Petrauskene O V, Schmidt S, Karyagina A S, Nikolskaya I I, Gromova E S, Cech D
A. N. Belozersky Institute of Physico-Chemical Biology, Moscow State University, Russia.
Nucleic Acids Res. 1995 Jun 25;23(12):2192-7. doi: 10.1093/nar/23.12.2192.
Oligonucleotides containing 2-aminopurine (2-AP) in place of G or A in the recognition site of EcoRII (CCT/AGG) or SsoII (CCNGG) restriction endonucleases have been synthesized in order to investigate the specific interaction of DNA with these enzymes. Physicochemical properties (CD spectra and melting behaviour) have shown that DNA duplexes containing 2-aminopurine exist largely in a stable B-like form. 2-Aminopurine base paired with cytidine, however, essentially influences the helix structure. The presence of a 2-AP-C mismatch strongly reduces the stability of the duplexes in comparison with the natural double strand, indicated by a biphasic melting behaviour. SsoII restriction endonuclease recognizes and cleaves the modified substrate with a 2-AP-T mismatch in the centre of the recognition site, but it does not cleave the duplexes containing 2-aminopurine in place of inner and outer G, or both. EcoRII restriction endonuclease does not cleave duplexes containing 2-aminopurine at all. The two-substrate mechanism of EcoRII-DNA interaction, however, allows hydrolysis of the duplex containing 2-aminopurine in place of adenine in the presence of the canonical substrate.
为了研究DNA与这些酶的特异性相互作用,已合成了在EcoRII(CCT/AGG)或SsoII(CCNGG)限制内切酶识别位点中用2-氨基嘌呤(2-AP)取代G或A的寡核苷酸。物理化学性质(圆二色光谱和熔解行为)表明,含有2-氨基嘌呤的DNA双链体主要以稳定的B样形式存在。然而,与胞嘧啶碱基配对的2-氨基嘌呤基本上会影响螺旋结构。与天然双链相比,2-AP-C错配的存在会强烈降低双链体的稳定性,这通过双相熔解行为得以表明。SsoII限制内切酶在识别位点中心识别并切割具有2-AP-T错配的修饰底物,但它不会切割在内部和外部G或两者位置含有2-氨基嘌呤的双链体。EcoRII限制内切酶根本不会切割含有2-氨基嘌呤的双链体。然而,EcoRII-DNA相互作用的双底物机制允许在标准底物存在的情况下,水解在腺嘌呤位置含有2-氨基嘌呤的双链体。