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临床相关寡聚蛋白在合成分泌淀粉样物中转运时的结构稳定性。

Structural Stabilization of Clinically Oriented Oligomeric Proteins During their Transit through Synthetic Secretory Amyloids.

机构信息

Institut de Biotecnologia i de Biomedicina, Universitat Autònoma de Barcelona, Plaça Cívica s/n, Bellaterra, Barcelona, 08193, Spain.

Departament de Genètica i de Microbiologia, Universitat Autònoma de Barcelona, Plaça Cívica s/n, Bellaterra, Barcelona, 08193, Spain.

出版信息

Adv Sci (Weinh). 2024 Jun;11(21):e2309427. doi: 10.1002/advs.202309427. Epub 2024 Mar 19.

Abstract

Developing time-sustained drug delivery systems is a main goal in innovative medicines. Inspired by the architecture of secretory granules from the mammalian endocrine system it has generated non-toxic microscale amyloid materials through the coordination between divalent metals and poly-histidine stretches. Like their natural counterparts that keep the functionalities of the assembled protein, those synthetic structures release biologically active proteins during a slow self-disintegration process occurring in vitro and upon in vivo administration. Being these granules formed by a single pure protein species and therefore, chemically homogenous, they act as highly promising time-sustained drug delivery systems. Despite their enormous clinical potential, the nature of the clustering process and the quality of the released protein have been so far neglected issues. By using diverse polypeptide species and their protein-only oligomeric nanoscale versions as convenient models, a conformational rearrangement and a stabilization of the building blocks during their transit through the secretory granules, being the released material structurally distinguishable from the original source is proved here. This fact indicates a dynamic nature of secretory amyloids that act as conformational arrangers rather than as plain, inert protein-recruiting/protein-releasing granular depots.

摘要

开发持续时间的药物输送系统是创新药物的主要目标。受哺乳动物内分泌系统分泌颗粒结构的启发,通过二价金属离子与多组氨酸片段的协调作用,生成了无毒的微尺度淀粉样材料。与保持组装蛋白功能的天然对应物类似,这些合成结构在体外和体内给药时,通过缓慢的自分解过程释放具有生物活性的蛋白质。由于这些颗粒由单一纯蛋白质物种形成,因此化学均一,它们作为有前途的持续时间药物输送系统。尽管它们具有巨大的临床潜力,但迄今为止,簇集过程的性质和释放蛋白质的质量一直被忽视。通过使用多种多肽物种及其仅由蛋白质组成的寡聚纳米级版本作为方便的模型,这里证明了在通过分泌颗粒运输过程中,构建块的构象重排和稳定,释放的物质在结构上与原始来源不同。这一事实表明,分泌性淀粉样物质具有动态性质,它们充当构象排列剂,而不是简单的、惰性的蛋白质招募/蛋白质释放颗粒库。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b59b/11151067/6ba72a741713/ADVS-11-2309427-g006.jpg

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