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首页> 外文期刊>Journal of Molecular Biology >Beyond the EX1 limit: probing the structure of high-energy states in protein unfolding.
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Beyond the EX1 limit: probing the structure of high-energy states in protein unfolding.

机译:超越EX1限制:探索蛋白质展开中高能态的结构。

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摘要

Hydrogen exchange kinetics in native solvent conditions have been used to explore the conformational fluctuations of an immunoglobulin domain (CD2.domain1). The global folding/unfolding kinetics of the protein are unaltered between pH 4.5 and pH 9.5, allowing us to use the pH-dependence of amide hydrogen/deuterium exchange to characterise conformational states with energies up to 7.2kcal/mol higher than the folded ground state. The study was intended to search for discreet unfolding intermediates in this region of the energy spectrum, their presence being revealed by the concerted exchange behaviour of subsets of amide groups that become accessible at a given free energy, i.e. the spectrum would contain discreet groupings. Protection factors for 58 amide groups were measured across the pH range and the hydrogen-exchange energy profile is described.More interestingly, exchange behaviour could be grouped into three categories; the first two unremarkable, the third unexpected. (1) In 33 cases, amide exchange was dominated by rapid fluctuation, i.e. the free energy difference between the ground state and the rapidly accessed open state is sufficiently low that the contribution from crossing the unfolding barrier is negligible. (2) In 18 cases exchange is dominated by the global folding transition barrier across the whole pH range measured. The relationship between hydroxyl ion concentration and observed exchange rate is hyperbolic, with the limiting rate being that for global unfolding; the so-called EX1 limit. For these, the free energy difference between the folded ground state and any rapidly-accessed open state is too great for the proton to be exchanged through such fluctuations, even at the highest pH employed in this study. (3) For the third group, comprising five cases, we observe a behaviour that has not been described. In this group, as in category 2, the rate of exchange reaches a plateau; the EX1 limit. However, as the intrinsic exchange rate (k(int)) is increased, this limit is breached and the rate begins to rise again. This unintuitive behaviour does not result from pH instability, rather it is a consequence of amide groups experiencing two processes; rapid fluctuation of structure and crossing the global barrier for unfolding. The boundary at which the EX1 limit is overcome is determined by the equilibrium distribution of the fluctuating open and closed states (K(O/C)) and the rate constant for unfolding (k(u)). This critical boundary is reached when k(int)K(O/C)=k(u). Given that, in a simple transition state formalism: k(u)=K(#)k' (where K(#) describes the equilibrium distribution between the transition and ground state and k' describes the rate of a barrierless rearrangement), it follows that if the pH is raised to a level where k(int)=k', then the entire free energy spectrum from ground state to transition state could be sampled.
机译:在天然溶剂条件下的氢交换动力学已被用于探索免疫球蛋白结构域(CD2.domain1)的构象波动。蛋白质的整体折叠/展开动力学在pH 4.5和pH 9.5之间保持不变,这使我们能够利用酰胺氢/氘交换的pH依赖性来表征构象态,其能量比折叠的基态高7.2kcal / mol。 。该研究旨在在能谱的该区域中寻找离散的中间体,通过在给定的自由能下可利用的酰胺基子集的协调交换行为来揭示它们的存在,即该光谱将包含离散的组。在整个pH范围内测量了58个酰胺基的保护因子,并描述了氢交换能谱。更有趣的是,交换行为可分为三类:前两个没什么特别的,第三个没什么。 (1)在33种情况下,酰胺交换以快速波动为主导,即基态与快速进入的开放态之间的自由能差足够低,以至于跨越展开障碍的贡献可忽略不计。 (2)在18种情况下,在整个测量的pH范围内,交换主要由全局折叠过渡障碍所控制。氢氧根离子浓度与观察到的交换速率之间的关系是双曲线的,其极限速率是全局展开的速率。所谓的EX1限制。对于这些,折叠的基态与任何快速进入的打开态之间的自由能差太大,以至于即使在本研究中采用的最高pH下,质子也无法通过这种波动进行交换。 (3)对于包括五个案例的第三组,我们观察到了未描述的行为。与第二类一样,这一组的交换率达到了平稳状态; EX1限制。但是,随着内在汇率(k(int))的增加,该限制被突破,汇率开始再次上升。这种不直观的行为不是由pH值不稳定引起的,而是酰胺基团经历两个过程的结果。结构的快速波动和跨越发展的全球障碍。克服EX1极限的边界由波动的打开和关闭状态(K(O / C))的平衡分布以及展开的速率常数(k(u))确定。当k(int)K(O / C)= k(u)时达到此临界边界。鉴于此,在简单的过渡态形式主义中:k(u)= K(#)k'(其中K(#)描述了过渡态与基态之间的平衡分布,k'描述了无障碍重排的速率)。因此,如果将pH升高到k(int)= k'的水平,则可以采样从基态到过渡态的整个自由能谱。

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