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The use of zinc finger peptides to study the role of specific factor binding sites in the chromatin environment.

机译:使用锌指肽研究染色质环境中特定因子结合位点的作用。

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The once ambitious goal of creating custom DNA-binding factors has been achieved. Advances in construction methodology now enable any laboratory to create site-specific binding proteins to nearly any sequence. Using predefined zinc finger modules, new proteins can be constructed in days with minimal cost and using only standard polymerase chain reaction techniques. The existing spectrum of modules can be rearranged to produce more than one billion different proteins that bind with high affinity and specificity. Artificial transcription factors based on modified zinc finger domains have recently been shown by several groups to be capable of activating or repressing transcription of a handful of endogenous genes in the chromatin environment of plant and animal cells. These proteins can also be used in a number of ways to compete with endogenous factors for specific binding sites in vivo. Zinc finger peptides are therefore useful tools in the study of gene regulation and signal transduction. A detailed description of the construction method is presented, along with a full discussion of potential caveats and future expectations. (c) 2002 Elsevier Science (USA).
机译:已经实现了创建自定义DNA结合因子的雄心勃勃的目标。现在,构建方法学的进步使任何实验室都能创建几乎任何序列的位点特异性结合蛋白。使用预定义的锌指模块,仅需使用标准的聚合酶链反应技术,即可在几天内以最低的成本构建新的蛋白质。可以重新排列模块的现有范围,以产生超过十亿种以高亲和力和特异性结合的不同蛋白质。最近,几个小组显示了基于修饰的锌指结构域的人工转录因子,能够在植物和动物细胞的染色质环境中激活或抑制少数内源基因的转录。这些蛋白质还可以多种方式用于与内源性因子竞争体内的特异性结合位点。因此,锌指肽是研究基因调控和信号转导的有用工具。提出了对施工方法的详细说明,以及对潜在警告和未来期望的全面讨论。 (c)2002 Elsevier Science(美国)。

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