Chen Shuhan, Liu Yinghui, Yu Haijia
Jiangsu Key Laboratory for Molecular and Medical Biotechnology, College of Life Sciences, Nanjing Normal University, Nanjing 210023, China.
Membranes (Basel). 2025 May 16;15(5):154. doi: 10.3390/membranes15050154.
Intracellular membrane trafficking that transports proteins, lipids, and other substances between organelles is crucial for maintaining cellular homeostasis and signal transduction. The imbalance of membrane trafficking leads to various diseases. It is challenging to uncover the mechanisms of the complicated and dynamic trafficking process at the cellular or animal levels. The applications of functional reconstituted membrane systems, which can mimic the intracellular membrane compartments in a clean and simplified pattern, tremendously facilitate our understanding of the membrane trafficking process. In this review, we summarize applications of the in vitro membrane models, including liposomes, nanodiscs, and single-vesicle platforms, in elucidating molecular mechanisms that govern vesicle fusion and non-vesicular lipid transport, the key steps of membrane trafficking. This review highlights how membrane reconstitution approaches contribute to illustrating the protein-mediated molecular choreography of cellular membranes.
在细胞器之间运输蛋白质、脂质和其他物质的细胞内膜运输对于维持细胞内稳态和信号转导至关重要。膜运输的失衡会导致各种疾病。在细胞或动物水平上揭示复杂且动态的运输过程机制具有挑战性。功能性重组膜系统能够以简洁且简化的方式模拟细胞内膜区室,其应用极大地促进了我们对膜运输过程的理解。在本综述中,我们总结了体外膜模型(包括脂质体、纳米圆盘和单囊泡平台)在阐明控制囊泡融合和非囊泡脂质运输(膜运输的关键步骤)的分子机制方面的应用。本综述强调了膜重组方法如何有助于阐明蛋白质介导的细胞膜分子编排。