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HEK293 cell line: a vehicle for the expression of recombinant proteins.

机译:HEK293细胞系:用于表达重组蛋白的载体。

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The HEK cell line has been extensively used as an expression tool for recombinant proteins since it was generated over 25 years ago. Although of epithelial origin, its biochemical machinery is capable of carrying out most of the post-translational folding and processing required to generate functional, mature protein from a wide spectrum of both mammalian and non-mammalian nucleic acids. Though popular as a transient expression system, this cell type has also seen wide use in stably transfected forms (i.e. transformed cells) to study a variety of cell-biological questions in neurobiology. The principal attributes which have made the HEK cell a popular choice among electrophysiologists to study isolated receptor channels include; its quick and easy reproduction and maintenance; amenability to transfection using a wide variety of methods; high efficiency of transfection and protein production; faithful translation and processing of proteins; and small cell size with minimal processes appropriate for voltage-clamp experimentation. These, and other attributes, also mean that complementary biochemical/cell biological evaluations of expressed proteins can be performed in concert with functional analyses to establish detailed pharmacological and biophysical profiles for the action of new drugs and their targets. The increased amount of sequence information available from the human genome has placed greater emphasis upon heterologous cell expression systems as targets for high throughput structure-function evaluation of novel drug targets and disease markers. Here we have highlighted some of the innate characteristics of the HEK cell in order that its suitability as a vehicle for the expression of a gene product can be assessed for particular needs. We have also detailed some of the standard methods used for transfection and obtaining functional data from electrophysiological recording techniques.
机译:自从25年前产生以来,HEK细胞系已被广泛用作重组蛋白的表达工具。尽管其起源于上皮,但其生化机制能够执行所需的大多数翻译后折叠和加工,以从多种哺乳动物和非哺乳动物核酸中产生功能性,成熟的蛋白质。尽管这种细胞类型作为瞬时表达系统很受欢迎,但它也已经以稳定转染的形式(即转化细胞)广泛使用,以研究神经生物学中的各种细胞生物学问题。使HEK细胞成为研究分离的受体通道的电生理学家的普遍选择的主要属性包括:其快速简便的复制和维护;可以使用多种方法进行转染;转染和蛋白质生产效率高;忠实地翻译和加工蛋白质;以及小尺寸的电池,适合用于钳位电压实验的最少工艺。这些和其他属性还意味着可以与功能分析一起对表达的蛋白质进行互补的生化/细胞生物学评估,以建立新药及其靶标作用的详细药理和生物物理概况。可从人类基因组获得的序列信息数量的增加,更加重视异源细胞表达系统,作为高通量结构功能评估新型药物靶标和疾病标志物的靶标。在这里,我们强调了HEK细胞的一些先天特性,以便可以针对特定需求评估其作为基因产物表达载体的适用性。我们还详细介绍了一些用于转染和从电生理记录技术获得功能数据的标准方法。

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