Ravi Roshika, Routray Deepsikha, Mahalakshmi Radhakrishnan
Molecular Biophysics Laboratory, Department of Biological Sciences, Indian Institute of Science Education and Research, Bhopal 462066, India.
Biochemistry. 2025 Jan 21;64(2):312-328. doi: 10.1021/acs.biochem.4c00727. Epub 2025 Jan 4.
The mitochondrial outer membrane (OMM) β-barrel proteins link the mitochondrion with the cytosol, endoplasmic reticulum, and other cellular membranes, establishing cellular homeostasis. Their active insertion and assembly in the outer mitochondrial membrane is achieved in an energy-independent yet highly effective manner by the Sorting and Assembly Machinery (SAM) of the OMM. The core SAM constituent is the 16-stranded transmembrane β-barrel Sam50. For over two decades, the primary role of Sam50 has been linked to its function as a chaperone in the OMM, wherein it assembles all β-barrels through a lateral gating and β-barrel switching mechanism. Interestingly, recent studies have demonstrated that despite its low copy number, Sam50 performs various diverse functions beyond assembling β-barrels. This includes maintaining cristae morphology, bidirectional lipid shuttling between the ER and mitochondrial inner membrane, import of select proteins, regulation of PINK1-Parkin function, and timed trigger of cell death. Given these multifaceted critical regulatory functions of SAM across all eukaryotes, we now reason that SAM merely moonlights as the hub for β-barrel biogenesis and has indeed evolved a diverse array of primary roles in maintaining mitochondrial function and cellular homeostasis.
线粒体外膜(OMM)β-桶状蛋白将线粒体与细胞质、内质网及其他细胞膜相连,从而建立细胞内稳态。它们在线粒体外膜中的活性插入和组装是通过线粒体外膜分选与组装机器(SAM)以一种不依赖能量但高效的方式实现的。SAM的核心成分是由16条链组成的跨膜β-桶状蛋白Sam50。二十多年来,Sam50的主要作用一直与其作为线粒体外膜伴侣蛋白的功能相关,即它通过侧向门控和β-桶状结构转换机制组装所有β-桶状蛋白。有趣的是,最近的研究表明,尽管Sam50的拷贝数较低,但它在组装β-桶状蛋白之外还执行各种不同的功能。这包括维持嵴的形态、在内质网和线粒体内膜之间进行双向脂质穿梭、特定蛋白质的导入、PINK1-Parkin功能的调节以及细胞死亡的定时触发。鉴于SAM在所有真核生物中具有这些多方面的关键调节功能,我们现在推断,SAM仅仅是兼职作为β-桶状蛋白生物合成的枢纽,实际上已经在维持线粒体功能和细胞内稳态方面进化出了一系列不同的主要作用。