Biophysical Chemistry Laboratory, CSIR-Indian Institute of Chemical Biology, Kolkata, India.
J Photochem Photobiol B. 2013 Aug 5;125:105-14. doi: 10.1016/j.jphotobiol.2013.05.009. Epub 2013 Jun 4.
This interaction of four novel 9-O-substituted analogs of the plant alkaloid berberine with double stranded poly(A) was studied using a variety of biophysical techniques. Remarkably higher binding of two 9-O-ω-amino alkyl ether analogs compared to the two 9-O-N-aryl/arylalkyl amino carbonyl methyl berberine analogs was observed. Quantum efficiency values suggested that energy was transferred from the adenine base pairs to the analogs on binding. Ferrocyanide quenching and viscosity studies revealed the binding mode to be intercalative for these analogs. Circular dichroism studies showed that these analogs induced significant conformational changes in the secondary structure of ds poly(A). Energetics of the binding suggested that 9-O-N-aryl/arylalkyl amino carbonyl methyl berberines bound very weakly to ds poly(A). The binding of 9-O-ω-amino alkyl ether analogs was entropy dominated with a smaller but favorable enthalpic contribution to the Gibbs energy. Increasing the temperature resulted in weaker binding; the enthalpic contribution increased and the entropic contribution decreased. A small negative heat capacity change with significant enthalpy-entropy compensation established the involvement of multiple weak noncovalent interactions in the binding process.
这项研究使用了多种生物物理技术,研究了四种新型 9-O-取代的植物生物碱小檗碱与双链多聚(A)的相互作用。与两种 9-O-N-芳基/芳烷基氨基羰基甲基小檗碱类似物相比,两种 9-O-ω-氨基烷基醚类似物的结合明显更高。量子效率值表明,结合时能量从腺嘌呤碱基对转移到类似物上。亚铁氰化物猝灭和粘度研究表明,这些类似物的结合模式为嵌入型。圆二色性研究表明,这些类似物诱导了 ds poly(A)的二级结构发生显著的构象变化。结合的能量学表明,9-O-N-芳基/芳烷基氨基羰基甲基小檗碱与 ds poly(A)的结合非常弱。9-O-ω-氨基烷基醚类似物的结合主要由熵驱动,对吉布斯自由能有较小但有利的焓贡献。升高温度会导致结合变弱;焓贡献增加,熵贡献减少。较小的负热容变化和显著的焓熵补偿表明,在结合过程中涉及多个弱非共价相互作用。