Hagihara Shinya, Kumasawa Hiroyuki, Goto Yuki, Hayashi Gosuke, Kobori Akio, Saito Isao, Nakatani Kazuhiko
Department of Synthetic Chemistry and Biological Chemistry, Faculty of Engineering, Kyoto University, Kyoto, Japan.
Nucleic Acids Res. 2004 Jan 9;32(1):278-86. doi: 10.1093/nar/gkh171. Print 2004.
We have discovered a new molecule naphthyridine-azaquinolone hybrid (Npt-Azq) that strongly stabilized the guanine-adenine (G-A) mismatch in duplex DNA. In the presence of Npt-Azq, the melting temperature (T(m)) of 5'-d(CTA ACG GAA TG)-3'/3'-d(GAT TGA CTT AC)-5' containing a single G-A mismatch increased by 15.4 degrees C, whereas fully matched duplex increased its T(m) only by 2.2 degrees C. Npt-Azq was immobilized on the sensor surface for the surface plasmon resonance (SPR) assay to examine SPR detection of duplexes containing a G-A mismatch. Distinct SPR signals were observed when 27mer DNA containing a G-A mismatch was analyzed by the Npt-Azq immobilized sensor surfaces, whereas the signal of the fully matched duplex was approximately 6-fold weaker in intensity. The SPR signals for the G-A mismatch were proportional to the concentration of DNA in a range up to 1 microM, confirming that the SPR signal is in fact due to the binding of the G-A mismatch to Npt-Azq immobilized on the surface. Examination of all 16 G-A mismatches regarding the flanking sequence revealed that the sensor surface reported here is applicable to eight flanking sequences, covering 50% of all possible G-A mismatches.
我们发现了一种新的分子萘啶-氮杂喹诺酮杂化物(Npt-Azq),它能强烈稳定双链DNA中的鸟嘌呤-腺嘌呤(G-A)错配。在Npt-Azq存在的情况下,含有单个G-A错配的5'-d(CTA ACG GAA TG)-3'/3'-d(GAT TGA CTT AC)-5'双链DNA的解链温度(T(m))升高了15.4摄氏度,而完全匹配的双链DNA的T(m)仅升高了2.2摄氏度。将Npt-Azq固定在传感器表面用于表面等离子体共振(SPR)分析,以检测含有G-A错配的双链DNA的SPR信号。当用固定有Npt-Azq的传感器表面分析含有G-A错配的27聚体DNA时,观察到明显的SPR信号,而完全匹配的双链DNA的信号强度约弱6倍。G-A错配的SPR信号在高达1 microM的范围内与DNA浓度成正比,证实SPR信号实际上是由于G-A错配与固定在表面的Npt-Azq结合所致。对所有16种G-A错配的侧翼序列进行研究发现,此处报道的传感器表面适用于8种侧翼序列,涵盖了所有可能的G-A错配的50%。