论文标题

生物膜中小管形成的力学和热力学

The mechanics and thermodynamics of tubule formation in biological membranes

论文作者

Mahapatra, Arijit, Uysalel, Can, Rangamani, Padmini

论文摘要

膜管是一个无处不在的过程,既发生在质膜上,也发生在细胞内细胞器的膜上。已知这些管道事件是由由于运动蛋白,细胞骨架的聚合或由于膜蛋白之间结合到膜上的相互作用而介导的。相关膜力学的数学建模已经得到了充分支持,对管形成的众多实验观察结果,并提供了对膜管的力解位关系的见解。膜 - 蛋白质相互作用和小管形成的定量生物物理测量结果的最新进展已经有必要在建模方面需要进步,这将解释同时发生的物理学多个方面的相互作用。在这里,我们对小管形成的实验观察进行了全面的综述,并提供了连续建模框架的背景。最后,我们探讨了该领域未来研究的范围,重点是迭代建模和实验测量,这将使我们能够扩展对细胞中的管道过程的机械理解。

Membrane tubulation is a ubiquitous process that occurs both at the plasma membrane and on the membranes of intracellular organelles. These tubulation events are known to be mediated by forces applied on the membrane either due to motor proteins, by polymerization of the cytoskeleton, or due to the interactions between membrane proteins binding onto the membrane. The numerous experimental observations of tube formation have been amply supported by mathematical modeling of the associated membrane mechanics and have provided insights into the force-displacement relationships of membrane tubes. Recent advances in quantitative biophysical measurements of membrane-protein interactions and tubule formation have necessitated the need for advances in modeling that will account for the interplay of multiple aspects of physics that occur simultaneously. Here, we present a comprehensive review of experimental observations of tubule formation and provide context from the framework of continuum modeling. Finally, we explore the scope for future research in this area with an emphasis on iterative modeling and experimental measurements that will enable us to expand our mechanistic understanding of tubulation processes in cells.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源