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BSA 结合与潜在促进成纤维细胞增殖的合成氨基酸的聚集形成:一项计算机模拟、圆二色光谱、DLS 和细胞研究。

BSA Binding and Aggregate Formation of a Synthetic Amino Acid with Potential for Promoting Fibroblast Proliferation: An In Silico, CD Spectroscopic, DLS, and Cellular Study.

机构信息

Institute of Pharmacy, Yerevan State University, 1 Alex Manoogian Str., Yerevan 0025, Armenia.

Institute of Biostructures and Bioimaging, Italian National Council for Research (IBB-CNR), Area di Ricerca Site and Headquarters, Via Pietro Castellino 111, 80131 Naples, Italy.

出版信息

Biomolecules. 2024 May 14;14(5):579. doi: 10.3390/biom14050579.

Abstract

This study presents the chemical synthesis, purification, and characterization of a novel non-natural synthetic amino acid. The compound was synthesized in solution, purified, and characterized using NMR spectroscopy, polarimetry, and melting point determination. Dynamic Light Scattering (DLS) analysis demonstrated its ability to form aggregates with an average size of 391 nm, extending to the low micrometric size range. Furthermore, cellular biological assays revealed its ability to enhance fibroblast cell growth, highlighting its potential for tissue regenerative applications. Circular dichroism (CD) spectroscopy showed the ability of the synthetic amino acid to bind serum albumins (using bovine serum albumin (BSA) as a model), and CD deconvolution provided insights into the changes in the secondary structures of BSA upon interaction with the amino acid ligand. Additionally, molecular docking using HDOCK software elucidated the most likely binding mode of the ligand inside the BSA structure. We also performed in silico oligomerization of the synthetic compound in order to obtain a model of aggregate to investigate computationally. In more detail, the dimer formation achieved by molecular self-docking showed two distinct poses, corresponding to the lowest and comparable energies, with one pose exhibiting a quasi-coplanar arrangement characterized by a close alignment of two aromatic rings from the synthetic amino acids within the dimer, suggesting the presence of π-π stacking interactions. In contrast, the second pose displayed a non-coplanar configuration, with the aromatic rings oriented in a staggered arrangement, indicating distinct modes of interaction. Both poses were further utilized in the self-docking procedure. Notably, iterative molecular docking of amino acid structures resulted in the formation of higher-order aggregates, with a model of a 512-mer aggregate obtained through self-docking procedures. This model of aggregate presented a cavity capable of hosting therapeutic cargoes and biomolecules, rendering it a potential scaffold for cell adhesion and growth in tissue regenerative applications. Overall, our findings highlight the potential of this synthetic amino acid for tissue regenerative therapeutics and provide valuable insights into its molecular interactions and aggregation behavior.

摘要

本研究介绍了一种新型非天然合成氨基酸的化学合成、纯化和表征。该化合物在溶液中合成,通过 NMR 光谱、旋光性和熔点测定进行纯化和表征。动态光散射(DLS)分析表明,它能够形成平均大小为 391nm 的聚集体,延伸到低微米尺寸范围。此外,细胞生物学测定表明,它能够增强成纤维细胞的生长,突出了其在组织再生应用中的潜力。圆二色性(CD)光谱表明,合成氨基酸能够与血清白蛋白结合(以牛血清白蛋白(BSA)作为模型),CD 解卷积提供了关于氨基酸配体与 BSA 相互作用时 BSA 二级结构变化的见解。此外,使用 HDOCK 软件进行的分子对接阐明了配体在 BSA 结构内最可能的结合模式。我们还进行了合成化合物的计算机模拟聚合,以获得用于计算研究的聚集体模型。更详细地说,分子自对接实现的二聚体形成显示了两种不同的构象,对应于最低和可比的能量,其中一种构象表现出准共面排列,特征是二聚体中两个来自合成氨基酸的芳环紧密排列,表明存在π-π堆积相互作用。相比之下,第二种构象显示出非共面构象,芳环呈交错排列,表明存在不同的相互作用模式。这两种构象都进一步用于自对接过程。值得注意的是,氨基酸结构的迭代分子对接导致更高阶聚集体的形成,通过自对接程序获得了 512 聚体聚集体的模型。该聚集体模型呈现出一个能够容纳治疗性货物和生物分子的空腔,使其成为组织再生应用中细胞粘附和生长的潜在支架。总体而言,我们的研究结果强调了这种合成氨基酸在组织再生治疗中的潜力,并提供了有关其分子相互作用和聚集行为的有价值的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7f61/11118884/f87123e9a7df/biomolecules-14-00579-sch001.jpg

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