Ramachandran Rajesh, Schmid Sandra L
Department of Cell Biology, The Scripps Research Institute, La Jolla, CA 92037, USA.
EMBO J. 2008 Jan 9;27(1):27-37. doi: 10.1038/sj.emboj.7601961. Epub 2007 Dec 13.
The GTPase dynamin is a mechanochemical enzyme involved in membrane fission, but the molecular nature of its membrane interactions and their regulation by guanine nucleotides and protein effectors remain poorly characterized. Using site-directed fluorescence labeling and several independent fluorescence spectroscopic techniques, we have developed robust assays for the detection and real-time monitoring of dynamin-membrane and dynamin-dynamin interactions. We show that dynamin interacts preferentially with highly curved, PIP2-dense membranes and inserts partially into the lipid bilayer. Our kinetic measurements further reveal that cycles of GTP binding and hydrolysis elicit major conformational rearrangements in self-assembled dynamin that favor dynamin-membrane association and dissociation, respectively. Sorting nexin 9, an abundant dynamin partner, transiently stabilizes dynamin on the membrane at the onset of stimulated GTP hydrolysis and may function to couple dynamin's mechanochemical conformational changes to membrane destabilization. Amphiphysin I has the opposite effect. Thus, dynamin's mechanochemical properties on a membrane surface are dynamically regulated by its GTPase cycle and major binding partners.
GTP酶发动蛋白是一种参与膜裂变的机械化学酶,但其膜相互作用的分子本质以及它们受鸟嘌呤核苷酸和蛋白质效应器的调控仍未得到充分表征。利用定点荧光标记和几种独立的荧光光谱技术,我们开发了用于检测和实时监测发动蛋白-膜相互作用以及发动蛋白-发动蛋白相互作用的可靠测定方法。我们发现发动蛋白优先与高度弯曲、富含磷脂酰肌醇-4,5-二磷酸(PIP2)的膜相互作用,并部分插入脂质双层。我们的动力学测量进一步揭示,GTP结合和水解循环会引发自组装发动蛋白的主要构象重排,分别有利于发动蛋白与膜的结合和解离。分选连接蛋白9是一种丰富的发动蛋白伴侣,在刺激的GTP水解开始时短暂地将发动蛋白稳定在膜上,可能起到将发动蛋白的机械化学构象变化与膜去稳定化偶联的作用。发动蛋白1具有相反的作用。因此,发动蛋白在膜表面的机械化学性质受到其GTP酶循环和主要结合伴侣的动态调控。