Ge Yifan, Boopathy Sivakumar, Nguyen Tran H, Lugo Camila Makhlouta, Chao Luke H
Department of Molecular Biology, Massachusetts General Hospital, Boston, MA, United States.
Department of Genetics, Harvard Medical School, Boston, MA, United States.
Front Mol Biosci. 2021 Dec 22;8:769135. doi: 10.3389/fmolb.2021.769135. eCollection 2021.
Cardiolipin is a tetra-acylated di-phosphatidylglycerol lipid enriched in the matrix-facing (inner) leaflet of the mitochondrial inner membrane. Cardiolipin plays an important role in regulating mitochondria function and dynamics. Yet, the mechanisms connecting cardiolipin distribution and mitochondrial protein function remain indirect. In our previous work, we established an system reconstituting mitochondrial inner membrane fusion mediated by Opa1. We found that the long form of Opa1 (l-Opa1) works together with the proteolytically processed short form (s-Opa1) to mediate fast and efficient membrane fusion. Here, we extend our reconstitution system to generate supported lipid bilayers with asymmetric cardiolipin distribution. Using this system, we find the presence of cardiolipin on the inter-membrane space-facing (outer) leaflet is important for membrane tethering and fusion. We discuss how the presence of cardiolipin in this leaflet may influence protein and membrane properties, and future applications for this approach.
心磷脂是一种四酰化二磷脂酰甘油脂质,富集于线粒体内膜面向基质的(内侧)小叶中。心磷脂在调节线粒体功能和动态变化中起重要作用。然而,连接心磷脂分布与线粒体蛋白功能的机制仍然是间接的。在我们之前的工作中,我们建立了一个由Opa1介导的线粒体内膜融合的重组系统。我们发现长形式的Opa1(l-Opa1)与经蛋白水解加工的短形式(s-Opa1)共同作用,介导快速有效的膜融合。在这里,我们扩展了我们的重组系统,以生成具有不对称心磷脂分布的支持脂质双层。使用该系统,我们发现心磷脂存在于面向膜间隙的(外侧)小叶上对膜的拴系和融合很重要。我们讨论了该小叶中心磷脂的存在可能如何影响蛋白质和膜的性质,以及这种方法的未来应用。