从内在无序的蛋白质聚合物中出现的自发自组织秩序。

Sergio Acosta, Pablo Rodríguez-Alonso, Viktoriya Chaskovska, Julio Fernández-Fernández, José Carlos Rodríguez-Cabello
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引用次数: 0

摘要

内在无序蛋白(IDPs)是一种蛋白质,尽管缺乏定义的3D结构,但能够采用动态构象。这种结构适应性使它们不仅在关键的细胞过程中发挥重要作用,如亚细胞组织或转录控制,而且在不同发育阶段协调大分子的组装。因此,为了人工复制形态发生及其动力学的复杂过程,具有再现IDPs结构可塑性的材料至关重要。在这方面,内在无序蛋白聚合物(IDPPs)成为工程合成凝聚物和创造层次自组装材料的有前途的材料。idpp在生物制造中表现出显著的特性,如功能的多功能性、可调节的序列有序-无序性以及进行液-液相分离(LLPS)的能力。最近的研究集中在利用idpp的内在无序性来设计具有定制特性的复杂蛋白质结构。利用它们的刺激反应性和紊乱程度,研究人员开发了创新的策略来控制idpp的自组装,从而产生层次组织结构和复杂的形态。本文综述了idpp基材料的设计和应用的最新进展,揭示了其超分子组装的基本原理,并讨论了其在生物医学和纳米生物技术领域的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Spontaneous Self-Organized Order Emerging From Intrinsically Disordered Protein Polymers.

Intrinsically disordered proteins (IDPs) are proteins that, despite lacking a defined 3D structure, are capable of adopting dynamic conformations. This structural adaptability allows them to play not only essential roles in crucial cellular processes, such as subcellular organization or transcriptional control, but also in coordinating the assembly of macromolecules during different stages of development. Thus, in order to artificially replicate the complex processes of morphogenesis and their dynamics, it is crucial to have materials that recapitulate the structural plasticity of IDPs. In this regard, intrinsically disordered protein polymers (IDPPs) emerge as promising materials for engineering synthetic condensates and creating hierarchically self-assembled materials. IDPPs exhibit remarkable properties for their use in biofabrication, such as functional versatility, tunable sequence order-disorder, and the ability to undergo liquid-liquid phase separation (LLPS). Recent research has focused on harnessing the intrinsic disorder of IDPPs to design complex protein architectures with tailored properties. Taking advantage of their stimuli-responsiveness and degree of disorder, researchers have developed innovative strategies to control the self-assembly of IDPPs, resulting in the creation of hierarchically organized structures and intricate morphologies. In this review, we aim to provide an overview of the latest advances in the design and application of IDPP-based materials, shedding light on the fundamental principles that control their supramolecular assembly, and discussing their application in the biomedical and nanobiotechnological fields.

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