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大肠杆菌RNA聚合酶开放复合物平衡结合和解离速率常数的盐依赖性中Mg2+和Na+离子的等效性。

Equivalence of Mg2+ and Na+ ions in salt dependence of the equilibrium binding and dissociation rate constants of Escherichia coli RNA polymerase open complex.

作者信息

Loziński Tomasz, Bolewska Krystyna, Wierzchowski Kazimierz L

机构信息

Department of Biophysics, Institute of Biochemistry and Biophysics, Polish Academy of Sciences, Warszawa, Poland.

出版信息

Biophys Chem. 2009 Jun;142(1-3):65-75. doi: 10.1016/j.bpc.2009.03.004. Epub 2009 Mar 14.

Abstract

Conflicting experimental data on the influence of Mg(2+) ions on the salt dependence of formation/dissociation of open transcription complex (RPo) of Escherichia coli RNA polymerase led us to carry systematic measurements of the dissociation rate constant (k(d)) and thermodynamic stability of complexes at lambdaP(R) and Pa promoters in a broad range of [NaCl] and [MgCl(2)] at 25, 31 and 37 degrees C, using fluorescence detected abortive transcription assay. Values of k(d) determined in MgCl(2) in the presence of heparin, as a commonly used anionic competitor, were shown to depend on heparin concentration whereas in NaCl this effect was not observed. Kinetics of dissociation was therefore determined in the course of salt-induced down-shift of the binding equilibrium. Salt derivatives of k(d)'s (n(d)) appeared to be similar in NaCl (approximately 8.5) and MgCl(2) (approximately 10) for both complexes. Isotherms of fractional occupancy of promoters by RNAP as a function of ln [salt] were shown to conform to a sigmoid Boltzman function parameterized to include binding constant of RPo and a net change (n(obs)) in the number of electrolyte ions associated with complex components upon its formation/dissociation. The fitted values of n(obs) appeared also similar in NaCl and in MgCl(2): approximately 18 for RPo/lambdaP(R) and approximately 20 for RPo/Pa, respectively. Overall unfavorable vant'Hoff enthalpy (DeltaH(obs)) of RPo proved to be much higher in MgCl(2) than in NaCl by ca. 20 kcal/mol for both complexes, rendering them profoundly less stable in the former salt. In both salts, DeltaH(obs) was higher by approximately 30 kcal/mol for RPo/Pa relative to RPo/lambdaP(R). Similarity of n(obs) and n(d) values for the two salts indicates thermodynamic equivalence of Mg(2+) and Na(+) in [salt]-controlled binding equilibrium of RPo. This finding remains in disagreement with earlier data and suggests that salt effects on open complex stability should be sought in global compensating changes in distribution of all ionic species around the interacting complex components.

摘要

关于Mg(2+)离子对大肠杆菌RNA聚合酶开放转录复合物(RPo)形成/解离的盐依赖性影响的实验数据相互矛盾,这促使我们在25、31和37摄氏度下,使用荧光检测的流产转录测定法,在广泛的[NaCl]和[MgCl(2)]范围内,系统测量λP(R)和Pa启动子处复合物的解离速率常数(k(d))和热力学稳定性。在常用的阴离子竞争者肝素存在下,在MgCl(2)中测定的k(d)值显示取决于肝素浓度,而在NaCl中未观察到这种效应。因此,在盐诱导的结合平衡向下移动过程中测定了解离动力学。两种复合物在NaCl(约8.5)和MgCl(2)(约10)中的k(d)盐衍生物(n(d))似乎相似。RNAP对启动子的部分占据等温线作为ln [盐]的函数,显示符合S形玻尔兹曼函数,该函数参数化以包括RPo的结合常数以及复合物组分在其形成/解离时相关的电解质离子数量的净变化(n(obs))。n(obs)的拟合值在NaCl和MgCl(2)中也似乎相似:RPo/λP(R)约为18,RPo/Pa约为20。事实证明,RPo的总体不利范特霍夫焓(ΔH(obs))在MgCl(2)中比在NaCl中高约20 kcal/mol,这使得它们在前一种盐中稳定性大大降低。在两种盐中,RPo/Pa的ΔH(obs)相对于RPo/λP(R)高约30 kcal/mol。两种盐的n(obs)和n(d)值相似,表明在RPo的[盐]控制的结合平衡中,Mg(2+)和Na(+)具有热力学等效性。这一发现与早期数据不一致,表明应在相互作用的复合物组分周围所有离子物种分布的全局补偿变化中寻找盐对开放复合物稳定性的影响。

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