可编程的同体-膜相互作用 在膜化原细胞中直接进行内部和集体组织
Vincent Mukwaya1, Xiaolei Yu1, Shuhan Xiong1
1State Key Laboratory of Metal Matrix Composites, School of Materials Science and Engineering, Shanghai Jiao Tong University, Shanghai, P.R. China.
Angewandte Chemie (International ed. in English)
|March 16, 2026
概括
研究人员开发了多糖体 (P-体),强壮的原细胞,模仿细胞组织. 这个平台可以对合成系统中的同体-膜相互作用和集体行为进行可编程的控制.
科学领域:
- 生物仿真工程 生物仿真工程
- 合成生物学 合成生物学
- 细胞组织 细胞组织
背景情况:
- 细胞利用无膜器官,与等离子体膜和皮质相互作用.
- 细胞骨结合和膜生物化学调节器官的位置,湿和功能.
- 在合成系统中重新创建适应性,皮质介导的控制是具有挑战性的.
研究的目的:
- 引入一种用于可编程同体 - 膜合的合成底盘.
- 开发具有界面可编程性的机械强大的原始细胞.
- 为了实现对共体湿,形态和空间组织的精细控制.
主要方法:
- 介绍了多糖体 (P-体) 作为半透的,机械坚固的原细胞.
- 通过模板导向组装在内膜小册子上建立一个像皮层的蛋白质层.
- 在现场蛋白质化用于调整表面电荷和同体膜湿.
- 膜构建块的系统变化和外部DNA的吸收用于调节.
主要成果:
- 通过蛋白质化,证明了表面电荷和协体-膜湿的精确调节.
- 实现了对共体湿,形态和空间组织的精细控制.
- 展示了DNA介导的同胞体行为的调节,导致组织状聚类或核状滴滴形成.
结论:
- 开发的平台将机械弹性与化学可编程性相结合.
- 这个框架提供了一个可扩展的途径,用于构建具有自我组织内部的膜化原细胞.
- 在合成原细胞系统中观察到新兴的集体行为.
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