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血根碱和溴化乙锭将左手螺旋形式和质子化形式的DNA转化回结合的右手螺旋形式的比较研究。

Conversions of the left-handed form and the protonated form of DNA back to the bound right-handed form by sanguinarine and ethidium: a comparative study.

作者信息

Das S, Kumar G S, Maiti M

机构信息

Biophysical Chemistry Laboratory, Indian Institute of Chemical Biology, Jadavpur, Calcutta 700 032, India.

出版信息

Biophys Chem. 1999 Feb 22;76(3):199-218. doi: 10.1016/s0301-4622(98)00238-5.

Abstract

The interaction of sanguinarine and ethidium with right-handed (B-form), left-handed (Z-form) and left-handed protonated (designated as H(L)-form) structures of poly(dG-dC).poly(dG-dC) and poly(dG-me5dC).poly(dG-me5dC) was investigated by measuring the circular dichroism and UV absorption spectral analysis. Both sanguinarine and ethidium bind strongly to the B-form DNA and convert the Z-form and the H(L)-form back to the bound right-handed form. Circular dichroic data also show that the conformation at the binding site is right-handed, even though adjacent regions of the polymer have a left-handed conformation either in Z-form or in H(L)-form. Both the rate and extent of B-form to Z-form transition were decreased by sanguinarine and ethidium under ionic conditions that otherwise favour the left-handed conformation of the polynucleotides. The rate of decrease is faster in the case of ethidium as compared to that of sanguinarine. Scatchard analysis of the spectrophotometric data shows that sanguinarine binds strongly to both the polynucleotides in a non-cooperative manner under B-form conditions, in sharp contrast to the highly-cooperative binding under Z-form and H(L)-form conditions. Correlation of binding isotherms with circular dichroism data indicates that the cooperative binding of sanguinarine under the Z-form and the H(L)-form conditions is associated with a sequential conversion of the polymer from a left-handed to a bound right-handed conformation. Determination of bound alkaloid concentration by spectroscopic titration technique and the measurement of circular dichroic spectra have enabled us to calculate the number of base pairs of Z-form and H(L)-form that adopt a right-handed conformation for each bound alkaloid. Analysis reveals that 2-3 base pairs (bp) of Z-form of poly(dG-dC).poly(dG-dC) and poly(dG-me5dC).poly(dG-me5dC) switch to the right-handed form for each bound sanguinarine, while approximately same number of base pairs switch to the bound right-handed form in complexes with H(L)-form of these polynucleotides. Comparative binding analysis shows that ethidium also converts approximately 2 bp of Z-form or H(L)-form to bound right-handed form under same experimental conditions. Since sanguinarine binds preferentially to alternating GC sequences, which are capable of undergoing the B to Z or B to H(L) transition, these effects may be an important part in understanding its extensive biological activities.

摘要

通过测量圆二色性和紫外吸收光谱分析,研究了血根碱和溴化乙锭与聚(dG-dC)·聚(dG-dC)和聚(dG-me5dC)·聚(dG-me5dC)的右手(B型)、左手(Z型)和左手质子化(称为H(L)型)结构的相互作用。血根碱和溴化乙锭都与B型DNA强烈结合,并将Z型和H(L)型转变回结合的右手型。圆二色性数据还表明,即使聚合物的相邻区域在Z型或H(L)型中具有左手构象,结合位点处的构象也是右手型。在有利于多核苷酸左手构象的离子条件下,血根碱和溴化乙锭都降低了B型向Z型转变的速率和程度。与血根碱相比,溴化乙锭的降低速率更快。对分光光度数据的Scatchard分析表明,在B型条件下,血根碱以非协同方式与两种多核苷酸强烈结合,这与在Z型和H(L)型条件下的高度协同结合形成鲜明对比。结合等温线与圆二色性数据的相关性表明,血根碱在Z型和H(L)型条件下的协同结合与聚合物从左手构象向结合的右手构象的顺序转变有关。通过光谱滴定技术测定结合的生物碱浓度和测量圆二色光谱,使我们能够计算出每种结合生物碱采用右手构象的Z型和H(L)型的碱基对数。分析表明,对于每种结合的血根碱,聚(dG-dC)·聚(dG-dC)和聚(dG-me5dC)·聚(dG-me5dC)的Z型有2-3个碱基对(bp)转变为右手型,而在与这些多核苷酸的H(L)型形成的复合物中,大约相同数量的碱基对转变为结合的右手型。比较结合分析表明,在相同实验条件下,溴化乙锭也将大约2个bp的Z型或H(L)型转变为结合的右手型。由于血根碱优先结合能够发生B向Z或B向H(L)转变的交替GC序列,这些效应可能是理解其广泛生物活性的重要部分。

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