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单对荧光共振能量转移揭示的钙调蛋白构象亚态:溶液条件和氧化修饰的影响

Conformational substates of calmodulin revealed by single-pair fluorescence resonance energy transfer: influence of solution conditions and oxidative modification.

作者信息

Slaughter Brian D, Unruh Jay R, Allen Michael W, Bieber Urbauer Ramona J, Johnson Carey K

机构信息

Department of Chemistry, 1251 Wescoe Hall Drive, University of Kansas, Lawrence, Kansas 66045-7582, USA.

出版信息

Biochemistry. 2005 Mar 15;44(10):3694-707. doi: 10.1021/bi048595o.

Abstract

A calmodulin (CaM) mutant (T34,110C-CaM) doubly labeled with fluorescence probes AlexaFluor 488 and Texas Red in opposing domains (CaM-DA) has been used to examine conformational heterogeneity in CaM by single-pair fluorescence resonance energy transfer (spFRET). Burst-integrated FRET efficiencies of freely diffusing CaM-DA single molecules yielded distributions of distance between domains of CaM-DA. We recently reported distinct conformational substates of Ca(2+)-CaM-DA and apoCaM-DA, with peaks in the distance distributions centered at approximately 28 A, 34-38 A, and 55 A [Slaughter et al. (2004) J. Phys. Chem. B 108, 10388-10397]. In the present study, shifts in the amplitudes and center distances of the conformational substates were detected with variation in solution conditions. The amplitude of an extended conformation was observed to change as a function of Ca(2+) over a free Ca(2+) range that is consistent with binding to the high affinity, C-terminal Ca(2+) binding sites, suggesting the existence of communication between lobes of CaM. Lowering pH shifted the relative amplitudes of the conformations, with a marked increase in the presence of the compact conformations and an almost complete absence of the extended conformation. In addition, the single-molecule distance distribution of apoCaM-DA at reduced ionic strength was shifted to longer distance and showed evidence of an increase in conformational heterogeneity relative to apoCaM-DA at physiological ionic strength. Oxidation of methionine residues in CaM-DA produced a substantial increase in the amplitude of the extended conformation relative to the more compact conformation. The results are considered in light of a hypothesis that suggests that electrostatic interactions between charged amino acid side chains play an important role in determining the most stable CaM conformation under varying solution conditions.

摘要

一种在相对结构域用荧光探针AlexaFluor 488和Texas Red进行双标记的钙调蛋白(CaM)突变体(T34,110C-CaM)(CaM-DA)已被用于通过单对荧光共振能量转移(spFRET)研究CaM中的构象异质性。自由扩散的CaM-DA单分子的爆发积分FRET效率产生了CaM-DA结构域之间距离的分布。我们最近报道了Ca(2+)-CaM-DA和脱辅基CaM-DA的不同构象亚态,距离分布的峰值集中在约28 Å、34 - 38 Å和55 Å [Slaughter等人(2004年)《物理化学杂志B》108卷,10388 - 10397页]。在本研究中,随着溶液条件的变化,检测到构象亚态的幅度和中心距离发生了变化。观察到一种伸展构象的幅度随Ca(2+)在与高亲和力C末端Ca(2+)结合位点结合相一致的游离Ca(2+)范围内变化,这表明CaM叶之间存在通讯。降低pH值会改变构象的相对幅度,紧密构象的存在显著增加,而伸展构象几乎完全不存在。此外,与生理离子强度下的脱辅基CaM-DA相比,脱辅基CaM-DA在降低离子强度时的单分子距离分布向更长距离移动,并显示出构象异质性增加的证据。CaM-DA中甲硫氨酸残基的氧化相对于更紧密的构象,使伸展构象的幅度大幅增加。根据一种假设来考虑这些结果,该假设认为带电荷氨基酸侧链之间的静电相互作用在确定不同溶液条件下最稳定的CaM构象中起重要作用。

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