Department of Chemistry, College of Natural Sciences, Seoul National University, Seoul 08826, Korea.
Mol Cells. 2021 Apr 30;44(4):207-213. doi: 10.14348/molcells.2021.0016.
that tethers mitochondria to the plasma membrane and plays a key role in mitochondrial fission. The main components of MECA are Num1 and Mdm36, and it is known that Mdm36 binds to Num1 to enhance mitochondrial tethering. To better understand the biochemical characteristics of the Num1-Mdm36 complex at the molecular level, we purified the coiled-coil domain of Num1, full-length Mdm36, and Num1-Mdm36 complex and identified the oligomeric state and stoichiometric characteristics of the Num1-Mdm36 complex by chemical crosslinking, size-exclusion chromatography coupled with multi-angle light scattering, and isothermal titration calorimetry. Mdm36 exists as a dimer and interacts preferentially with Num1 with a stoichiometry of 2:2, forming a heterotetrameric complex. Furthermore, we narrowed down the specific binding region of Num1, which is essential for interacting with Mdm36, and showed that their binding affinity is strong enough to tether both mitochondrial and plasma membranes. Our biochemical characterizations suggest a stoichiometric model of the Num1-Mdm36 complex at the mitochondria-plasma membrane contact site in budding yeast.
它将线粒体固定在质膜上,并在线粒体分裂中发挥关键作用。MECA 的主要成分是 Num1 和 Mdm36,已知 Mdm36 与 Num1 结合以增强线粒体的固定。为了更好地从分子水平上了解 Num1-Mdm36 复合物的生化特性,我们纯化了 Num1 的卷曲螺旋结构域、全长 Mdm36 和 Num1-Mdm36 复合物,并通过化学交联、凝胶过滤色谱结合多角度光散射和等温热滴定法确定了 Num1-Mdm36 复合物的寡聚状态和计量特征。Mdm36 以二聚体形式存在,并与 Num1 优先相互作用,其计量比为 2:2,形成异四聚体复合物。此外,我们缩小了 Num1 与 Mdm36 相互作用的特定结合区域,并表明它们的结合亲和力足以固定线粒体和质膜。我们的生化特性表明,在出芽酵母的线粒体-质膜接触部位,Num1-Mdm36 复合物存在一个计量模型。