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合成自旋标记四螺旋束蛋白中的全局拓扑结构与稳定性以及局部结构与动力学

Global topology & stability and local structure & dynamics in a synthetic spin-labeled four-helix bundle protein.

作者信息

Gibney B R, Johansson J S, Rabanal F, Skalicky J J, Wand A J, Dutton P L

机构信息

Department of Biochemistry and Biophysics, University of Pennsylvania, Philadelphia 19104, USA.

出版信息

Biochemistry. 1997 Mar 11;36(10):2798-806. doi: 10.1021/bi9618225.

DOI:10.1021/bi9618225
PMID:9062107
Abstract

A maleimide nitroxide spin-label (MAL-6) linked to a cysteine in the hydrophobic core and a coproporphyrin I (CP) appended on the N-terminus of a synthetic helix-loop-helix peptide ([alpha2]) have been used to examine the designed self-association of a four-helix bundle ([alpha2]2), focusing on the bundle topology and stability and the rotational dynamics of the spin-label. Gel-permeation chromatography demonstrated that the [alpha2] peptide and the peptide modified with a spin-label ([MAL-6-alpha2]), a coproporphyrin ([CP-alpha2]) and a coproporphyrin plus a spin-label ([CP-MAL-6-alpha2]) self-associate into four helix bundles in solution as designed. Circular dichroism (CD) spectra prove that all these peptides are highly alpha-helical, confirmed for [alpha2]2 by Fourier transform infrared (FTIR) spectroscopic analysis. Electron spin resonance (ESR) spectra of the two attached maleimide spin-labels in [MAL-6-alpha2]2 shows their effective rotational correlation time (tau(c)) is 7.3 +/- 0.5 ns, consistent with that expected for the tumbling of the four helix bundle itself, indicating the labels are immobilized. The ESR spectra were also unaltered by aqueous-phase paramagnetic ions, Ni(II), demonstrating all of the spin-labels are buried within the hydrophobic core. The lack of spin-spin interaction between the buried, immobilized spin-labels indicates they are remote (> 15 A) from each other, indicating an antiparallel topology of the monomers in [MAL-6-alpha2]2. The parent [alpha2]2 and the modified [MAL-6-alpha2]2 and [CP-alpha2]2 peptides are highly stable (deltaG(H2O) approximately 25 kcal/mol) as investigated by guanidine hydrochloride denaturation curves monitored by ESR and CD spectroscopies. Guanidine hydrochloride denaturation leads to a shorter correlation time of the spin-label, tau(c) < 1 ns, approaching that of an unrestricted spin-label in solution. In contrast, trifluoroethanol caused dissociation of [MAL-6-alpha2]2 to yield two [MAL-6-alpha2] monomers with retention of secondary structure and changed the tau(c) to 2.5 +/- 0.5 ns, indicating that a significant degree of motional restriction is imposed on the spin-label by the secondary structure. The coproporphyrin probes covalently attached to the N-termini of [CP-alpha2]2 and [CP-MAL-6-alpha2]2 provided evidence that the helical monomers of both were in a parallel orientation, in contrast to the antiparallel orientation determined for [MAL-6-alpha2]2. Consequently, the ESR spectra of [MAL-6-alpha2]2 and [CP-MAL-6-alpha2]2 reveal major structural differences in the local vicinity of the spin-labels due to the topological difference between these two bundles. The ESR spectra of [CP-MAL-6-alpha2]2 contains two distinct nitroxide populations, indicating that one spin-label remains buried in the hydrophobic core and the other is excluded to solvent in this parallel topology. Alleviation of the steric interactions causing one spin-label in [CP-MAL-6-alpha2]2 to be solvent-exposed by addition of [CP-alpha2]2 results in formation of the heterodimeric [CP-alpha2]/[CP-MAL-6-alpha2], as evidenced by insertion of all the spin-labels into hydrophobic cores. The changes in global topology and local structure as evidenced by this pair of spectral probes have relatively minor effects on the course of guanidine denaturation of these bundles.

摘要

一种与疏水核心中的半胱氨酸相连的马来酰亚胺氮氧化物自旋标记物(MAL-6)以及连接在合成螺旋-环-螺旋肽([α2])N端的粪卟啉I(CP),已被用于研究设计的四螺旋束([α2]2)的自组装,重点关注束的拓扑结构、稳定性以及自旋标记物的旋转动力学。凝胶渗透色谱表明,[α2]肽以及用自旋标记物([MAL-6-α2])、粪卟啉([CP-α2])和粪卟啉加自旋标记物([CP-MAL-6-α2])修饰的肽按设计在溶液中自组装成四螺旋束。圆二色性(CD)光谱证明所有这些肽都是高度α-螺旋的,傅里叶变换红外(FTIR)光谱分析也证实了[α2]₂的这一特性。[MAL-6-α2]₂中两个连接的马来酰亚胺自旋标记物的电子自旋共振(ESR)光谱显示它们的有效旋转相关时间(τc)为7.³±0.5纳秒,这与四螺旋束自身翻滚所预期的一致,表明标记物是固定的。ESR光谱也不受水相顺磁性离子Ni(II)的影响,这表明所有自旋标记物都埋藏在疏水核心内。埋藏的、固定的自旋标记物之间缺乏自旋-自旋相互作用,表明它们彼此相距较远(>15埃),这表明[MAL-6-α2]₂中单体的拓扑结构是反平行的。通过ESR和CD光谱监测的盐酸胍变性曲线研究发现,亲本[α2]₂以及修饰后的[MAL-6-α2]₂和[CP-α2]₂肽都高度稳定(ΔG(H₂O)约为25千卡/摩尔)。盐酸胍变性导致自旋标记物的相关时间缩短,τc<1纳秒,接近溶液中无限制自旋标记物的相关时间。相比之下,三氟乙醇导致[MAL-6-α2]₂解离,产生两个保留二级结构的[MAL-6-α2]单体,并将τc变为2.5±0.5纳秒,这表明二级结构对自旋标记物施加了显著程度的运动限制。共价连接到[CP-α2]₂和[CP-MAL-6-α2]₂ N端的粪卟啉探针提供了证据,表明两者的螺旋单体呈平行取向,这与[MAL-6-α2]₂所确定的反平行取向相反。因此,[MAL-6-α2]₂和[CP-MAL-6-α2]₂的ESR光谱揭示了由于这两个束的拓扑差异,自旋标记物局部附近存在主要结构差异。[CP-MAL-6-α2]₂的ESR光谱包含两个不同的氮氧化物群体,这表明在这种平行拓扑结构中,一个自旋标记物仍埋藏在疏水核心内,另一个则暴露于溶剂中。通过添加[CP-α2]₂减轻导致[CP-MAL-6-α2]₂中一个自旋标记物暴露于溶剂的空间相互作用,会导致异二聚体[CP-α2]/[CP-MAL-6-α2]的形成,所有自旋标记物都插入疏水核心就证明了这一点。这对光谱探针所证明的整体拓扑结构和局部结构的变化,对这些束的胍变性过程影响相对较小。

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