Olejnik J, Krzymańska-Olejnik E, Rothschild K J
Department of Physics and Molecular Biophysics Laboratory, Boston University, MA 02215, USA.
Nucleic Acids Res. 1996 Jan 15;24(2):361-6. doi: 10.1093/nar/24.2.361.
We report the design, synthesis and evaluation of a non-nucleosidic photocleavable biotin phosphoramidite (PCB-phosphoramidite) which provides a simple method for purification and phosphorylation of oligonucleotides. This reagent introduces a photocleavable biotin label (PCB) on the 5'-terminal phosphate of synthetic oligonucleotides and is fully compatible with automated solid support synthesis. HPLC analysis shows that the PCB moiety is introduced predominantly on full-length sequences and is retained during cleavage of the synthetic oligonucleotide from the solid support and during subsequent deprotection with ammonia. The full-length 5-PCB-labeled oligonucleotide can then be selectively isolated from the crude oligonucleotide mixture by incubation with immobilized streptavidin. Upon irradiation with 300-350 nm light the 5'-PCB moiety is cleaved with high efficiency in <4 min, resulting in rapid release of affinity-purified 5'-phosphorylated oligonucleotides into solution. 5'-PCB-labeled oligonucleotides should be useful in a variety of applications in molecular biology, including cassette mutagenesis and PCR. As an example, PCB-phosphoramidite has been used for the synthesis, purification and phosphorylation of 50-and 60mer oligonucleotides.
我们报道了一种非核苷光可裂解生物素亚磷酰胺(PCB - 亚磷酰胺)的设计、合成及评估,该试剂为寡核苷酸的纯化和磷酸化提供了一种简便方法。此试剂可在合成寡核苷酸的5'-末端磷酸上引入光可裂解生物素标签(PCB),且与自动化固相合成完全兼容。高效液相色谱分析表明,PCB部分主要引入到全长序列上,并在从固相载体上裂解合成寡核苷酸以及随后用氨进行脱保护的过程中得以保留。然后,通过与固定化链霉亲和素孵育,可从粗寡核苷酸混合物中选择性分离出全长的5-PCB标记寡核苷酸。用300 - 350 nm光照射时,5'-PCB部分在不到4分钟内高效裂解,从而使亲和纯化的5'-磷酸化寡核苷酸迅速释放到溶液中。5'-PCB标记的寡核苷酸在分子生物学的多种应用中应会很有用,包括盒式诱变和聚合酶链反应。例如,PCB - 亚磷酰胺已用于50聚体和60聚体寡核苷酸的合成、纯化及磷酸化。