Laboratory of Chemical Physics, National Institute of Diabetes and Digestive and Kidney Diseases, National Institutes of Health, Bethesda, MD 20892-0520, USA.
Laboratory of Cell and Molecular Biology, and National Institute of Diabetes and Digestive and Kidney Diseases, National Institutes of Health, Bethesda, MD 20892-0520, USA.
J Mol Biol. 2021 Dec 3;433(24):167322. doi: 10.1016/j.jmb.2021.167322. Epub 2021 Oct 21.
Human mitochondrial Hsp60 (mtHsp60) is a class I chaperonin, 51% identical in sequence to the prototypical E. coli chaperonin GroEL. mtHsp60 maintains the proteome within the mitochondrion and is associated with various neurodegenerative diseases and cancers. The oligomeric assembly of mtHsp60 into heptameric ring structures that enclose a folding chamber only occurs upon addition of ATP and is significantly more labile than that of GroEL, where the only oligomeric species is a tetradecamer. The lability of the mtHsp60 heptamer provides an opportunity to detect and visualize lower-order oligomeric states that may represent intermediates along the assembly/disassembly pathway. Using cryo-electron microscopy we show that, in addition to the fully-formed heptamer and an "inverted" tetradecamer in which the two heptamers associate via their apical domains, thereby blocking protein substrate access, well-defined lower-order oligomeric species, populated at less than 6% of the total particles, are observed. Specifically, we observe open trimers, tetramers, pentamers and hexamers (comprising ∼4% of the total particles) with rigid body rotations from one subunit to the next within ∼1.5-3.5° of that for the heptamer, indicating that these may lie directly on the assembly/disassembly pathway. We also observe a closed-ring hexamer (∼2% of the particles) which may represent an off-pathway species in the assembly/disassembly process in so far that conversion to the mature heptamer would require the closed-ring hexamer to open to accept an additional subunit. Lastly, we observe several classes of tetramers where additional subunits characterized by fuzzy electron density are caught in the act of oligomer extension.
人线粒体 Hsp60(mtHsp60)是一种 I 类分子伴侣,其序列与原型大肠杆菌伴侣蛋白 GroEL 有 51%的同源性。mtHsp60 维持线粒体中的蛋白质组,并与各种神经退行性疾病和癌症有关。只有在添加 ATP 的情况下,mtHsp60 才能组装成七聚体环结构,将折叠腔封闭起来,而这种组装比 GroEL 更加不稳定,GroEL 只有十四聚体这一种寡聚体。mtHsp60 七聚体的不稳定性为检测和可视化较低阶的寡聚体状态提供了机会,这些状态可能代表沿着组装/拆卸途径的中间产物。我们使用低温电子显微镜表明,除了完全形成的七聚体和“倒置”的十四聚体(其中两个七聚体通过它们的顶端结构域相互关联,从而阻止蛋白质底物进入)之外,还观察到了定义明确的低阶寡聚体,其丰度低于总颗粒的 6%。具体来说,我们观察到了开放的三聚体、四聚体、五聚体和六聚体(占总颗粒的约 4%),它们的亚基之间的刚体旋转角度在 1.5-3.5°之间,与七聚体相似,这表明它们可能直接位于组装/拆卸途径上。我们还观察到了一个封闭的六聚体(占颗粒的约 2%),它可能代表组装/拆卸过程中的一种偏离途径的物种,因为要将其转化为成熟的七聚体,封闭的六聚体需要打开以容纳额外的亚基。最后,我们观察到了几种四聚体,其中额外的亚基通过模糊的电子密度被捕捉在寡聚体延伸的过程中。