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在低离子强度下通过圆二色性研究腺苷-5'-三磷酸的自缔合。

The self-association of adenosine-5'-triphosphate studied by circular dichroism at low ionic strengths.

作者信息

Gilligan T J, Schwarz G

出版信息

Biophys Chem. 1976 Jan;4(1):55-63. doi: 10.1016/0301-4622(76)80007-5.

Abstract

The self-association of adenosine-5'-triphosphate (ATP) was studied as a function of pH, additional counterions, concentration and temperature. Circular dichroism measurements were employed as a measure of the base-stacking. The self-association of ATP is pH dependent with the protonation of the adenine ring helping stabilize the association. Highly charged counterions alter this aggregation. At pH 2.8 and 20 degrees C, a dimerization constant of 88 M-1 is obtained, while an isodesmic model leads to an equilibrium constant of 158 M-1. With increasing pH, the association constants decrease. At pH 2.8 there is a very strong temperature dependence of the CD amplitude. These results indicate the existence of additional electrostatic stabilization for the stacking of the adenine rings. At acidic pHs, models are proposed to explain this high degree of stability and a calculation of the approximate electrostatic contribution to the aggregation shows it to be of the proper magnitude.

摘要

研究了腺苷 - 5'-三磷酸(ATP)的自缔合作用与pH值、额外抗衡离子、浓度和温度的关系。采用圆二色性测量作为碱基堆积的一种度量。ATP的自缔合作用依赖于pH值,腺嘌呤环的质子化有助于稳定这种缔合。高电荷抗衡离子会改变这种聚集。在pH 2.8和20摄氏度时,得到的二聚常数为88 M⁻¹,而异系同量反应模型得出的平衡常数为158 M⁻¹。随着pH值升高,缔合常数降低。在pH 2.8时,圆二色性振幅对温度有很强的依赖性。这些结果表明腺嘌呤环堆积存在额外的静电稳定作用。在酸性pH值下,提出了模型来解释这种高度稳定性,并且对聚集的近似静电贡献的计算表明其大小合适。

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