肽
化学
生物物理学
氨基酸
细胞内
渲染(计算机图形)
纳米技术
细胞器
分子动力学
分子间力
核磁共振波谱
生物化学
材料科学
生物
分子
计算机科学
立体化学
计算化学
有机化学
计算机图形学(图像)
作者
Avigail Baruch Leshem,Sian Sloan‐Dennison,Tlalit Massarano,Shavit Ben-David,Duncan Graham,Karen Faulds,Hugo E. Gottlieb,Jordan H. Chill,Ayala Lampel
标识
DOI:10.1038/s41467-023-36060-8
摘要
Inspired by the role of intracellular liquid-liquid phase separation (LLPS) in formation of membraneless organelles, there is great interest in developing dynamic compartments formed by LLPS of intrinsically disordered proteins (IDPs) or short peptides. However, the molecular mechanisms underlying the formation of biomolecular condensates have not been fully elucidated, rendering on-demand design of synthetic condensates with tailored physico-chemical functionalities a significant challenge. To address this need, here we design a library of LLPS-promoting peptide building blocks composed of various assembly domains. We show that the LLPS propensity, dynamics, and encapsulation efficiency of compartments can be tuned by changes to the peptide composition. Specifically, with the aid of Raman and NMR spectroscopy, we show that interactions between arginine and aromatic amino acids underlie droplet formation, and that both intra- and intermolecular interactions dictate droplet dynamics. The resulting sequence-structure-function correlation could support the future development of compartments for a variety of applications.
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