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Ultrasonic absorption evidence for enhanced volume fluctuations in the tobacco mosaic virus protein helical aggregate

机译:超声吸收证据表明烟草花叶病毒蛋白螺旋聚集体的体积波动增加

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摘要

The increased ultrasonic absorption brought about by self-assembly of biomolecules is analyzed for the assembly process from the 20S aggregate to the helical rod of tobacco mosaic virus protein in solution, designated here as the 20S → P-helix transition. The analysis is based on theoretical developments in ultrasonic relaxation spectrometry presented previously and illustrates the possibility that this technique can be used for characterizing fluctuations. The analysis makes use of NMR data for the system in solution and of x-ray diffraction data for the closely related transition from the two-ring disk to the virion. These x-ray data comprise the high-resolution structures and the Debye-Waller temperature factors of the main chain atoms of both the two-ring disk in crystals and the virion in oriented gel form. First, reduced ultrasonic spectra are obtained for the 4S, 20S, and helical rod aggregates. The fluctuation-enhancement factor for the helical rod is determined independently of any deconvolution into normal modes of relaxation and is shown not to depend on the particular procedure of reduction employed. The increase of ultrasonic absorption in the 20S → P-helix transition primarily reveals enhancement of the relaxing system's normal-mode volume fluctuations. The observed relaxations probably involve one conformational process per subunit. The normal-mode volume fluctuations are then estimated from a bimodal least-squares best fit to the data, and a lower bound for the reaction volume associated with the fast steps is obtained. Two mechanisms are considered as follows: (i) a destabilization process in which the free-energy difference between two states is reduced and (ii) an increase in reaction volumes of local conformation changes in the helical aggregate, resulting from the formation of a “carboxyl cage-like” structure and from the change in environment produced inside the cage. Increased reaction volumes would not be detected with x-ray diffraction. The possible occurrence of fluctuations at the RNA binding site raises the question of whether a quaternary structure that exhibits significant conformational fluctuations must be present for the binding of the nucleic acid.
机译:对于从20S聚集体到溶液中烟草花叶病毒蛋白的螺旋杆的组装过程,分析了由生物分子自组装引起的超声吸收增加,此处将其称为20S→P-螺旋转变。该分析基于先前提出的超声弛豫光谱学的理论发展,并说明了该技术可用于表征波动的可能性。该分析利用溶液中系统的NMR数据和X射线衍射数据(从两环盘到病毒体的紧密相关过渡)进行分析。这些X射线数据包括晶体的双环盘和定向凝胶形式的病毒体的高分辨率结构和Debye-Waller温度因子。首先,获得了4S,20S和螺旋棒聚集体的减小的超声光谱。螺旋杆的波动增强因子是独立于任何反卷积确定为正常松弛模式而确定的,并且显示不依赖于所采用的特定还原程序。超声吸收在20S→P螺旋跃迁中的增加主要表明松弛系统的正常模式体积波动有所增强。观察到的弛豫可能涉及每个亚基一个构象过程。然后,从最适合该数据的双峰最小二乘估计正常模式的体积波动,并获得与快速步骤相关的反应体积的下限。可以考虑以下两种机制:(i)破坏稳定的过程,其中两种状态之间的自由能差异减小,并且(ii)螺旋形聚集体中局部构象变化的反应体积增加,这是由于“羧基的笼状结构”,并由笼内环境变化产生。 X射线衍射无法检测到增加的反应体积。 RNA结合位点可能发生波动,这引发了以下问题:是否必须存在表现出显着构象波动的四级结构才能与核酸结合。

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