Department of Biomedical Sciences, University of Padua and CNR Neuroscience Institute, Padua, Italy.
EMBO J. 2013 Aug 28;32(17):2362-76. doi: 10.1038/emboj.2013.157. Epub 2013 Jul 30.
Mitochondrial calcium uniporter (MCU) channel is responsible for Ruthenium Red-sensitive mitochondrial calcium uptake. Here, we demonstrate MCU oligomerization by immunoprecipitation and Förster resonance energy transfer (FRET) and characterize a novel protein (MCUb) with two predicted transmembrane domains, 50% sequence similarity and a different expression profile from MCU. Based on computational modelling, MCUb includes critical amino-acid substitutions in the pore region and indeed MCUb does not form a calcium-permeable channel in planar lipid bilayers. In HeLa cells, MCUb is inserted into the oligomer and exerts a dominant-negative effect, reducing the [Ca(2+)]mt increases evoked by agonist stimulation. Accordingly, in vitro co-expression of MCUb with MCU drastically reduces the probability of observing channel activity in planar lipid bilayer experiments. These data unveil the structural complexity of MCU and demonstrate a novel regulatory mechanism, based on the inclusion of dominant-negative subunits in a multimeric channel, that underlies the fine control of the physiologically and pathologically relevant process of mitochondrial calcium homeostasis.
线粒体钙单向转运体(MCU)通道负责钌红敏感的线粒体钙摄取。在这里,我们通过免疫沉淀和Förster 共振能量转移(FRET)证明了 MCU 的寡聚化,并表征了一种新型蛋白(MCUb),它具有两个预测的跨膜结构域、50%的序列相似性和与 MCU 不同的表达谱。基于计算建模,MCUb 在孔区域包含关键的氨基酸取代,并且事实上 MCUb 不能在平面脂质双层中形成钙通透通道。在 HeLa 细胞中,MCUb 插入寡聚体并发挥显性负效应,减少激动剂刺激引起的 [Ca(2+)]mt 增加。因此,在体外共表达 MCUb 与 MCU 会极大地降低在平面脂质双层实验中观察到通道活性的概率。这些数据揭示了 MCU 的结构复杂性,并证明了一种新的调节机制,基于在多聚体通道中包含显性负性亚基,这是对与生理和病理相关的线粒体钙动态平衡过程的精细控制的基础。