recent advances in life science have led to great motivation for the development of protein arrays to study functions of genome-encoded proteins. While traditional cell-based methods have been commonly used for generating protein arrays, they are usually a time-consuming process with a number of technical challenges. Cell-free protein synthesis offers an attractive system for making protein arrays, not only does it rapidly converts the genetic information into functional proteins without the need for DNA cloning, but also presents a flexible environment amenable to production of folded proteins or proteins with defined modifications. Recent advancements have made it possible to rapidly generate protein arrays from PCR DNA templates through parallel on-chip protein synthesis. This article reviews current cell-free protein array technologies and their proteomic applications.
生命科学的最新进展极大地推动了蛋白质阵列的发展,以研究基因组编码蛋白质的功能。虽然传统的基于细胞的方法通常用于生成蛋白质阵列,但它们通常是一个耗时的过程,存在许多技术挑战。无细胞蛋白质合成提供了一个有吸引力的蛋白质阵列制备系统,它不仅能在无需DNA克隆的情况下迅速将遗传信息转化为功能蛋白质,还提供了一个灵活的环境,适合生产折叠蛋白或具有特定修饰的蛋白质。最近的进展使得通过并行芯片上蛋白质合成从PCR DNA模板快速生成蛋白质阵列成为可能。本文综述了当前的无细胞蛋白质阵列技术及其蛋白质组学应用。