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首页> 外文期刊>Journal of Materials Chemistry, B. materials for biology and medicine >Photocontrolled protein assembly for constructing programmed two-dimensional nanomaterials
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Photocontrolled protein assembly for constructing programmed two-dimensional nanomaterials

机译:用于构建编程的二维纳米材料的光控制蛋白质组件

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摘要

Precise self-assembly of proteins with structural heterogeneity, flexibility, and complexity into programmed arrays to mimic the exquisite architectures created by Nature is a great challenge for the development of protein-based functional nanomaterials. Herein, we present a strategy that integrates light stimuli and covalent coupling to prepare size-tunable two-dimensional (2D) protein nanostructures by remote photocontrol. Using Ru(bpy)(3)(2+) as a photosensitizer, stable protein one (SP1) was redesigned and self-assembled into nanosheets in the presence of ammonium persulfate (APS) through a rapid and efficient oxidative protein crosslinking reaction. In the design, only a serine-to-tyrosine mutation at position 98 was introduced into SP1 by combining computer simulation and genetic engineering for specific covalent coupling under white light illumination. The chemical and topographical specificities of the photosensitized crosslinking reaction allow control of the direction of protein assembly to form extended 2D nanosheets, which are packed in an orderly manner along the lateral surface of ring-shaped SP1S98Y. Notably, the growth of SP1 nanosheets exhibited isotropical characteristics and can be dynamically mediated by illumination time to achieve precise control of the size of the assembled architectures. The subsequent heat treatment further revealed the excellent thermostability of the 2D periodic SP1 nanostructures, which may find promising applications in the fabrication of various nanobiomaterials after functionalization. The present work demonstrates that the visible light-triggered crosslinking strategy is a facile and environmentally friendly method for constructing advanced protein architectures through hierarchical self-assembly.
机译:精确自组装具有结构异质性,灵活性和复杂性的蛋白质,以模仿自然产生的精致架构是蛋白质的官能纳米材料的发展是一个巨大的挑战。在此,我们提出了一种策略,其整合光刺激和共价偶联以通过远程光电动机制备尺寸可调二维(2D)蛋白纳米结构。使用Ru(BPY)(3)(3)(2+)作为光敏剂,通过快速和有效的氧化蛋白交联反应重新设计并自组装成纳次片中的纳米片中的纳米片。在设计中,通过组合白光照射下的特定共价耦合来引入位于位置98处的丝氨酸酪氨酸突变。光敏交联反应的化学和地形特异性允许控制蛋白质组件的方向以形成延伸的2D纳米片,其沿着环形SP1S98Y的侧表面有序地包装。值得注意的是,SP1纳米片的生长表现出各向同性特征,并且可以通过照明时间动态地介导,以实现对组装架构的尺寸的精确控制。随后的热处理进一步揭示了2D周期性SP1纳米结构的优异的热稳定性,其可以在官能化之后在制造各种纳米双层材料的制造中找到有前途的应用。目前的作品表明,可见光触发的交联策略是通过等级自组装构建高级蛋白质架构的容纳和环保方法。

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    Jilin Univ Coll Chem State Key Lab Supramol Struct &

    Mat Changchun 130012 Jilin Peoples R China;

    Jilin Univ Coll Chem State Key Lab Supramol Struct &

    Mat Changchun 130012 Jilin Peoples R China;

    Jilin Univ Coll Chem State Key Lab Supramol Struct &

    Mat Changchun 130012 Jilin Peoples R China;

    Jilin Univ Coll Chem State Key Lab Supramol Struct &

    Mat Changchun 130012 Jilin Peoples R China;

    Jilin Univ Coll Chem State Key Lab Supramol Struct &

    Mat Changchun 130012 Jilin Peoples R China;

    Jilin Univ Coll Chem State Key Lab Supramol Struct &

    Mat Changchun 130012 Jilin Peoples R China;

    Jilin Univ Coll Chem State Key Lab Supramol Struct &

    Mat Changchun 130012 Jilin Peoples R China;

    Jilin Univ Coll Chem State Key Lab Supramol Struct &

    Mat Changchun 130012 Jilin Peoples R China;

    Jilin Univ Coll Chem State Key Lab Supramol Struct &

    Mat Changchun 130012 Jilin Peoples R China;

    Jilin Univ Coll Chem State Key Lab Supramol Struct &

    Mat Changchun 130012 Jilin Peoples R China;

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  • 正文语种 eng
  • 中图分类 分析化学 ;
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