Monaselidze J, Majagaladze G, Barbakadze Sh, Khachidze D, Gorgoshidze M, Kalandadze Y, Haroutiunian S, Dalyan Y, Vardanyan V
E. Andronikashvili Institute of Physics, 6, Tamarashvili Street, Tbilisi, 0177, Georgia.
J Biomol Struct Dyn. 2008 Feb;25(4):419-24. doi: 10.1080/07391102.2008.10507190.
Thermodynamic parameters of melting process (DeltaHm, Tm, DeltaTm) of calf thymus DNA, poly(dA)poly(dT) and poly(d(A-C)).poly(d(G-T)) were determined in the presence of various concentrations of TOEPyP(4) and its Zn complex. The investigated porphyrins caused serious stabilization of calf thymus DNA and poly poly(dA)poly(dT), but not poly(d(A-C))poly(d(G-T)). It was shown that TOEpyp(4) revealed GC specificity, it increased Tm of satellite fraction by 24 degrees C, but ZnTOEpyp(4), on the contrary, predominantly bound with AT-rich sites and increased DNA main stage Tm by 18 degrees C, and Tm of poly(dA)poly(dT) increased by 40 degrees C, in comparison with the same polymers without porphyrin. ZnTOEpyp(4) binds with DNA and poly(dA)poly(dT) in two modes--strong and weak ones. In the range of r from 0.005 to 0.08 both modes were fulfilled, and in the range of r from 0.165 to 0.25 only one mode--strong binding--took place. The weak binding is characterized with shifting of Tm by some grades, and for the strong binding Tm shifts by approximately 30-40 degrees C. Invariability of DeltaHm of DNA and poly(dA)poly(dT), and sharp increase of Tm in the range of r from 0.08 to 0.25 for thymus DNA and 0.01-0.2 for poly(dA)poly(dT) we interpret as entropic character of these complexes melting. It was suggested that this entropic character of melting is connected with forcing out of H2O molecules from AT sites by ZnTOEpyp(4) and with formation of outside stacking at the sites of binding. Four-fold decrease of calf thymus DNA melting range width DeltaTm caused by increase of added ZnTOEpyp(4) concentration is explained by rapprochement of AT and GC pairs thermal stability, and it is in agreement with a well-known dependence, according to which DeltaT approximately TGC-TAT for DNA obtained from higher organisms (L. V. Berestetskaya, M. D. Frank-Kamenetskii, and Yu. S. Lazurkin. Biopolymers 13, 193-205 (1974)). Poly (d(A-C))poly(d(G-T)) in the presence of ZnTOEpyp(4) gives only one mode of weak binding. The conclusion is that binding of ZnTOEpyp(4) with DNA depends on its nucleotide sequence.
在不同浓度的四(4 - 三甲铵基苯基)卟啉(TOEPyP(4))及其锌配合物存在的情况下,测定了小牛胸腺DNA、聚(dA)聚(dT)和聚(d(A - C))聚(d(G - T))的熔化过程的热力学参数(ΔHm、Tm、ΔTm)。所研究的卟啉导致小牛胸腺DNA和聚(dA)聚(dT)显著稳定,但对聚(d(A - C))聚(d(G - T))没有影响。结果表明,TOEpyp(4)表现出GC特异性,它使卫星组分的Tm升高了24℃,但相反,ZnTOEpyp(4)主要与富含AT的位点结合,使DNA主阶段的Tm升高了18℃,与没有卟啉的相同聚合物相比,聚(dA)聚(dT)的Tm升高了40℃。ZnTOEpyp(4)以两种模式与DNA和聚(dA)聚(dT)结合——强结合和弱结合。在r从0.005到0.08的范围内,两种模式都存在,而在r从0.165到0.25的范围内,只发生一种模式——强结合。弱结合的特征是Tm有一些程度的变化,而强结合时Tm变化约30 - 40℃。DNA和聚(dA)聚(dT)的ΔHm不变,以及小牛胸腺DNA在r从0.08到0.25范围内和聚(dA)聚(dT)在r从0.01到0.2范围内Tm的急剧增加,我们将其解释为这些配合物熔化的熵性质。有人提出,这种熔化的熵性质与ZnTOEpyp(4)将H2O分子从AT位点挤出以及在结合位点形成外部堆积有关。添加的ZnTOEpyp(4)浓度增加导致小牛胸腺DNA熔化范围宽度ΔTm降低四倍,这是由于AT和GC对热稳定性的接近所解释的,并且这与一个著名的相关性一致,根据该相关性,对于从高等生物获得的DNA,ΔT≈TGC - TAT(L. V. Berestetskaya、M. D. Frank - Kamenetskii和Yu. S. Lazurkin。生物聚合物13,193 - 205(1974))。在ZnTOEpyp(4)存在的情况下,聚(d(A - C))聚(d(G - T))只给出一种弱结合模式。结论是ZnTOEpyp(4)与DNA的结合取决于其核苷酸序列。