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首页> 外文期刊>Protein Science: A Publication of the Protein Society >Probing the folding intermediate of Rd-apocyt b562 by protein engineering and infrared T-jump.
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Probing the folding intermediate of Rd-apocyt b562 by protein engineering and infrared T-jump.

机译:通过蛋白质工程和红外T-跃迁探索Rd-apocyt b562的折叠中间体。

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Small proteins often fold in an apparent two-state manner with the absence of detectable early-folding intermediates. Recently, using native-state hydrogen exchange, intermediates that exist after the rate-limiting transition state have been identified for several proteins. However, little is known about the folding kinetics from these post-transition intermediates to their corresponding native states. Herein, we have used protein engineering and a laser-induced temperature-jump (T-jump) technique to investigate this issue and have applied it to Rd-apocyt b(562) , a four-helix bundle protein. Previously, it has been shown that Rd-apocyt b(562) folds via an on-pathway hidden intermediate, which has only the N-terminal helix unfolded. In the present study, a double mutation (V16G/I17A) in the N-terminal helix of Rd-apocyt b(562) was made to further increase the relative population of this intermediate state at high temperature by selectively destabilizing the native state. In the circular dichroism thermal melting experiment, this mutant showed apparent two-state folding behavior. However, in the T-jump experiment, two kinetic phases were observed. Therefore, these results are in agreement with the idea that a folding intermediate is populated on the folding pathway of Rd-apocyt b(562) . Moreover, it was found that the exponential growth rate of the native state from this intermediate state is roughly (25 microsec)(-1) at 65 degrees C.
机译:小蛋白通常以明显的两种状态折叠,而没有可检测的早期折叠中间体。近来,利用天然氢交换,已经鉴定出了几种蛋白质在限速过渡态之后存在的中间体。然而,从这些过渡后中间体到其相应的天然状态的折叠动力学知之甚少。在这里,我们已经使用蛋白质工程和激光诱导的温度跳跃(T-jump)技术来研究此问题,并将其应用于四螺旋束蛋白质Rd-apocyt b(562)。以前,已经显示Rd-apocyt b(562)通过一个隐藏在路径上的中间体折叠,该中间体仅具有N末端的螺旋结构。在本研究中,Rd-apocyt b(562)的N末端螺旋结构中发生了双突变(V16G / I17A),以通过选择性地使天然状态不稳定来进一步增加该中间状态的相对种群。在圆二色性热熔实验中,该突变体表现出明显的两态折叠行为。但是,在T跳实验中,观察到两个动力学阶段。因此,这些结果与Rd-apocyt b(562)的折叠路径上存在折叠中间体的想法相符。此外,发现在65摄氏度时,该中间状态的原始状态的指数增长率约为(25微秒)(-1)。

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