The 20S proteasome, which is composed of layered α and β heptameric rings, is the core complex of the eukaryotic proteasome involved in proteolysis. The α7 subunit is a component of the α ring, and it self-assembles into a homo-tetradecamer consisting of two layers of α7 heptameric rings. However, the structure of the α7 double ring in solution has not been fully elucidated. We applied cryo-electron microscopy to delineate the structure of the α7 double ring in solution, revealing a structure different from the previously reported crystallographic model. The D7-symmetrical double ring was stacked with a 15◦ clockwise twist and a separation of 3 Å between the two rings. Two more conformations, dislocated and fully open, were also identified. Our observations suggest that the α7 double-ring structure fluctuates considerably in solution, allowing for the insertion of homologous α subunits, finally converting to the hetero-heptameric α rings in the 20S proteasome.
CITATION STYLE
Song, C., Satoh, T., Sekiguchi, T., Kato, K., & Murata, K. (2021). Structural fluctuations of the human proteasome α7 homo-tetradecamer double ring imply the proteasomal α-ring assembly mechanism. International Journal of Molecular Sciences, 22(9). https://doi.org/10.3390/ijms22094519
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