膜曲率使 N-Ras 脂质锚定分选到液态有序膜相。
Membrane curvature enables N-Ras lipid anchor sorting to liquid-ordered membrane phases.
机构信息
1] Bio-Nanotechnology and Nanomedicine Laboratory, Nano-Science Center, University of Copenhagen, Denmark. [2] Department of Chemistry, University of Copenhagen, Denmark. [3] Lundbeck Foundation Center for Biomembranes in Nanomedicine, University of Copenhagen, Denmark.
1] Department of Chemistry, University of Copenhagen, Denmark. [2] Lundbeck Foundation Center for Biomembranes in Nanomedicine, University of Copenhagen, Denmark.
出版信息
Nat Chem Biol. 2015 Mar;11(3):192-4. doi: 10.1038/nchembio.1733. Epub 2015 Jan 26.
Trafficking and sorting of membrane-anchored Ras GTPases are regulated by partitioning between distinct membrane domains. Here, in vitro experiments and microscopic molecular theory reveal membrane curvature as a new modulator of N-Ras lipid anchor and palmitoyl chain partitioning. Membrane curvature was essential for enrichment in raft-like liquid-ordered phases; enrichment was driven by relief of lateral pressure upon anchor insertion and most likely affects the localization of lipidated proteins in general.
膜锚定 Ras GTPases 的运输和分拣受到不同膜域之间分配的调节。在此,体外实验和微观分子理论揭示了膜曲率是 N-Ras 脂质锚和棕榈酰链分配的新调节剂。膜曲率对于富含筏状液体有序相是必需的;这种富集是通过在锚插入时缓解侧向压力驱动的,并且很可能影响一般的脂化蛋白的定位。