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超声和密度特性分析环腺苷酸与交换蛋白 EPAC1 的 cAMP 结合域的结合。

Ultrasonic and densimetric characterization of the association of cyclic AMP with the cAMP-binding domain of the exchange protein EPAC1.

机构信息

Department of Pharmaceutical Sciences, Leslie Dan Faculty of Pharmacy, University of Toronto , 144 College Street, Toronto, Ontario M5S 3M2, Canada.

出版信息

J Phys Chem B. 2013 Sep 19;117(37):10779-84. doi: 10.1021/jp406451p. Epub 2013 Sep 10.

Abstract

We employed a combination of densimetric and ultrasonic velocimetric techniques to characterize the volumetric properties of the association of the cAMP-binding domain (CBD) of EPAC1 with cAMP at 25 °C in a pH 7.6 buffer. The binding of cAMP to the CBD of EPAC1 is accompanied by changes in volume, ΔV, and adiabatic compressibility, ΔKS, of -59 ± 4 cm(3) mol(-1) and (34 ± 9) × 10(-4) cm(3) mol(-1) bar(-1), respectively. We use these volumetric results in conjunction with the structural data to estimate a change in hydration, Δnh, accompanying the binding. We calculate that approximately 103 water molecules are released to the bulk from the associating surfaces of the protein and the ligand. This number is ∼30% larger than the number of water molecules in direct contact with the associating surfaces while also being within the error of our Δnh determination. Therefore, we conclude that cAMP binding to EPAC1 may involve, in addition to the waters from within the first coordination sphere, also some waters from the second coordination sphere of the protein and cAMP. Our analysis of the compressibility data reveals that the protein becomes more rigid and less dynamic upon the cAMP binding as reflected in a 4 ± 0.5% decrease in its intrinsic coefficient of adiabatic compressibility. Finally, we estimate the hydration, ΔShyd, and configurational, ΔSconf, contributions to the binding entropy, ΔSb. We find that the binding entropy is determined by the fine balance between the ΔShyd and ΔSconf terms. In general, we discuss insights that are derived from a combination of volumetric and structural properties, in particular, emphasizing how measured changes in volume and compressibility can be interpreted in terms of hydration and dynamic properties of EPAC1 in its apo- and holo-forms.

摘要

我们采用密度和声速测量技术相结合的方法,在 pH 值为 7.6 的缓冲液中,于 25°C 条件下,研究 EPAC1 的 cAMP 结合域(CBD)与 cAMP 缔合的体积特性。cAMP 与 EPAC1 的 CBD 结合伴随着体积变化ΔV 和绝热压缩率变化ΔKS,分别为-59±4cm3/mol 和(34±9)×10-4cm3/mol·bar-1。我们将这些体积结果与结构数据结合起来,估算结合伴随的水合变化Δnh。我们计算得出,大约有 103 个水分子从蛋白质和配体的缔合表面释放到溶液中。这个数字比与缔合表面直接接触的水分子数量大约 30%,但仍在我们的Δnh 测定误差范围内。因此,我们得出结论,cAMP 与 EPAC1 的结合可能不仅涉及到第一配位层中的水分子,还涉及到蛋白质和 cAMP 的第二配位层中的一些水分子。我们对压缩率数据的分析表明,cAMP 结合后,蛋白质变得更加刚性,动态性降低,表现在其固有绝热压缩率的 4±0.5%的下降。最后,我们估算了结合熵ΔSb 的水合贡献ΔShyd 和构象贡献ΔSconf。我们发现,结合熵由ΔShyd 和ΔSconf 项之间的精细平衡决定。总的来说,我们讨论了从体积和结构特性相结合中得出的见解,特别是强调了体积和压缩率的变化如何根据 apo 和 holo 形式下 EPAC1 的水合和动态特性进行解释。

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