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Fold-Sensitive Visible Fluorescence in β-Sheet Peptide Structures

机译:β-片状肽结构中折叠敏感的可见荧光

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摘要

Fluorescence (FL) is a basic optical phenomenon that is widely used in molecular spectroscopy, high-resolution microscopy, and bioimaging. It has exciting and emission spectra defined by an electronic structure of particular fluorochrome molecules. In this work, another type of FL is investigated. This FL phenomenon is observed both in biological amyloid and bioinspired amyloidogenic assemblies, folded into specific biomolecular beta-sheet secondary structure. A fine mechanism of this fold-sensitive FL effect, arising at the earliest stages of seeding and nucleation of beta-sheet nanofibers, and its growth under thermally activated conformational refolding of helical to beta-sheet state in bioinspired ultrashort peptide structures are studied. This FL effect demonstrates different properties compared to the classical FL from non-folded biomolecules or molecular dyes. Its excitation and emission spectra are similar in any beta-sheet peptide/protein assemblies irrespective of their biochemical composition, primary structure, and origin. It is shown that this fold-sensitive FL effect exhibits a wideband spectrum, covering the entire visible region (400-650 nm), high quantum yield, and tunable FL wavelength. This research paves the way for advanced FL optical nanomaterials, for new methods of bioimaging and diagnostics as well as for the development of biocompatible nanoscale FL sources.
机译:荧光(FL)是一种基本的光学现象,广泛用于分子光谱,高分辨率显微镜和生物体。它具有由特定荧光染料分子的电子结构定义的激发和发射光谱。在这项工作中,研究了另一种类型的FL。在生物淀粉样蛋白和生物淀粉样淀粉化组件中观察到这种流动现象,折叠成特定的生物分子β-片二次结构。研究了这种折叠敏感性效果的精细机制,在β-片状纳米纤维的最早阶段和肠甲醛的核细胞的阶段产生的效果,以及在生物悬浮的超薄肽结构中的螺旋中的热活化构象重折叠下的热活化构象重折叠下的生长。与来自非折叠生物分子或分子染料的典型流体相比,这种流动表现出不同的性质。它的激发和发射光谱在任何β-肽/蛋白质组件中类似于其生化组合物,初级结构和起源。结果表明,该折叠敏感性效应具有宽带光谱,覆盖整个可见区域(400-650nm),高量子产量和可调波长。这项研究为先进的FL光学纳米材料铺平了道路,用于生物成像和诊断的新方法以及生物相容性纳米级流源的开发。

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  • 来源
    《Advanced Optical Materials》 |2021年第23期|2002247.1-2002247.10|共10页
  • 作者单位

    Holon Inst Technol Fac Engn 52 Golomb IL-5810201D Holon Israel;

    Tel Aviv Univ Fac Engn Sch Elect Engn IL-69978 Tel Aviv Israel;

    Holon Inst Technol Fac Sci 52 Golomb IL-5810201 Holon Israel;

    Holon Inst Technol Fac Engn 52 Golomb IL-5810201D Holon Israel;

    Univ Naples Federico II Res Ctr Bioact Peptides CIRPeB Dept Pharm Via Mezzocannone 16 I-80134 Naples Italy;

    Univ Naples Federico II Res Ctr Bioact Peptides CIRPeB Dept Pharm Via Mezzocannone 16 I-80134 Naples Italy;

    Univ Naples Federico II Res Ctr Bioact Peptides CIRPeB Dept Pharm Via Mezzocannone 16 I-80134 Naples Italy;

    Tel Aviv Univ Fac Engn Sch Elect Engn IL-69978 Tel Aviv Israel;

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