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Folding kinetics of the cooperatively folded subdomain of the IkappaBalpha ankyrin repeat domain.

机译:IkappaBalpha锚蛋白重复域的合作折叠子域的折叠动力学。

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摘要

The ankyrin repeat (AR) domain of IkappaBalpha consists of a cooperative folding unit of roughly four ARs (AR1-AR4) and of two weakly folded repeats (AR5 and AR6). The kinetic folding mechanism of the cooperative subdomain, IkappaBalpha(67-206), was analyzed using rapid mixing techniques. Despite its apparent architectural simplicity, IkappaBalpha(67-206) displays complex folding kinetics, with two sequential on-pathway high-energy intermediates. The effect of mutations to or away from the consensus sequences of ARs on folding behavior was analyzed, particularly the GXTPLHLA motif, which have not been examined in detail previously. Mutations toward the consensus generally resulted in an increase in folding stability, whereas mutations away from the consensus resulted in decreased overall stability. We determined the free energy change upon mutation for three sequential transition state ensembles along the folding route for 16 mutants. We show that folding initiates with the formation of the interface of the outer helices of AR3 and AR4, and then proceeds to consolidate structure in these repeats. Subsequently, AR1 and AR2 fold in a concerted way in a single kinetic step. We show that this mechanism is robust to the presence of AR5 and AR6 as they do not strongly affect the folding kinetics. Overall, the protein appears to fold on a rather smooth energy landscape, where the folding mechanism conforms a one-dimensional approximation. However, we note that the AR does not necessarily act as a single folding element.
机译:IkappaBalpha的锚蛋白重复序列​​(AR)域由大约四个AR(AR1-AR4)和两个弱折叠重复序列(AR5和AR6)的协同折叠单元组成。使用快速混合技术分析了合作子域,IkappaBalpha(67-206)的动力学折叠机制。尽管IkappaBalpha(67-206)具有明显的体系结构简单性,但它显示出复杂的折叠动力学,具有两个连续的高能量中间体。分析了ARs共有序列的变异或远离ARs的共有序列对折叠行为的影响,尤其是GXTPLHLA基序,这之前没有进行详细检查。趋于共有的突变通常导致折叠稳定性的增加,而偏离共有的突变导致总体稳定性的降低。我们确定了沿着折叠路线的三个突变体的三个连续过渡态集合突变后的自由能变化。我们显示折叠开始与AR3和AR4的外部螺旋的界面的形成,然后继续巩固这些重复中的结构。随后,AR1和AR2在单个动力学步骤中以一致的方式折叠。我们表明,这种机制对AR5和AR6的存在具有鲁棒性,因为它们不会强烈影响折叠动力学。总体而言,蛋白质似乎在相当平滑的能量构图上折叠,其中折叠机制符合一维近似。但是,我们注意到,AR不一定充当单个折叠元素。

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