Photobiology Laboratory, Institute of Biophysics SB RAS, Federal Research Center "Krasnoyarsk Science Center SB RAS", Krasnoyarsk, Russia.
Methods Mol Biol. 2024;2757:289-306. doi: 10.1007/978-1-0716-3642-8_13.
The functional screening of cDNA libraries (or functional cloning) enables isolation of cDNA genes encoding novel proteins with unknown amino acid sequences. This approach is the only way to identify a protein sequence in the event of shortage of biological material for obtaining pure target protein in amounts sufficient to determine its primary structure, since sensitive functional test for a target protein is only required to successfully perform functional cloning. Commonly, bioluminescent proteins from representatives belonging to different taxa significantly differ in sequences due to independent origin of bioluminescent systems during evolution. Nonetheless, these proteins are frequently similar in functions and can use even the same substrate of bioluminescence reaction, allowing the use of the same functional test for screening. The cDNA genes encoding unknown light-emitting proteins can be identified during functional screening with high sensitivity, which is provided by modern light recording equipment making possible the detection of a very small amount of a target protein. Here, we present the protocols for isolation of full-size cDNA genes for the novel bioluminescent protein family of light-sensitive Ca-regulated photoproteins in the absence of any sequence information by functional screening of plasmid cDNA expression library. The protocols describe all the steps from gathering animals to isolation of individual E. coli colonies carrying full-size cDNA genes using photoprotein berovin from ctenophore Beroe abyssicola as an illustrative example.
cDNA 文库的功能筛选(或功能克隆)使分离具有未知氨基酸序列的新型蛋白质的 cDNA 基因成为可能。在缺乏足够数量的用于确定其一级结构的纯靶蛋白的生物材料的情况下,这种方法是唯一可以鉴定蛋白质序列的方法,因为仅需要对靶蛋白进行敏感的功能测试即可成功进行功能克隆。通常,由于生物发光系统在进化过程中独立起源,属于不同分类群的生物发光蛋白在序列上存在显著差异。尽管如此,这些蛋白质在功能上经常相似,甚至可以使用相同的生物发光反应底物,从而允许使用相同的功能测试进行筛选。在功能筛选中,可以用高灵敏度鉴定编码未知发光蛋白的 cDNA 基因,这是由现代光记录设备提供的,该设备可以检测到非常少量的靶蛋白。在这里,我们提出了在没有任何序列信息的情况下通过功能筛选质粒 cDNA 表达文库来分离新型生物发光蛋白家族光敏感 Ca 调节光保护蛋白全长 cDNA 基因的方案。该方案描述了从收集动物到分离携带全长 cDNA 基因的单个大肠杆菌菌落的所有步骤,以栉水母 Beroe abyssicola 的 berovin 光蛋白为例。