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一种半胱氨酸稳定化植物防御素的构象动力学揭示了一种暴露疏水残基的进化机制。

Conformational Dynamics of a Cysteine-Stabilized Plant Defensin Reveals an Evolutionary Mechanism to Expose Hydrophobic Residues.

作者信息

Machado Luciana E S F, De Paula Viviane S, Pustovalova Yulia, Bezsonova Irina, Valente Ana Paula, Korzhnev Dmitry M, Almeida Fabio C L

机构信息

Centro Nacional de Ressonância Magnética Nuclear de Macromoléculas, Instituto de Bioquímica Médica e Centro Nacional de Biologia Estrutural e Bioimagem (CENABIO) , Universidade Federal do Rio de Janeiro , Rio de Janeiro 21941-902 , Brazil.

Department of Molecular Biology and Biophysics , University of Connecticut Health Center , Farmington , Connecticut 06030 , United States.

出版信息

Biochemistry. 2018 Oct 9;57(40):5797-5806. doi: 10.1021/acs.biochem.8b00753. Epub 2018 Sep 24.

DOI:10.1021/acs.biochem.8b00753
PMID:30207151
Abstract

Sugar cane defensin 5 (Sd5) is a small antifungal protein, whose structure is held together by four conserved disulfide bridges. Sd5 and other proteins sharing a cysteine-stabilized α-β (CSαβ) fold lack a regular hydrophobic core. Instead, they are stabilized by tertiary contacts formed by surface-exposed hydrophilic and hydrophobic residues. Despite excessive cross-links, Sd5 exhibits complex millisecond conformational dynamics involving all secondary structure elements. We used Carr-Purcell-Meiboom-Gill (CPMG) NMR relaxation dispersion (RD) measurements performed at different temperatures and denaturant concentrations to probe brief excursions of Sd5 to a sparsely populated "excited" state. Temperature-dependent CPMG RD experiments reveal that the excited state is enthalpically unfavorable, suggesting a rearrangement of stabilizing contacts formed by surface-exposed side chains and/or secondary structure, while the experiments performed at different denaturant concentrations suggest a decrease in accessible surface area of Sd5 in the excited state. The measured backbone N chemical shift changes point to a global conformational rearrangement such as a potential α- to β-transition of the Sd5 α-helix or other major secondary structure reorganization and concomitant conformational changes in other parts of the protein. Overall, the emerging picture of Sd5 dynamics suggests this protein can populate two alternative well-ordered conformational states, with the excited conformer being more compact than the native state and having a distinct secondary structure and side-chain arrangements. The observation of an energetically unfavorable yet more compact excited state reveals a remarkable evolution of the CSαβ fold to expose and reorganize hydrophobic residues, which enables the creation of versatile binding sites.

摘要

甘蔗防御素5(Sd5)是一种小型抗真菌蛋白,其结构由四个保守的二硫键维系在一起。Sd5和其他具有半胱氨酸稳定的α-β(CSαβ)折叠的蛋白质缺乏规则的疏水核心。相反,它们通过表面暴露的亲水和疏水残基形成的三级相互作用得以稳定。尽管存在过多的交联,Sd5仍表现出涉及所有二级结构元件的复杂毫秒级构象动力学。我们使用在不同温度和变性剂浓度下进行的Carr-Purcell-Meiboom-Gill(CPMG)核磁共振弛豫色散(RD)测量来探测Sd5向一种低丰度“激发”态的短暂跃迁。温度依赖性CPMG RD实验表明,激发态在焓上是不利的,这表明由表面暴露的侧链和/或二级结构形成的稳定相互作用发生了重排,而在不同变性剂浓度下进行的实验表明,激发态下Sd5的可及表面积减小。测得的主链N化学位移变化表明存在全局构象重排,例如Sd5α-螺旋可能发生α-到β的转变或其他主要二级结构的重组,以及蛋白质其他部分伴随的构象变化。总体而言,Sd5动力学的新情况表明,这种蛋白质可以占据两种交替的有序构象状态,激发态构象比天然状态更紧凑,具有独特的二级结构和侧链排列。对一种能量上不利但更紧凑的激发态的观察揭示了CSαβ折叠的显著进化,以暴露和重组疏水残基,从而能够创建通用的结合位点。

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