Sági J, Szemzõ A, Szécsi J, Otvös L
Central Research Institute for Chemistry, Hungarian Academy of Sciences, Budapest.
Nucleic Acids Res. 1990 Apr 25;18(8):2133-40. doi: 10.1093/nar/18.8.2133.
We report here spectroscopic and biochemical data of a novel series of sugar-modified oligodeoxy-nucleotides, the carbocyclic oligothymidylates, c(dT)3-20. In c(dT)n a methylene group has been substituted for the oxygen atom of the deoxyribose ring of the natural thymidylate unit. c(dT)10-20 form helical structures, in contrast with oligothymidylates or poly(dT), based on absorbance versus temperature melting profiles. Secondary structure of c(dT)n, where n greater than 10 is assumed to be double helix. In addition to this, c(dT)n forms as a stable duplex with complementary poly(dA) as does parent (dT)n. On the other hand, c(dT)n-containing oligo/poly duplex is nearly inactive either as a template or as a primer in various DNA polymerase systems, and c(dT)n inhibits DNA replication as well. c(dT)n can efficiently be extended by terminal transferase and shows an increased nuclease stability compared to (dT)n. Base-pairing ability and nuclease stability of c(dT)n suggest that (+)-carbocyclic nucleoside-containing oligomers could be new potential antisense oligodeoxynucleotides.
我们在此报告了一系列新型糖修饰寡脱氧核苷酸——碳环寡胸苷酸(c(dT)3 - 20)的光谱和生化数据。在c(dT)n中,亚甲基取代了天然胸苷酸单元脱氧核糖环上的氧原子。根据吸光度与温度的熔解曲线,与寡胸苷酸或聚(dT)不同,c(dT)10 - 20形成螺旋结构。假设n大于10时,c(dT)n的二级结构为双螺旋。除此之外,c(dT)n与互补的聚(dA)形成稳定的双链体,就如同亲本(dT)n一样。另一方面,含c(dT)n的寡聚/多聚双链体在各种DNA聚合酶系统中作为模板或引物几乎没有活性,并且c(dT)n也会抑制DNA复制。c(dT)n可以被末端转移酶有效地延伸,并且与(dT)n相比显示出更高的核酸酶稳定性。c(dT)n的碱基配对能力和核酸酶稳定性表明,含(+)-碳环核苷的寡聚物可能是新型潜在的反义寡脱氧核苷酸。