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两种 NowGFP 晶体多形体的比较揭示了一种被晶体包装捕获的新构象态。

Comparison of two crystal polymorphs of NowGFP reveals a new conformational state trapped by crystal packing.

机构信息

Department of Physics, Ulsan National Institute of Science and Technology (UNIST), Ulsan 44919, Republic of Korea.

Department of Chemistry, Ulsan National Institute of Science and Technology (UNIST), Ulsan 44919, Republic of Korea.

出版信息

Acta Crystallogr D Struct Biol. 2024 Sep 1;80(Pt 9):686-698. doi: 10.1107/S2059798324008246. Epub 2024 Sep 2.

Abstract

Crystal polymorphism serves as a strategy to study the conformational flexibility of proteins. However, the relationship between protein crystal packing and protein conformation often remains elusive. In this study, two distinct crystal forms of a green fluorescent protein variant, NowGFP, are compared: a previously identified monoclinic form (space group C2) and a newly discovered orthorhombic form (space group P222). Comparative analysis reveals that both crystal forms exhibit nearly identical linear assemblies of NowGFP molecules interconnected through similar crystal contacts. However, a notable difference lies in the stacking of these assemblies: parallel in the monoclinic form and perpendicular in the orthorhombic form. This distinct mode of stacking leads to different crystal contacts and induces structural alteration in one of the two molecules within the asymmetric unit of the orthorhombic crystal form. This new conformational state captured by orthorhombic crystal packing exhibits two unique features: a conformational shift of the β-barrel scaffold and a restriction of pH-dependent shifts of the key residue Lys61, which is crucial for the pH-dependent spectral shift of this protein. These findings demonstrate a clear connection between crystal packing and alternative conformational states of proteins, providing insights into how structural variations influence the function of fluorescent proteins.

摘要

晶体多态性是研究蛋白质构象灵活性的一种策略。然而,蛋白质晶体堆积与蛋白质构象之间的关系往往难以捉摸。在这项研究中,比较了一种绿色荧光蛋白变体 NowGFP 的两种不同晶体形式:先前确定的单斜晶系形式(空间群 C2)和新发现的正交晶系形式(空间群 P222)。比较分析表明,这两种晶体形式都表现出 NowGFP 分子的近乎相同的线性组装,这些分子通过相似的晶体接触相互连接。然而,一个显著的区别在于这些组装的堆积方式:单斜晶系中的平行堆积和正交晶系中的垂直堆积。这种独特的堆积方式导致不同的晶体接触,并在正交晶系晶体形式的不对称单元中的两个分子之一中引起结构改变。这种由正交晶体堆积捕获的新构象状态表现出两个独特的特征:β-桶支架的构象位移和关键残基 Lys61 的 pH 依赖性位移的限制,这对于该蛋白质的 pH 依赖性光谱位移至关重要。这些发现表明晶体堆积与蛋白质的替代构象状态之间存在明显的联系,为我们了解结构变化如何影响荧光蛋白的功能提供了线索。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/083c/11394120/18d349c798d1/d-80-00686-fig1.jpg

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