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脱辅基肌红蛋白酸变性状态的核磁共振结构与动力学表征为蛋白质折叠早期事件提供了见解。

NMR structural and dynamic characterization of the acid-unfolded state of apomyoglobin provides insights into the early events in protein folding.

作者信息

Yao J, Chung J, Eliezer D, Wright P E, Dyson H J

机构信息

Department of Molecular Biology MB2, The Scripps Research Institute, 10550 North Torrey Pines Road, La Jolla, California 92037, USA.

出版信息

Biochemistry. 2001 Mar 27;40(12):3561-71. doi: 10.1021/bi002776i.

Abstract

Apomyoglobin forms a denatured state under low-salt conditions at pH 2.3. The conformational propensities and polypeptide backbone dynamics of this state have been characterized by NMR. Nearly complete backbone and some side chain resonance assignments have been obtained, using a triple-resonance assignment strategy tailored to low protein concentration (0.2 mM) and poor chemical shift dispersion. An estimate of the population and location of residual secondary structure has been made by examining deviations of (13)C(alpha), (13)CO, and (1)H(alpha) chemical shifts from random coil values, scalar (3)J(HN,H)(alpha) coupling constants and (1)H-(1)H NOEs. Chemical shifts constitute a highly reliable indicator of secondary structural preferences, provided the appropriate random coil chemical shift references are used, but in the case of acid-unfolded apomyoglobin, (3)J(HN,H)(alpha) coupling constants are poor diagnostics of secondary structure formation. Substantial populations of helical structure, in dynamic equilibrium with unfolded states, are formed in regions corresponding to the A and H helices of the folded protein. In addition, the deviation of the chemical shifts from random coil values indicates the presence of helical structure encompassing the D helix and extending into the first turn of the E helix. The polypeptide backbone dynamics of acid-unfolded apomyoglobin have been investigated using reduced spectral density function analysis of (15)N relaxation data. The spectral density J(omega(N)) is particularly sensitive to variations in backbone fluctuations on the picosecond to nanosecond time scale. The central region of the polypeptide spanning the C-terminal half of the E helix, the EF turn, and the F helix behaves as a free-flight random coil chain, but there is evidence from J(omega(N)) of restricted motions on the picosecond to nanosecond time scale in the A and H helix regions where there is a propensity to populate helical secondary structure in the acid-unfolded state. Backbone fluctuations are also restricted in parts of the B and G helices due to formation of local hydrophobic clusters. Regions of restricted backbone flexibility are generally associated with large buried surface area. A significant increase in J(0) is observed for the NH resonances of some residues located in the A and G helices of the folded protein and is associated with fluctuations on a microsecond to millisecond time scale that probably arise from transient contacts between these distant regions of the polypeptide chain. Our results indicate that the equilibrium unfolded state of apomyoglobin formed at pH 2.3 is an excellent model for the events that are expected to occur in the earliest stages of protein folding, providing insights into the regions of the polypeptide that spontaneously undergo local hydrophobic collapse and sample nativelike secondary structure.

摘要

脱辅基肌红蛋白在pH 2.3的低盐条件下形成变性状态。该状态的构象倾向和多肽主链动力学已通过核磁共振进行了表征。使用针对低蛋白浓度(0.2 mM)和较差化学位移分散性量身定制的三重共振归属策略,已获得了几乎完整的主链和一些侧链共振归属。通过检查(13)C(α)、(13)CO和(1)H(α)化学位移相对于无规卷曲值的偏差、标量(3)J(HN,H)(α)耦合常数和(1)H-(1)H NOE,对残余二级结构的数量和位置进行了估计。化学位移构成了二级结构偏好的高度可靠指标,前提是使用适当的无规卷曲化学位移参考值,但在酸解折叠的脱辅基肌红蛋白的情况下,(3)J(HN,H)(α)耦合常数对二级结构形成的诊断效果不佳。在与折叠蛋白的A和H螺旋相对应的区域中,形成了与未折叠状态处于动态平衡的大量螺旋结构。此外,化学位移相对于无规卷曲值的偏差表明存在包含D螺旋并延伸至E螺旋第一圈的螺旋结构。使用(15)N弛豫数据的简化谱密度函数分析研究了酸解折叠的脱辅基肌红蛋白的多肽主链动力学。谱密度J(ω(N))对皮秒到纳秒时间尺度上主链波动的变化特别敏感。跨越E螺旋C端一半、EF转角和F螺旋的多肽中心区域表现为自由飞行的无规卷曲链,但从J(ω(N))有证据表明,在酸解折叠状态下倾向于形成螺旋二级结构的A和H螺旋区域,在皮秒到纳秒时间尺度上存在受限运动。由于局部疏水簇的形成,B和G螺旋的部分区域主链波动也受到限制。主链柔韧性受限的区域通常与大的埋藏表面积相关。观察到折叠蛋白的A和G螺旋中一些残基的NH共振的J(0)显著增加,这与可能源于多肽链这些远距离区域之间瞬时接触的微秒到毫秒时间尺度上的波动有关。我们的结果表明,在pH 2.3形成的脱辅基肌红蛋白的平衡未折叠状态是蛋白质折叠最早阶段预期发生事件的一个极好模型,为多肽中自发经历局部疏水塌缩并呈现类似天然二级结构的区域提供了见解。

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