Blatner Nichole R, Stahelin Robert V, Diraviyam Karthikeyan, Hawkins Phillip T, Hong Wanjin, Murray Diana, Cho Wonhwa
Department of Chemistry, University of Illinois at Chicago, 845 W. Taylor St., Chicago, IL 60607, USA.
J Biol Chem. 2004 Dec 17;279(51):53818-27. doi: 10.1074/jbc.M408408200. Epub 2004 Sep 27.
This study systematically analyzed the structural and mechanistic basis of the regulation of subcellular membrane targeting using FYVE domains as a model. FYVE domains, which mediate the recruitment of signaling and membrane-trafficking proteins to phosphatidylinositol 3-phosphate-containing endosomes, exhibit distinct subcellular localization despite minor structural variations within the family. Biophysical measurements, cellular imaging, and computational analysis of various FYVE domains showed that the introduction of a single cationic residue and a hydrophobic loop into the membrane binding region of the FYVE domains dramatically enhanced their membrane interactions. The results indicated that there is a threshold affinity for endosomal localization and that endosomal targeting of FYVE domains is sensitive to small changes in membrane affinity about this threshold. Collectively these studies provide new insight into how subcellular localization of FYVE domains and other membrane targeting domains can be regulated by minimal structural and environmental changes.
本研究以FYVE结构域为模型,系统分析了亚细胞膜靶向调控的结构和机制基础。FYVE结构域介导信号和膜运输蛋白募集到含磷脂酰肌醇3-磷酸的内体,尽管该家族内结构变化较小,但仍表现出不同的亚细胞定位。对各种FYVE结构域的生物物理测量、细胞成像和计算分析表明,在FYVE结构域的膜结合区域引入单个阳离子残基和一个疏水环可显著增强其与膜的相互作用。结果表明,内体定位存在一个阈值亲和力,并且FYVE结构域的内体靶向对该阈值附近膜亲和力的微小变化敏感。这些研究共同为FYVE结构域和其他膜靶向结构域的亚细胞定位如何通过最小的结构和环境变化进行调控提供了新的见解。