Structural Insights into Phycocyanin Langmuir–Blodgett Multilayers via Serial Femtosecond Crystallography with X-ray Free-Electron Laser

IF 2.4 4区 材料科学 Q2 CRYSTALLOGRAPHY
Crystals Pub Date : 2024-08-29 DOI:10.3390/cryst14090767
Eugenia Pechkova, Fabio Massimo Speranza, Paola Ghisellini, Stefano Fiordoro, Cristina Rando, Roberto Eggenhöffner
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引用次数: 0

Abstract

Serial femtosecond crystallography (SFX) with X-ray free-electron lasers (XFELs) has revolutionized classical X-ray diffraction experiments by utilizing ultra-short, intense, and coherent X-ray pulses. However, the SFX approach still requires thousands of nearly identical samples, leading to significant protein consumption. We propose utilizing Langmuir–Blodgett protein multilayers, which are characterized by long-range order, thermal stability, and the ability to induce protein crystallization, even in proteins that cannot be crystallized by conventional methods. This study aimed to combine the intrinsic properties of Langmuir–Blodgett multilayers with advanced XFEL techniques at the Linac Coherent Light Source. Since the macromolecule organization can be explored in nano or 2D crystals exploiting the properties of SFX–XFEL radiation that enable the capture of high-resolution diffraction images before radiation damage occurs, we propose Langmuir–Blodgett protein nanofilm technology as a novel approach for direct “on-chip” protein sample preparation. The present study extends previous investigations into Langmuir–Blodgett phycocyanin multilayer nanofilms using synchrotron radiation cryo-EM microscopy and second-order nonlinear imaging of chiral crystal (SONICC) experiments. We also examined the thermal stability of phycocyanin Langmuir–Blodgett multilayered films deposited on Si3N4 membranes to evaluate structural changes occurring at 150 °C compared with room temperature. Phycocyanin Langmuir–Blodgett films are worthy of investigation in view of their suitability for tissue engineering and other applications due to their thermal integrity and stability as the results of the present investigation reveal.
利用 X 射线自由电子激光进行串行飞秒晶体学分析,揭示植物花青素朗缪尔-布洛杰特多层膜的结构奥秘
利用 X 射线自由电子激光器(XFEL)进行的串行飞秒晶体学(SFX)利用超短、高强度和相干 X 射线脉冲彻底改变了传统的 X 射线衍射实验。然而,SFX 方法仍然需要数千个几乎完全相同的样品,导致大量蛋白质消耗。我们建议利用朗缪尔-布洛杰特蛋白质多层膜,这种多层膜具有长程有序性、热稳定性和诱导蛋白质结晶的能力,甚至能诱导传统方法无法结晶的蛋白质结晶。这项研究旨在将朗缪尔-布洛杰特多层膜的固有特性与里纳克相干光源的先进 XFEL 技术相结合。由于可以利用 SFX-XFEL 辐射的特性在纳米或二维晶体中探索大分子的组织,从而在辐射损伤发生之前捕捉到高分辨率的衍射图像,因此我们建议将朗缪尔-布洛吉特蛋白质纳米薄膜技术作为直接制备 "片上 "蛋白质样品的一种新方法。本研究利用同步辐射冷冻电子显微镜和手性晶体二阶非线性成像(SONICC)实验,扩展了之前对朗缪尔-布洛吉特藻蓝蛋白多层纳米薄膜的研究。我们还研究了沉积在 Si3N4 膜上的植物花青素朗缪尔-布洛杰特多层膜的热稳定性,以评估与室温相比在 150 °C 时发生的结构变化。本研究的结果表明,植物花青素朗缪尔-布洛吉特薄膜具有热完整性和稳定性,适用于组织工程和其他应用,因此值得研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Crystals
Crystals CRYSTALLOGRAPHYMATERIALS SCIENCE, MULTIDIS-MATERIALS SCIENCE, MULTIDISCIPLINARY
CiteScore
4.20
自引率
11.10%
发文量
1527
审稿时长
16.12 days
期刊介绍: Crystals (ISSN 2073-4352) is an open access journal that covers all aspects of crystalline material research. Crystals can act as a reference, and as a publication resource, to the community. It publishes reviews, regular research articles, and short communications. Our aim is to encourage scientists to publish their experimental and theoretical results in as much detail as possible. Therefore, there is no restriction on article length. Full experimental details must be provided to enable the results to be reproduced. Crystals provides a  forum for the advancement of our understanding of the nucleation, growth, processing, and characterization of crystalline materials. Their mechanical, chemical, electronic, magnetic, and optical properties, and their diverse applications, are all considered to be of importance.
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