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探究小鼠神经球蛋白 CD 环-D-螺旋单元在 CO 配体结合和结构动力学中的作用。

Probing the Role of Murine Neuroglobin CDloop-D-Helix Unit in CO Ligand Binding and Structural Dynamics.

机构信息

Dipartimento di Scienze Biochimiche "A. Rossi Fanelli", Sapienza, Università di Roma, Piazzale A. Moro 5, I-00185 Rome, Italy.

Dipartimento di Chimica ″Ugo Schiff″, Università di Firenze, Via della Lastruccia 3-13, I-50019 Sesto Fiorentino, Italy.

出版信息

ACS Chem Biol. 2022 Aug 19;17(8):2099-2108. doi: 10.1021/acschembio.2c00172. Epub 2022 Jul 7.

Abstract

We produced a neuroglobin variant, namely, Ngb CDless, with the excised CDloop- and D-helix, directly joining the C- and E-helices. The CDless variant retained bis-His hexacoordination, and we investigated the role of the CDloop-D-helix unit in controlling the CO binding and structural dynamics by an integrative approach based on X-ray crystallography, rapid mixing, laser flash photolysis, resonance Raman spectroscopy, and molecular dynamics simulations. Rapid mixing and laser flash photolysis showed that ligand affinity was unchanged with respect to the wild-type protein, albeit with increased on and off constants for rate-limiting heme iron hexacoordination by the distal His64. Accordingly, resonance Raman spectroscopy highlighted a more open distal pocket in the CO complex that, in agreement with MD simulations, likely involves His64 swinging inward and outward of the distal heme pocket. Ngb CDless displays a more rigid overall structure with respect to the wild type, abolishing the structural dynamics of the CDloop-D-helix hypothesized to mediate its signaling role, and it retains ligand binding control by distal His64. In conclusion, this mutant may represent a tool to investigate the involvement of CDloop-D-helix in neuroprotective signaling in a cellular or animal model.

摘要

我们制备了一种神经球蛋白变体,即 Ngb CDless,它缺失了 CD 环和 D 螺旋,C 螺旋和 E 螺旋直接相连。CDless 变体保留了双 His 六配位,我们通过 X 射线晶体学、快速混合、激光闪光光解、共振拉曼光谱和分子动力学模拟的综合方法研究了 CD 环-D 螺旋单元在控制 CO 结合和结构动力学方面的作用。快速混合和激光闪光光解表明,与野生型蛋白相比,配体亲和力没有变化,尽管远端 His64 对限速血红素六配位的 ON 和 OFF 常数增加。因此,共振拉曼光谱突出显示 CO 配合物中存在更开放的远端口袋,与 MD 模拟一致,可能涉及 His64 在远端血红素口袋内外摆动。与野生型相比,Ngb CDless 显示出更刚性的整体结构,消除了假设介导其信号作用的 CD 环-D 螺旋的结构动力学,并且它保留了由远端 His64 控制的配体结合控制。总之,该突变体可能代表一种工具,可用于在细胞或动物模型中研究 CD 环-D 螺旋在神经保护信号转导中的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9061/9396615/f030f1f26741/cb2c00172_0002.jpg

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