蜘蛛丝
丝绸
模块化设计
蜘蛛
液态液体
材料科学
液相
分离(统计)
化学工程
纳米技术
相(物质)
计算机科学
色谱法
化学
复合材料
有机化学
工程类
物理
机器学习
操作系统
热力学
天文
作者
Ali D. Malay,Takehiro Suzuki,Takuya Katashima,Nobuaki Kono,Kazuharu Arakawa,Keiji Numata
出处
期刊:Science Advances
[American Association for the Advancement of Science]
日期:2020-11-05
卷期号:6 (45)
被引量:178
标识
DOI:10.1126/sciadv.abb6030
摘要
Spider silk fiber rapidly assembles from spidroin protein in soluble state via an incompletely understood mechanism. Here, we present an integrated model for silk formation that incorporates the effects of multiple chemical and physical gradients on the different spidroin functional domains. Central to the process is liquid-liquid phase separation (LLPS) that occurs in response to multivalent anions such as phosphate, mediated by the carboxyl-terminal and repetitive domains. Acidification coupled with LLPS triggers the swift self-assembly of nanofibril networks, facilitated by dimerization of the amino-terminal domain, and leads to a liquid-to-solid phase transition. Mechanical stress applied to the fibril structures yields macroscopic fibers with hierarchical organization and enriched for β-sheet conformations. Studies using native silk gland material corroborate our findings on spidroin phase separation. Our results suggest an intriguing parallel between silk assembly and other LLPS-mediated mechanisms, such as found in intracellular membraneless organelles and protein aggregation disorders.
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