Indian Institute of Science Education and Research , Dr. Homi Bhabha Road , Pashan, Pune 411008 , Maharashtra , India.
Biochemistry. 2019 Jan 8;58(1):65-71. doi: 10.1021/acs.biochem.8b00925. Epub 2018 Nov 16.
Membrane fission manifests during cell division, synaptic transmission, vesicular transport, and organelle biogenesis, yet identifying proteins that catalyze fission remains a challenge. Using a facile and robust assay system of supported membrane tubes in a microscopic screen that directly monitors membrane tube scission, we detect robust GTP- and ATP-dependent as well as nucleotide-independent fission activity in the brain cytosol. Using previously established interacting partner proteins as bait for pulldowns, we attribute the GTP-dependent fission activity to dynamin. Biochemical fractionation followed by mass spectrometric analyses identifies the Eps15-homology domain-containing protein1 (EHD1) as a novel ATP-dependent membrane fission catalyst. Together, our approach establishes an experimental workflow for the discovery of novel membrane fission catalysts.
在细胞分裂、突触传递、囊泡运输和细胞器发生过程中会出现膜裂变,然而鉴定出催化裂变的蛋白质仍然是一个挑战。我们使用一种在显微镜筛选中支持膜管的简单而强大的测定系统,该系统直接监测膜管裂变,在脑细胞质中检测到强大的 GTP 和 ATP 依赖性以及核苷酸非依赖性裂变活性。使用先前建立的相互作用伴侣蛋白作为下拉诱饵,我们将 GTP 依赖性裂变活性归因于 dynamin。随后的生化分级分离和质谱分析鉴定出 Eps15 同源结构域蛋白 1(EHD1)是一种新型的 ATP 依赖性膜裂变催化剂。总之,我们的方法为发现新型膜裂变催化剂建立了一个实验工作流程。