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Shape-Shifting Peptide Nanomaterials: Surface Asymmetry Enables pH-Dependent Formation and Interconversion of Collagen Tubes and Sheets

机译:形状移位肽纳米材料:表面不对称性能使pH依赖性形成和胶原管和薄板的相互互连

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摘要

The fabrication of dynamic, transformable biomaterials that respond to environmental cues represents a significant step forward in the development of synthetic materials that rival their highly functional, natural counterparts. Here, we describe the design and synthesis of crystalline supramolecular architectures from charge-complementary heteromeric pairs of collagen-mimetic peptides (CMPs). Under appropriate conditions, CMP pairs spontaneously assemble into either ID ultraporous (pore diameter >100 nm) tubes or 2D bilayer nanosheets due to the structural asymmetry that arises from heteromeric self-association. Crystalline collagen tubes represent a heretofore unobserved morphology of this common biomaterial. In-depth structural characterization from a suite of biophysical methods, including TEM, AFM, high-resolution cryo-EM, and SAXS/WAXS measurements, reveals that the sheet and tube assemblies possess a similar underlying lattice structure. The experimental evidence suggests that the tubular structures are a consequence of the self-scrolling of incipient 2D layers of collagen triple helices and that the scrolling direction determines the formation of two distinct structural isoforms. Furthermore, we show that nanosheets and tubes can spontaneously interconvert through manipulation of the assembly pH and systematic adjustment of the CMP sequence. Altogether, we establish initial guidelines for the construction of dynamically responsive ID and 2D assemblies that undergo a structurally programmed morphological transition.
机译:响应环境提示的动态,可转化的生物材料的制造代表了竞争其高官能的自然对应物的合成材料的发展中前进。在这里,我们描述了来自电荷互补异质对胶原模拟肽(CMP)的晶体超分子架构的设计和合成。在适当的条件下,CMP对由于异聚自我关联产生的结构不对称而自发地组装成ID Ultraporous(孔径> 100nm)管或2D双层纳米片。结晶胶原蛋白管代表这种常见生物材料的迄今为止不观察室的形态。来自一套生物物理方法的深度结构表征,包括TEM,AFM,高分辨率低温和萨克斯/蜡测量,揭示了片材和管组件具有类似的底层晶格结构。实验证据表明管状结构是胶原三螺旋的初始2D层的自滚动的结果,并且滚动方向决定了两个不同的结构同种型的形成。此外,我们表明纳米蛋白酶和管可以通过操纵组装pH和系统调整CMP序列来自发地互连。完全建立了在结构编程的形态转型的动态响应ID和2D组件构建的初步指导方针。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2020年第47期|19956-19968|共13页
  • 作者单位

    Department of Chemistry Emory University Atlanta Georgia 30322 United States;

    Department of Chemistry Emory University Atlanta Georgia 30322 United States;

    Paul Scherrer Institut CH-S232 Villigen Switzerland;

    X-ray Science Division Argonne National Laboratory Lemont Illinois 60439 United States;

    Department of Chemistry Emory University Atlanta Georgia 30322 United States;

    Department of Chemistry Emory University Atlanta Georgia 30322 United States;

    The Robert P. Apkarian IntegratedElectron Microscopy Core Emory University Atlanta Georgia 30322 United States;

    Department of Chemistry Emory University Atlanta Georgia 30322 United States;

    Department of Chemistry Emory University Atlanta Georgia 30322 United States;

    Paul Scherrer Institut CH-S232 Villigen Switzerland Center for Cellular Imaging and NanoAnalytics Biozentrum University of Basel CH-4058 Basel Switzerland;

    Department of Chemistry Emory University Atlanta Georgia 30322 United States;

    Department of Chemistry Emory University Atlanta Georgia 30322 United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-18 22:16:55

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