Biological Engineering, Indian Institute of Technology Gandhinagar, Palaj, Gandhinagar, Gujarat, 382355, India.
Centre for Biomedical Engineering, Indian Institute of Technology Gandhinagar, Palaj, Gandhinagar, Gujarat, 382355, India.
J Membr Biol. 2020 Dec;253(6):577-587. doi: 10.1007/s00232-020-00154-x. Epub 2020 Nov 17.
Continuous, dynamic, and controlled membrane remodeling creates flow of information and materials across membranes to sustain life in all biological systems. Multiple nanoscale phenomena of membranes regulate mesoscale processes in cells, which in turn control macro-scale processes in living organisms. Understanding the molecular mechanisms that cells use for membrane homeostasis, i.e., to generate, maintain, and deform the membrane structures has therefore been the mammoth's task in biology. Using the principles of DNA nanotechnology, researchers can now precisely recapitulate the functional interactions of the biomolecules that can now probe, program, and re-program membrane remodeling and associated phenomena. The molecular mechanisms for membrane dynamics developing in vitro conditions in which the membrane modulating components are precisely organized and modulated by DNA nanoscaffolds are adding new chapters in the field of DNA nanotechnology. In this review, we discuss DNA nanodevices-based membrane remodeling and trafficking machineries and their applications in biological systems.
连续的、动态的和受控的膜重塑过程创建了信息和物质在膜间的流动,从而维持了所有生物系统的生命。膜的多种纳米级现象调节了细胞中的介观过程,而这些介观过程又控制了生物体中的宏观过程。因此,理解细胞用于膜动态平衡的分子机制,即生成、维持和变形膜结构,一直是生物学中的艰巨任务。利用 DNA 纳米技术的原理,研究人员现在可以精确地重现生物分子的功能相互作用,这些分子可以探测、编程和重新编程膜重塑和相关现象。在膜调节成分通过 DNA 纳米支架精确组织和调节的体外条件下,膜动力学的分子机制为 DNA 纳米技术领域增添了新的篇章。在这篇综述中,我们讨论了基于 DNA 纳米器件的膜重塑和运输机制及其在生物系统中的应用。