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Prion-like nanofibrils of small molecules (PriSM): A new frontier at the intersection of supramolecular chemistry and cell biology

机译:molecules状小分子纳米纤维(PriSM):超分子化学与细胞生物学交叉领域的新前沿

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Formed by non-covalent interactions and not defined at genetic level, the assemblies of small molecules in biology are complicated and less explored. A common morphology of the supramolecular assemblies of small molecules is nanofibrils, which coincidentally resembles the nanofibrils formed by proteins such as prions. So these supramolecular assemblies are termed as prion-like nanofibrils of small molecules (PriSM). Emerging evidence from several unrelated fields over the past decade implies the significance of PriSM in biology and medicine. This perspective aims to highlight some recent advances of the research on PriSM. This paper starts with description of the intriguing similarities between PriSM and prions, discusses the paradoxical features of PriSM, introduces the methods for elucidating the biological functions of PriSM, illustrates several examples of beneficial aspects of PriSM, and finishes with the promises and current challenges in the research of PriSM. We anticipate that the research of PriSM will contribute to the fundamental understanding at the intersection of supramolecular chemistry and cell biology and ultimately lead to a new paradigm of molecular (or supramolecular) therapeutics for biomedicine.
机译:由非共价相互作用形成且在遗传水平上未定义,生物学中的小分子组装十分复杂且探索较少。小分子的超分子组装体的常见形态是纳米纤丝,它恰巧类似于由蛋白质(如病毒)形成的纳米纤丝。因此,这些超分子组装体被称为小分子的ion病毒样纳米原纤维(PriSM)。过去十年来,来自几个无关领域的新证据暗示了PriSM在生物学和医学领域的重要性。该观点旨在突出PriSM研究的一些最新进展。本文从描述PriSM和病毒的有趣相似之处开始,讨论PriSM的自相矛盾的特征,介绍阐明PriSM生物学功能的方法,举例说明PriSM的有益方面的几个例子,最后阐述了PriSM的前景和当前的挑战。 PriSM的研究。我们预计,PriSM的研究将有助于超分子化学与细胞生物学相交的基础理解,并最终导致生物医​​学分子(或超分子)疗法的新范例。

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