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Site-specific thermodynamics and kinetics of a coiled-coil transition by spin inversion transfer NMR.

机译:通过自旋反演转移NMR进行盘管过渡的位点特异性热力学和动力学。

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摘要

A 33-residue pseudo-wild-type GCN4 leucine zipper peptide is used to probe the equilibrium conformational population in proteins. 13Calpha-NMR shows that chain sites differ in structural content at a given temperature, and that two dimeric folded forms are evident at many sites. Spin inversion transfer experiments are reported bearing on the thermodynamics and kinetics of interconversion of the two dimeric folded forms (Fa <--> Fb) at the 13Calpha-labeled position L13. At each temperature, at conditions wherein the population of unfolded chains is quite small, inversion of the Fa spins via a tuned Gaussian pi-pulse is followed by a time interval (tau), interrogation, and recording of the free induction decay. Fifteen such inversions, with varying tau, provide the time course for recovery of equilibrium magnetization after inversion. Similar experiments follow inversion of the Fb spins. Re-equilibration is known to be modulated by four first-order rate constants: two (T1a(-1) and T1b(-1)) for spin-lattice relaxation intrinsic to the respective sites, and two (kab and kba) for the conformational change. All four follow from joint, Bayesian analysis of all the data at each temperature. The equilibrium constant at each temperature for this local transition, determined simply from the equilibrium relative magnetizations at Fa and Fb sites, agrees well with the kinetic ratio kab/kba. The standard Gibbs energies, enthalpy, and entropy follow. Activation parameters, both ways, are accessible from the rate constants and suggest a transition state with high Gibbs energy and enthalpy, but with entropy between those of Fa and Fb.
机译:33个残基的伪野生型GCN4亮氨酸拉链肽用于探测蛋白质中的平衡构象群体。 13Cα-NMR表明,链位点在给定温度下的结构含量不同,并且在许多位点明显存在两个二聚体折叠形式。据报道,自旋反转转移实验涉及在13 Calpha标记的位置L13处两个二聚体折叠形式(Fa-Fb)的相互转化的热力学和动力学。在每个温度下,在未折叠链总数很小的条件下,通过调谐的高斯pi脉冲使Fa自旋反转,然后是时间间隔(tau),讯问和自由感应衰变的记录。 tau变化的十五个这样的反演提供了反演后恢复平衡磁化的时间过程。 Fb自旋的反演之后进行了类似的实验。已知重新平衡受四个一阶速率常数的调制:两个(T1a(-1)和T1b(-1))用于各个位点固有的自旋晶格弛豫,两个(kab和kba)用于构象变化。所有这四个都来自每个温度下所有数据的联合贝叶斯分析。简单地由Fa和Fb位置的平衡相对磁化强度确定的每个温度下,该局部转变的平衡常数与动力学比kab / kba很好地吻合。遵循标准的吉布斯能量,焓和熵。两种激活参数都可以从速率常数中获得,并表明过渡态具有高的吉布斯能量和焓,但是在Fa和Fb的熵之间。

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