College of Science and Engineering, Kanazawa University, Kakuma, Kanazawa, Ishikawa, 920-1192, Japan.
Faculty and Graduate School of Pharmaceutical Sciences, Nagoya City University, 3-1 Tanabe-dori, Mizuho-ku, Nagoya, Aichi, 467-8603, Japan.
Sci Rep. 2017 Nov 13;7(1):15373. doi: 10.1038/s41598-017-15708-8.
The 20S proteasome is a core particle of the eukaryotic proteasome responsible for proteolysis and is composed of layered α and β hetero-heptameric rings. The α7 subunit, which is one of components of the α ring, is known to self-assemble into a double-ringed homo-tetradecamer composed of two layers of the α7 heptameric ring. The α7 tetradecamer is known to disassemble upon the addition of α6 subunit, producing a 1:7 hetero-octameric α6-α7 complex. However, the detailed disassembly mechanism remains unclear. Here, we applied high-speed atomic force microscopy (HS-AFM) to dissect the disassembly process of the α7 double ring caused by interaction with the α6. HS-AFM movies clearly demonstrated two different modes of interaction in which the α6 monomer initially cracks at the interface between the stacked two α7 single rings and the subsequent intercalation of the α6 monomer in the open pore of the α7 single ring blocks the re-association of the single rings into the double ring. This result provides a mechanistic insight about the disassembly process of non-native homo-oligomers formed by proteasome components which is crucial for the initial process for assembly of 20S proteasome.
20S 蛋白酶体是真核蛋白酶体的核心颗粒,负责蛋白水解,由分层的α和β异七聚体环组成。α7 亚基是α环的组成部分之一,已知其自组装成双环同源十四聚体,由两层α7 七聚体环组成。已知α7 十四聚体在添加α6 亚基后会解体,产生 1:7 的异源八聚体α6-α7 复合物。然而,详细的解体机制仍不清楚。在这里,我们应用高速原子力显微镜(HS-AFM)来剖析α6 相互作用引起的α7 双环的解体过程。HS-AFM 电影清楚地显示了两种不同的相互作用模式,其中α6 单体最初在堆叠的两个α7 单环之间的界面处破裂,随后α6 单体插入α7 单环的开口孔中,阻止单环重新组装成双环。该结果提供了关于蛋白酶体成分形成的非天然同源寡聚体解体过程的机制见解,这对于 20S 蛋白酶体的组装初始过程至关重要。