...
首页> 外文期刊>ACS nano >Salt Triggers the Simple Coacervation of an Underwater Adhesive When Cations Meet Aromatic pi Electrons in Seawater
【24h】

Salt Triggers the Simple Coacervation of an Underwater Adhesive When Cations Meet Aromatic pi Electrons in Seawater

机译:当阳离子在海水中遇到芳香PI电子时,盐触发水下粘合剂的简单凝聚

获取原文
获取原文并翻译 | 示例
           

摘要

Adhesive systems in many marine organisms are postulated to form complex coacervates (liquid liquid phase separation) through a process involving oppositely charged polyelectrolytes. Despite this ubiquitous speculation, most well characterized mussel adhesive proteins are cationic and polyphenolic, and the pursuit of the negatively charged proteins required for bulk complex coacervation formation internally remains elusive. In this study, we provide a clue for unraveling this paradox by showing the bulky fluid/fluid separation of a single cationic recombinant mussel foot protein, rmfp-1, with no additional anionic proteins or artificial molecules, that is triggered by a strong cation-pi interaction in natural seawater conditions. With the similar condition of salt concentration at seawater level (>0.7 M), the electrostatic repulsion between positively charged residues of mfp-1 is screened significantly, whereas the strong cation-pi interaction remains unaffected, which leads to the macroscopic phase separation (i.e., bulky coacervate formation). The single polyelectrolyte coacervate shows interesting mechanical properties including low friction, which facilitates the secretion process of the mussel. Our findings reveal that the cation-pi interaction modulated by salt is a key mechanism in the mussel adhesion process, providing new insights into the basic understanding of wet adhesion, self-assembly processes, and biological phenomena that are mediated by strong short-range attractive forces in water.
机译:在许多海洋生物中的粘合剂系统被假设以通过涉及相反电荷的聚电解质的方法形成复杂的凝聚酰基(液态液相分离)。尽管这种普遍存在的猜测,但最良好的表征贻贝粘合剂蛋白质是阳离子和多酚,并且在内部仍然难以捉摸地难以实现对大量复合凝聚形成所需的带负电荷的蛋白质。在这项研究中,我们通过显示单个阳离子重组贻贝足蛋白,RMFP-1的庞大液/流体分离,没有额外的阴离子蛋白或人造分子,提供了一种用于解开该悖论的线索,这是由强阳离子引发的 - PI在天然海水条件下的相互作用。随着海水水平(> 0.7米)的盐浓度的类似条件,显着筛选MFP-1带正电荷残留的静电排斥,而强阳离子-PI相互作用仍未受到影响,这导致宏观相分离(即,庞大的凝聚层组织)。单电解质凝聚酸盐显示有趣的机械性能,包括低摩擦,这有利于贻贝的分泌过程。我们的研究结果表明,盐调制的阳离子 - PI相互作用是贻贝粘附过程中的一个关键机制,提供了对湿粘附,自组装过程和通过强大的短距离吸引力介导的生物现象的基本了解的新见解力量在水中。

著录项

相似文献

  • 外文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号